Cortical Laminar Necrosis After Severe Hydrocephalus: Case Report and Review of the Literature

Author:

Peyton Margo A.1ORCID,Cho Sung-Min2,Xia Yuanxuan3,Piran Pirouz4,Luciano Mark3,Rivera-Lara Lucia5

Affiliation:

1. Department of Neurology, Mass General Brigham, Boston, MA, USA

2. Departments of Neurology, Neurosurgery, Surgery, and Anesthesia/Critical Care, Johns Hopkins University School of Medicine, Baltimore, MD, USA

3. Department of Neurosurgery, Johns Hopkins University School of Medicine, Baltimore, MD, USA

4. Department of Neurology, California Northstate University College of Medicine, Elk Grove, CA, USA

5. Neurocritical Care Division, Department of Neurology, Stanford University, Palo Alto, CA, USA

Abstract

Objectives We present a case of cortical laminar necrosis after severe hydrocephalus to highlight considerations for multimodal cerebral autoregulation monitoring to determine mean arterial pressure (MAP) thresholds during neurological emergencies, as well as postoperative head imaging for patients with ventriculoperitoneal shunts (VPS). Methods A 40-year-old woman with a history of Chiari II malformation and non-communicating hydrocephalus with VPS presented in septic shock from a sacral wound. One week after colostomy for fecal diversion, the patient became comatose and had progressive slowing to full suppression on electroencephalogram (EEG). Results CT imaging revealed hydrocephalus, most likely due to VPS distal obstruction from intraperitoneal surgery. Despite neurosurgical and neurocritical care management, MRI confirmed diffuse cortical hypoxic ischemic injury. Discussion The Neurocritical Care Society’s Emergency Neurological Life Support (ENLS) protocol for neurological emergencies focuses on managing increased intracranial pressure (ICP) but does not set MAP goals. As ICP may be very high during brain herniation, our case demonstrates that higher MAP may be required to maintain adequate circulation. To determine the optimal MAP target, bedside multimodality monitoring, including ICP monitors, transcranial doppler, and near infrared spectroscopy, can help establish individualized cerebral autoregulation guided thresholds. Outside of a neurological intensive care unit, EEG can monitor cerebral blood flow and indicate windows for intervention before exam or imaging changes. Additionally, our case demonstrates how a post-operative surveillance CT head should be considered for patients with VPS.

Funder

NHLBI

Publisher

SAGE Publications

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