During orotracheal intubation failure in securing an airway can result in serious oxygenation problems. Beside the classic laryngoscopes and fibreoptic scopes, devices with high-resolution video cameras placed in the tip of the devices, were developed and attained in daily routines. Studies and case reports reveal them to be superior in both normal and difficult intubation, especially improving the first-attempt success rate. Latest advancements of the Bonfils fiberscope resulted in the C-MAC VS, which combines rigid and semi-rigid abilities to a rigid video stylet with a flexible tip. Because of its front positioned high-resolution camera resulting in an indirect visualization, it may also have the benefits of video laryngoscopes. Very little data is available on larger numbers of use and the investigators do not know about rare side effects and complications with the use of the device, such as esophageal intubations. Due to its direct view and positioning on vocal cord level, the investigators expect a similar or even lower rate of endotracheal intubation, using the C-MAC VS. The investigators therefore plan to analyze the use of the C-MAC VS regarding its efficiency and safety during airway management in everyday clinical practice. This should provide the evidence about safe use, possible risk factors, rare complications and adverse events, as well as the preferred clinical airway situations to use the C-MAC VS.
Orotracheal intubation is a core competence in anesthesia and emergency medicine. Failure in securing an airway can result in hypoxemia, aspiration, neurologic damage, cardiovascular complications, and death. Difficult anatomic structures, upper airway abnormalities, or airway trauma bear the risk of failed intubation inability to ventilate the lungs that furthermore results in oxygenation failure. Literature tells that the rate of unexpected difficult intubations ranges from 5 to 10%, mostly corresponding to a Cormack/Lehane grade (C\&L) 3 or 4. Beside the classic laryngoscopes and fibreoptic scopes, devices with high-resolution video cameras placed in the tip of the devices, were developed and attained in daily routines. Studies and case reports reveal them to be superior in both normal and difficult intubation, especially improving the first-attempt success rate. Rigid fiber-optic scopes may reduce intubation time and their use may result in a higher success rate. A study with 216 Patients using the Bonfils fiberscope for airway management, showed a success rate up to 98,4. Looking at the complication rates, upper airway trauma in normal patients after direct laryngoscopy with a Macintosh blade has been reported up to 6.9% and can be reduced by using a video laryngoscope. Latest advancements of the Bonfils fiberscope resulted in the C-MAC VS, which combines rigid and semi-rigid abilities to a rigid video stylet with a flexible tip. Because of its front positioned high-resolution camera resulting in an indirect visualization, it may also have the benefits of video laryngoscopes. But data about this new tool is rare, because this device is recently licensed. Very little data is available on larger numbers of use and the investigators do not know about rare side effects and complications with the use of the device, such as esophageal intubations. Due to its direct view and positioning on vocal cord level, the investigators expect a similar or even lower rate of endotracheal intubation using the C-MAC VS. The investigators therefore plan to analyze the use of the C-MAC VS regarding its efficiency and safety during airway management in everyday clinical practice. This prospective observational trial should provide the evidence about safe use, possible risk factors, rare complications and adverse events, as well as the preferred clinical airway situations to use the C-MAC VS. The investigators will check for given general research consent. All airway management procedures and the recorded data are daily clinical routine. No experimental intervention will take place, there is no change in usual clinical practice and therefore patient's safety will not be altered by participating in the study. The study will end when the tracheal tube is placed properly and the airway is secured. On the day after surgery the investigators will visit the patient as usually after each anesthesia to obtain follow up data. In case of a complication the patient will be followed up until the problem is cured or solved.
Study Type
OBSERVATIONAL
Enrollment
10
C-MAC VS, Karl Storz AG, 78532 Tuttlingen, Germany It has a flexible tip and a distal angular offset, in which the camera and light sources are integrated. It can be aligned (up to 60°) to the patient's anatomical structures to facilitate intubation.
Bern University Hospital and University of Bern
Bern, Switzerland
First-attempt oro-tracheal intubation success rate in percentage
Rate of a successful intubation at first attempt
Time frame: The overall rate of successful intubation at first attempt. The study will end when the tracheal tube is placed properly and the airway is secured (the first attempt should not pass 120 seconds)
Overall success rate
The overall rate of successful intubation.
Time frame: Intraoperative (The study will end when the tracheal tube is placed properly and the airway is secured.)
Number of attempts
The total number of attempts needed for the intubation in each study session
Time frame: Intraoperative (Starts when the device is inserted in the patients mouth and ends when the airway is secured.)
Difficulty of intubation
It can range from very easy to very difficult
Time frame: Starts when the device is inserted in the patients mouth and ends when the airway is secured. Estimated time: 120 seconds
Preferred method used to lift the tongue ventral to increase space in the oral cavity and the approach
The method can include using finger, laryngoscope, spatula or other. A medial, retromolar right side and retromolar left side approach can be performed.
Time frame: The beginning of the intubation procedure, when the device is inserted in the patients mouth. Estimated time 120 seconds
Tube size used
Variations of tube sizes that will be used. It is chosen because of the patients size.
Time frame: Baseline
Time of the intubation procedure
The procedure starts as soon as the tip of the device passes patients lips and ends when a first recording of the endtidal carbon dioxide is shown.
Time frame: Starts when the device is inserted in the patients mouth and ends when the airway is secured. Estimated time: 120 seconds
Intubation interim times
Interim times until the device is completely out of tube
Time frame: The interim times need to be as short as possible. The estimated time for intubation: 120 seconds.
An alternative method to establish a patent airway
If intubation is not possible with the Intubations Device C-MAC® VS Video Stylet ,a different device has to be used for intubation. Alternative device: flexible laryngoscope,C-MAC Videolaryngoskop,Macintosh or LAMA.
Time frame: Starts when the device is inserted in the patients mouth and ends when the airway is secured. Estimated time for intubation: 120 seconds
Possible problems with C-MAC VS
Adverse Events, technical problems with the device
Time frame: If any problems occur during the preparations or during intubation itself which starts when the device is inserted in the patients mouth and ends when the airway is secured. Estimated time for intubation: 120 seconds
Complications during intubation
For example bleeding, laryngospasm, edema, swelling and other can be complications during intubation.
Time frame: Starts when the device is inserted in the patients mouth and ends when the airway is secured. Estimated time: 120 seconds
Airway ratings (Cormack- Lehane and POGO)
Cormack- and Lehane is used to classify the laryngeal view, POGO stands for percentage of glottic opening
Time frame: The ratings are made during the process of intubation, so when the the device is inserted in the patients mouth and ends when the airway is secured. Estimated time for intubation: 120 seconds
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