Spectral computed tomography or dual-energy CT imaging can overcome the limitations of conventional CT in differentiating between two materials with equivalent total attenuation. It can generate several types of images, such as virtual monochromatic images, which improve the contrast-to-noise ratio for low energy levels and reduce artifacts for high energy levels. It also allows for quantitative image analysis and thus better characterization of lesions and tissues through material mapping (e.g., iodinated contrast agent mapping). This technique is increasingly used in routine clinical practice thanks to improvements in image flow management and technological advances. It also involves exposing patients to ionizing radiation, as with conventional CT but, unlike conventional CT scans, for which dosimetric reference levels (RLs) are defined for the most common examinations in France (RL decree dated 2019), there are currently no dosimetric reference levels for examinations performed using this technique. Yet RLs are an important and effective tools for optimizing patient exposure to ionizing radiation. Several articles were published between 2012 and 2017 when the first dual-energy scanners arrived in clinics. However, the results presented in these studies are now far removed from recent practices, as they do not take into account the latest technological developments used in dual-energy scanners, which reduce X-ray doses. The main objective of the study is to define dosimetric reference levels for the most commonly performed spectral computed tomography examinations in France.
Spectral computed tomography (CT) (or dual-energy CT) imaging can overcome the limitations of conventional CT in differentiating between two materials with equivalent total attenuation. It can generate several types of images, such as virtual monochromatic images, which improve the contrast-to-noise ratio for low energy levels and reduce artifacts for high energy levels. It also allows for quantitative image analysis and thus better characterization of lesions and tissues through material mapping (e.g., iodinated contrast agent mapping). This technique is increasingly used in routine clinical practice thanks to improvements in image flow management and technological advances. It also involves exposing patients to ionizing radiation, as with conventional CT. However, unlike conventional CT scans, for which dosimetric reference levels (RLs) are defined for the most common examinations in France (RL decree dated 2019), there are currently no dosimetric reference levels for examinations performed using this technique. Yet the RL is an important and effective tool in optimizing patient exposure to ionizing radiation. In fact, a number of articles were published between 2012 and 2017, when the first dual-energy scanners arrived in clinics. However, the results presented in these studies are now far removed from recent practices, as they do not take into account the latest technological developments used in dual-energy scanners, which reduce X-ray doses. The main objective of the study is to define dosimetric reference levels for the most frequently performed spectral computed tomography examinations in France: 1. Chest CT for pulmonary embolism 2. Chest CT for other indications 3. Coronary CT with contrast injection and retrospective gating 4. Coronary CT with contrast injection and prospective gating 5. Cranial CT with contrast injection 6. Supra-aortic trunk CT 7. Neck and ear,nose and throat sphere CT with contrast injection 8. Oncological abdomen-pelvis CT scan 9. Abdomen-pelvis CT scan to check for kidney stones 10. Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones 11. Oncological chest-abdomen-pelvis CT scan 12. Non-oncological chest-abdomen-pelvis CT scan 13. Oncological chest-abdomen CT scan 14. Non-oncological chest-abdomen CT scan 15. Lower limb angiography 16. Cervical spine CT scan 17. Thoracic spine CT scan 18. Lumbar spine CT scan 19. Pelvis CT scan, 20. Extremities CT scan The secondary objectives of the study are to evaluate, for each examination performed: 1. the impact of the spectral acquisition/detection technique on the dose delivered to patients. 2. the impact of patients' BMI on the dose delivered to patients. 3. the impact of reconstruction algorithms on the dose delivered to patients.
