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Use of a confidence scale in reporting postmortem fetal magnetic resonance imaging
A C G Breeze1, J J Cross, G A Hackett
1Division of Maternal-Fetal Medicine, Addenbrooke's Hospital, Cambridge, UK.
Objectives:
Postmortem magnetic resonance imaging (MRI) may be an alternative to conventional autopsy. However, it is unclear how confident radiologists are in reporting such studies. We sought to determine the confidence with which radiologists report on various fetal organs by developing a scale to express their confidence of normality and abnormality, and to place this in the context of a pathological diagnosis of whether the organ was in fact normal or abnormal.
Methods:
Thirty fetuses, aged 16-39 gestational weeks and weighing 61-3270 g, underwent postmortem MRI prior to conventional autopsy. MRI studies were reported by two radiologists with access to the clinical and sonographic history: a neuroradiologist, reporting head and neck, and a pediatric radiologist, reporting thorax, abdomen and pelvis. Radiologists used a scale (0 = definitely abnormal, 100 = definitely normal, 50 = unable to comment) to indicate their confidence of anatomical structures being normal or abnormal, using a checklist. Conventional autopsies were performed by pediatric pathologists blinded to the MRI findings, and these were considered the reference standard.
Results:
Most normal fetal organs had high scores on postmortem MRI, with median confidence scores above 80. However, the atrioventricular valves, duodenum, bowel rotation and pancreas proved more difficult to assess, with median scores of 50, 60, 60 and 62.5, respectively. Abnormal cardiac atria and ventricles, kidneys, cerebral hemispheres and corpus callosum were always detected with high or moderate degrees of confidence (median scores of 2.5, 5, 0, 0 and 30 respectively). However, in two cases with abnormal cardiac outflow tracts, both cases scored 50. Kappa values, assessing agreement between MRI diagnoses of abnormality and autopsy, were high for the brain (0.83), moderate for the lungs (0.56) and fair for the heart (0.33).
Conclusions:
This scoring system represents an attempt to define the confidence of radiologists to report varying degrees of normality and abnormality following z ex-utero fetal MRI. While most fetal anatomy is clearly visualized on postmortem MRI, radiologists may lack confidence reporting such studies and there are particular problems with assessment of some cardiac and gastrointestinal structures, both normal and abnormal.
Insights
Postmortem MRI shows most fetal organs are normal, but radiologists have lower confidence in assessing some cardiac and gastrointestinal structures. This study developed a confidence scale for fetal MRI reporting.
Area of Science:
- Medical Imaging
- Radiology
- Fetal Pathology
Background:
- Postmortem magnetic resonance imaging (MRI) is a potential alternative to conventional autopsy.
- Radiologists' confidence in interpreting fetal postmortem MRI requires further investigation.
Purpose of the Study:
- To develop and evaluate a confidence scoring system for radiologists reporting fetal postmortem MRI.
- To assess radiologist confidence in identifying normal and abnormal fetal organs using MRI.
Main Methods:
- Thirty fetuses underwent postmortem MRI followed by autopsy.
- Two radiologists assessed fetal organs using a 0-100 confidence scale for normality/abnormality.
- Autopsy findings served as the reference standard.
Main Results:
- Most normal fetal organs received high confidence scores (>80) on postmortem MRI.
- Lower confidence scores were observed for atrioventricular valves, duodenum, bowel rotation, and pancreas.
- Abnormalities in cardiac atria/ventricles, kidneys, brain, and corpus callosum were detected with high confidence.
Conclusions:
- A confidence scoring system can quantify radiologist certainty in fetal postmortem MRI interpretation.
- While most fetal anatomy is visualized, specific cardiac and gastrointestinal structures present assessment challenges.
- Further refinement of postmortem MRI interpretation protocols is needed for certain fetal organs.
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