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Published on: June 18, 2021
Critical illness-associated cerebral microbleeds (CIACM) after urosepsis: An under-recognized cause of persistent
1Department of Anesthesia and Critical Care, Sultan Qaboos University Hospital, Muscat, Oman.
Abstract:
Critical illness-associated cerebral microbleeds (CIACM) are increasingly recognized as a form of structural brain injury in critically ill patients, particularly in the setting of sepsis, severe hypoxemia, and multiorgan failure. On susceptibility-weighted MRI, CIACM typically shows a characteristic distribution involving the corpus callosum, juxtacortical white matter, brainstem, and cerebellum, with relative sparing of the deep gray nuclei. However, deep gray nuclei involvement may be observed in more severe cases, supporting the concept of diffuse microvascular injury rather than a focal neurologic disorder. Although the exact mechanism remains not completely elucidated, endothelial dysfunction, blood-brain barrier disruption, and hypoxia-related microangiopathy are playing major roles. Clinically, CIACM carries important significances, including prolonged encephalopathy, uncertainty in neurologic prognostication, and challenges related to anticoagulation management. Despite growing recognition, the condition likely remains underdiagnosed because MRI is not routinely performed in critically ill patients with persistent altered mental status. We describe a patient with septic shock secondary to obstructive uropathy who developed persistent encephalopathy and was later found to have CIACM on MRI.
Insights
Critical illness-associated cerebral microbleeds (CIACM) are a type of brain injury in critically ill patients. This case highlights CIACM in septic shock, emphasizing the need for MRI in persistent altered mental status.
Area of Science:
- Neurology
- Critical Care Medicine
- Radiology
Background:
- Critical illness-associated cerebral microbleeds (CIACM) represent a structural brain injury in critically ill patients.
- CIACM is often associated with sepsis, hypoxemia, and multiorgan failure.
- Endothelial dysfunction, blood-brain barrier disruption, and hypoxia contribute to CIACM pathogenesis.
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