Study Type
OBSERVATIONAL
Enrollment
9,600
Commonly performed spectral computed tomography examinations in France
Nîmes University Hospital
Nîmes, Gard, France
Dosimetric reference levels for spectral computed tomography examinations in France: Chest CT for pulmonary embolism. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Chest CT for pulmonary embolism. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Chest CT for other indications. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Chest CT for other indications. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Coronary CT with contrast injection and retrospective gating. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Coronary CT with contrast injection and prospective gating. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Cranial CT with contrast injection. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Cranial CT with contrast injection. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Supra-aortic trunk CT. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Supra-aortic trunk CT. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Neck and ear,nose and throat sphere CT with contrast injection. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Neck and ear,nose and throat sphere CT with contrast injection. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Oncological abdomen-pelvis CT scan. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Oncological abdomen-pelvis CT scan. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Abdomen-pelvis CT scan to check for kidney stones. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Abdomen-pelvis CT scan to check for kidney stones. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Oncological chest-abdomen-pelvis CT scan. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Oncological chest-abdomen-pelvis CT scan. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Non-oncological chest-abdomen-pelvis CT scan. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Non-oncological chest-abdomen-pelvis CT scan. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Oncological chest-abdomen CT scan. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Oncological chest-abdomen CT scan. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Non-oncological chest-abdomen CT scan. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Non-oncological chest-abdomen CT scan. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Lower limb angiography. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Lower limb angiography. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Cervical spine CT scan. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Cervical spine CT scan. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Thoracic spine CT scan. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Thoracic spine CT scan. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Lumbar spine CT scan. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Lumbar spine CT scan. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Pelvis CT scan. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Pelvis CT scan. DLP
Dose length product (DLP) expressed in mGy.cm
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Extremities CT scan. CTDIvol
Computed tomography dose index (CTDIvol) per acquisition expressed in milligray (mGy).
Time frame: Periprocedural
Dosimetric reference levels for spectral computed tomography examinations in France: Extremities CT scan. DLP
Dose length product (DLP) expressed in mGy.cm will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Chest CT for pulmonary embolism. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Chest CT for pulmonary embolism. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Chest CT for pulmonary embolism. CTDIvol
The dose (CTDIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Chest CT for pulmonary embolism. DLP
Dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Chest CT for pulmonary embolism. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Chest CT for pulmonary embolism. Acquisition parameters, kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Chest CT for pulmonary embolism. Acquisition parameters, mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Chest CT for pulmonary embolism. Acquisition parameters. Rotation time
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Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Chest CT for pulmonary embolism. Acquisition parameters. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Chest CT for pulmonary embolism. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Chest CT for other indications. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Chest CT for other indications. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Chest CT for other indications. CTDIvol
The dose (CTDIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Chest CT for other indications. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Chest CT for other indications. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Chest CT for other indications. Acquisition parameters, kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Chest CT for other indications. Acquisition parameters, mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Chest CT for other indications. Acquisition parameters, rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Chest CT for other indications. Acquisition parameters, helical pitch
Helical pitch time will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Chest CT for other indications. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Coronary CT with contrast injection and retrospective gating. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Coronary CT with contrast injection and retrospective gating. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Coronary CT with contrast injection and retrospective gating. CTDIvol
The dose (CTDIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Coronary CT with contrast injection and retrospective gating. DLP
The dose length product (DLP) will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Coronary CT with contrast injection and retrospective gating. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Coronary CT with contrast injection and retrospective gating. Acquisition parameters, kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Coronary CT with contrast injection and retrospective gating. Acquisition parameters, mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Coronary CT with contrast injection and retrospective gating. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Coronary CT with contrast injection and retrospective gating. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Coronary CT with contrast injection and retrospective gating. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Cranial CT with contrast injection. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Cranial CT with contrast injection. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Cranial CT with contrast injection. CTDIvol
