With increasing cure rates of childhood cancer there is growing recognition of late effects of treatments. However, there is a lack of non-invasive and child-friendly procedures that can indicate possible late damage. This study uses morphologic and free-breathing phase-resolved functional low-field (PREFUL) magnetic resonance imaging (MRI) to identify persistent pulmonary toxicity after treatment for childhood acute lymphoblastic leukemia (ALL), Hodgkin's disease (HD) and allogeneic stem cell transplantation. Furthermore, cardiopulmonary testing is performed by means of a pulmonary function test, echocardiography with strain analysis and spiroergometry.
With increasing cure rates of childhood cancer there is growing recognition of late effects of treatments. However, there is a lack of non-invasive and child-friendly procedures that can indicate possible late damage. This study uses morphologic and free-breathing phase-resolved functional low-field (PREFUL) magnetic resonance imaging (MRI) to identify persistent pulmonary toxicity after treatment for childhood acute lymphoblastic leukemia (ALL), Hodgkin's disease (HD) and allogeneic stem cell transplantation. The examination in the new 0.55 T MRI system does not differ in procedure and especially with regard to contraindications for an MRI examination from an examination in routinely used 1.5 or 3T devices. There is no intravenous administration of contrast medium. This method has already yielded relevant results in a previous study on the frequency of lung parenchymal changes in pediatric and adolescent patients with past SARS-CoV-2 infection detected by PCR. In addition, study participants will undergo cardiopilmonary testing by spirometry, spiroergometry and echocardiography with strain analysis to assess cardiac and pulmonary performance. For the individual patient, the duration of study participation is 120 minutes. This includes approximately 30 minutes for education and consent of study participants/parents/guardians, 30 minutes for lung function test and MRI, and 30 minutes for cardiopulmonary testing. The purpose of this study is to assess early posttherapeutic changes as well as possible persistent pulmonary toxicity and change in cardiopulmonary performance.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
27
Imaging of lung parenchyma and function by LF-MRI
Myocardial function (Strain-Analysis by echocardiography) and spiroergometry, capillary blood gases and lactate
Lung function (VC%, FEV1%)
Standard procedures/parameters routinely available in follow-up care after oncological treatment
Department of Pediatrics and Adolescent Medicine
Erlangen, Bavaria, Germany
Morphologic lung assessment (LF-MRI)
Morphologic changes in lung parenchyma
Time frame: Single time point (1 day)
Functional lung assessment (LF-MRI)
Change in functional lung parameters
Time frame: Single time point (1 day)
Cardiopulmonary testing (VO2)
Oxygen uptake
Time frame: Single time point (1 day)
Cardiopulmonary testing (VO2max)
Peak oxygen uptake
Time frame: Single time point (1 day)
Cardiopulmonary testing (RER)
Respiratory exchange ratio
Time frame: Single time point (1 day)
Cardiopulmonary testing (VT2)
Ventilatory anaerobic threshold
Time frame: Single time point (1 day)
Cardiopulmonary testing (VCO2)
Carbon dioxide output
Time frame: Single time point (1 day)
Cardiopulmonary testing (HR)
Heart rate
Time frame: Single time point (1 day)
Cardiopulmonary testing (HRR)
Heart Rate Reserve
Time frame: Single time point (1 day)
Cardiopulmonary testing (Breath rate at VAT)
Breath rate at VAT
Time frame: Single time point (1 day)
Cardiopulmonary testing (BRR)
Breath rate reserve
Time frame: Single time point (1 day)
Cardiopulmonary testing (VE)
Minute Ventilation
Time frame: Single time point (1 day)
Cardiopulmonary testing (O2-Pulse)
O2-Pulse
Time frame: Single time point (1 day)
Cardiopulmonary testing (HRV)
Heart rate variability
Time frame: Single time point (1 day)
Cardiopulmonary testing (Borg-Scale)
Exercise capacity (Borg-Scale)
Time frame: Single time point (1 day)
Cardiopulmonary testing (VO2)
Capillary blood gases and lactate
Time frame: Single time point (1 day)
Cardiopulmonary testing (Strain-Analysis)
Strain-Analysis by echocardiography
Time frame: Single time point (1 day)
Pulmonary test (Lung function)
Lung function (VC%, FEV1%)
Time frame: Single time point (1 day)
Blood sample (Blood count)
Blood Count
Time frame: Single time point (1 day)
Blood sample (Enterocytes)
Concentration of Enterocytes
Time frame: Single time point (1 day)
Blood sample (Liver enzymes)
Liver enzymes
Time frame: Single time point (1 day)
Blood sample (Retention parameters)
Concentration of kreatinin and urea
Time frame: Single time point (1 day)
Weight
Weight of the participant in kilograms
Time frame: Single time point (1 day)
Height
Height of the participant in meters
Time frame: Single time point (1 day)
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