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Published on: December 29, 2016
The MRI of Jahi McMath and Its Implications for the Global Ischemic Penumbra Hypothesis
D Alan Shewmon1, Noriko Salamon2
1Pediatrics and Neurology, 12222David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA, USA.
Abstract:
Jahi McMath was diagnosed brain dead on 12/12/2013 in strict accordance with both the pediatric and adult Guidelines, reinforced by 4 isoelectric electroencephalograms and a radionuclide scan showing intracranial circulatory arrest. Her magnetic resonance imaging scan 9 1/2 months later surprisingly showed gross integrity of cortex, basal ganglia, thalamus, and upper brainstem. The greatest damage was in the white matter, which was extensively demyelinated and cystic, and in the lower brainstem, most likely from partial herniation that resolved. The apparent integrity of gray matter and the ascending reticular activating system may have provided a potential structural basis for the reemergence of some limited brain functions, while the white matter and lower brainstem lesions would have caused severe motor disability, brainstem areflexia and apnea. The findings indicate that there could never have been a period of sustained intracranial circulatory arrest. Rather, at the time of brain death diagnosis, low blood flow below the detection threshold of the radionuclide scan was sufficient to maintain widespread neuronal viability, though insufficient to support synaptic function. Her case represents the first indirect confirmation of the reality and clinical relevance of global ischemic penumbra, hypothesized in 1999 as a generally unacknowledged and possibly common brain death mimic.
Insights
Jahi McMath
Area of Science:
- Neurology
- Neuroscience
- Medical Ethics
Background:
- Jahi McMath was diagnosed brain dead in 2013.
- Diagnosis was based on established pediatric and adult guidelines, including electroencephalograms and radionuclide scans indicating intracranial circulatory arrest.
Observation:
- A subsequent MRI revealed unexpected structural integrity of gray matter areas, including the cortex, basal ganglia, thalamus, and upper brainstem.
- Significant white matter demyelination and cystic changes, along with lower brainstem damage, were observed.
- These findings suggest potential for limited brain function despite severe motor and brainstem deficits.
Findings:
- The case challenges the diagnosis of sustained intracranial circulatory arrest.
- It suggests that minimal blood flow, below detection thresholds, may preserve neuronal viability without supporting synaptic function.
- This indirectly supports the concept of global ischemic penumbra as a potential mimic of brain death.
Implications:
- The findings necessitate a re-evaluation of brain death diagnostic criteria and the understanding of cerebral blood flow.
- This case highlights the potential for misinterpreting the "no-reflow" phenomenon in clinical practice.
- It underscores the importance of considering the global ischemic penumbra in cases of suspected brain death.