The dose (CTDIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Cranial CT with contrast injection. DLP
Dose length product (DLP) will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Cranial CT with contrast injection. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Cranial CT with contrast injection. Acquisition parameters, kV
Acquisition parameters (kV)will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Cranial CT with contrast injection. Acquisition parameters, mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Cranial CT with contrast injection. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients: Cranial CT with contrast injection. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Cranial CT with contrast injection. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Supra-aortic trunk CT. Acquisition type
The type of acquisition will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Supra-aortic trunk CT. Number of acquisitions
The number of acquisitions will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Supra-aortic trunk CT. CTDIvol
The dose (CTDIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Supra-aortic trunk CT. DLP
The dose (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Supra-aortic trunk CT. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Supra-aortic trunk CT. Acquisition parameters. kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Supra-aortic trunk CT. Acquisition parameters. mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Supra-aortic trunk CT. Acquisition parameters. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Supra-aortic trunk CT. Acquisition parameters. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Neck and ear, nose and throat sphere CT with contrast injection. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Neck and ear, nose and throat sphere CT with contrast injection. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Neck and ear, nose and throat sphere CT with contrast injection. CTDIvol
The dose (CTDIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Neck and ear, nose and throat sphere CT with contrast injection. DLP
The dose (DLP) expressed in mGy.cm will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Neck and ear, nose and throat sphere CT with contrast injection. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Neck and ear, nose and throat sphere CT with contrast injection. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological abdomen-pelvis CT scan. Acquisition type
The type of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological abdomen-pelvis CT scan. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological abdomen-pelvis CT scan. CTDIvol
The dose (CDTIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological abdomen-pelvis CT scan. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological abdomen-pelvis CT scan. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological abdomen-pelvis CT scan. Acquisition parameters (kV)
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological abdomen-pelvis CT scan. Acquisition parameters (mAs)
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological abdomen-pelvis CT scan. Acquisition parameters. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological abdomen-pelvis CT scan. Acquisition parameters. Helical pitch
Helical pitch will be recorded will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients: Oncological abdomen-pelvis CT scan. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Abdomen-pelvis CT scan to check for kidney stones. Acquisition type an
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Abdomen-pelvis CT scan to check for kidney stones. Number of acquisitions an
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Abdomen-pelvis CT scan to check for kidney stones. CTDIvol an
The dose (CDTIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Abdomen-pelvis CT scan to check for kidney stones. DLP an
The dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Abdomen-pelvis CT scan to check for kidney stones. BMI an
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Abdomen-pelvis CT scan to check for kidney stones. Acquisition parameters. Kv an
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Abdomen-pelvis CT scan to check for kidney stones. Acquisition parameters. mAs an
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Abdomen-pelvis CT scan to check for kidney stones. Rotation time an
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Abdomen-pelvis CT scan to check for kidney stones. Helical pitch an
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Abdomen-pelvis CT scan to check for kidney stones. Type of reconstruction algorithm an
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. CTDIvol
The dose (CTDIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. Acquisition parameters. kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. Acquisition parameters. mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Abdomen-pelvis CT scan for non-oncological purposes and to check for kidney stones. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological chest-abdomen-pelvis CT scan. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological chest-abdomen-pelvis CT scan. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological chest-abdomen-pelvis CT scan. CTDIvol
The dose (CDTIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological chest-abdomen-pelvis CT scan. DLP
The dose (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological chest-abdomen-pelvis CT scan. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological chest-abdomen-pelvis CT scan. Acquisition parameters. kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological chest-abdomen-pelvis CT scan. Acquisition parameters. mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological chest-abdomen-pelvis CT scan. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological chest-abdomen-pelvis CT scan. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Oncological chest-abdomen-pelvis CT scan. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Non-oncological chest-abdomen-pelvis CT scan. Acquisition type.
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Non-oncological chest-abdomen-pelvis CT scan. Number of acquisitions.
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Non-oncological chest-abdomen-pelvis CT scan. CDTIvol
The dose (CTDIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Non-oncological chest-abdomen-pelvis CT scan. CDTIvol. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Non-oncological chest-abdomen-pelvis CT scan. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Non-oncological chest-abdomen-pelvis CT scan. Acquisition parameters. kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Non-oncological chest-abdomen-pelvis CT scan. Acquisition parameters. mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Non-oncological chest-abdomen-pelvis CT scan. Acquisition parameters. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Non-oncological chest-abdomen-pelvis CT scan. Acquisition parameters. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Non-oncological chest-abdomen-pelvis CT scan. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological chest-abdomen CT scan. Aquisition type
The type of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological chest-abdomen CT scan. Number of aquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological chest-abdomen CT scan. CTDIvol
The dose (CTDIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Oncological chest-abdomen CT scan. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological chest-abdomen CT scan. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological chest-abdomen CT scan. Acquisition parameters (kV)
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological chest-abdomen CT scan. Acquisition parameters (mAs)
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological chest-abdomen CT scan. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Oncological chest-abdomen CT scan. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Oncological chest-abdomen CT scan. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Non-oncological chest-abdomen CT scan. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Non-oncological chest-abdomen CT scan. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Non-oncological chest-abdomen CT scan. CTDIvol
The dose (CDTIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Non-oncological chest-abdomen CT scan. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Non-oncological chest-abdomen CT scan
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Non-oncological chest-abdomen CT scan. Acquisition parameters. kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Non-oncological chest-abdomen CT scan. Acquisition parameters. mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients: Non-oncological chest-abdomen CT scan. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lower limb angiography. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lower limb angiography. Number of acquitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lower limb angiography. CTDIvol
The dose CDTIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lower limb angiography. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Lower limb angiography. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Lower limb angiography. Acquisition parameters. kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Lower limb angiography. Acquisition parameters. mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lower limb angiography. Rotation time
Rotation time will be recorded in seconds.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lower limb angiography. Helical pitch
Helical pitch will be recorded as a ratio.This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lower limb angiography. Type of reconstruction algorithm
Type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Cervical spine CT scan. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Cervical spine CT scan. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Cervical spine CT scan. CDTIvol
The dose (CDTIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Cervical spine CT scan. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Cervical spine CT scan. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Cervical spine CT scan. Acquisition parameters. kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Cervical spine CT scan. Acquisition parameters. mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Cervical spine CT scan. Acquisition parameters. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Cervical spine CT scan. Acquisition parameters. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Cervical spine CT scan. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Thoracic spine CT scan. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Thoracic spine CT scan. Number of acquisitions
The number of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Thoracic spine CT scan. CTDIvol
The dose (CDTIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Thoracic spine CT scan. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Thoracic spine CT scan. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Thoracic spine CT scan. Acquisition parameters (kV)
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Thoracic spine CT scan. Acquisition parameters (mAs)
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Thoracic spine CT scan. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Thoracic spine CT scan. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Thoracic spine CT scan. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lumbar spine CT scan. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lumbar spine CT scan. Number of acquisitions
The number of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lumbar spine CT scan. CTDIvol
The dose (CDTIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Lumbar spine CT scan. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Lumbar spine CT scan. BMI
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Lumbar spine CT scan. Acquisition parameters. kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Lumbar spine CT scan. Acquisition parameters. mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Lumbar spine CT scan. Acquisition parameters. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Lumbar spine CT scan. Acquisition parameters. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients: Lumbar spine CT scan. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Pelvis CT scan. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Pelvis CT scan. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Pelvis CT scan. CTDIvol
The dose (CDTIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Pelvis CT scan. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded.
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Pelvis CT scan. BMI.
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Pelvis CT scan. Acquistion parameters. kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Pelvis CT scan. Acquistion parameters. mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Pelvis CT scan. Acquistion parameters. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Pelvis CT scan. Acquistion parameters. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients : Pelvis CT scan. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Extremities CT scan. Acquisition type
The type of acquisition will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Extremities CT scan. Number of acquisitions
The number of acquisitions will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Extremities CT scan. CTDIvol
The dose (CTDIvol) will be recorded.
Time frame: Periprocedural
Impact of the spectral acquisition/detection technique on the dose delivered to patients: Extremities CT scan. DLP
The dose length product (DLP) expressed in mGy.cm will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Extremities CT scan. BMI
Weight in kg and height in cm in will be combined to report BMI in kg/m\^2
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Extremities CT scan. Acquisition parameters. kV
Acquisition parameters (kV) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Extremities CT scan. Acquisition parameters. mAs
Acquisition parameters (mAs) will be recorded
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Extremities CT scan. Acquisition parameters. Rotation time
Rotation time will be recorded in seconds
Time frame: Periprocedural
Impact of patients' BMI on the dose delivered to patients : Extremities CT scan. Acquisition parameters. Helical pitch
Helical pitch will be recorded as a ratio. This represents the relationship between patient couch movement and X-ray beam width. It is the distance travelled by the table during one 360 degree gantry rotation divided by the collimated section thickness
Time frame: Periprocedural
Impact of reconstruction algorithms on the dose delivered to patients: Extremities CT scan. Type of reconstruction algorithm
The type of reconstruction algorithm (iterative or deep learning) will be recorded
Time frame: Periprocedural