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Spreading depolarizations (SDs) are profound disruptions of cellular homeostasis that slowly propagate through gray matter and present an extraordinary metabolic challenge to brain tissue. Recent work has shown that SDs occur commonly in human patients in the neurointensive care setting and have established a compelling case for their importance in the pathophysiology of acute brain injury. The International Conference on Spreading Depolarizations (iCSD) held in Boca Raton, Florida, in September of 2018 included a discussion session focused on the question of "Which SDs are deleterious to brain tissue?" iCSD is attended by investigators studying various animal species including invertebrates, in vivo and in vitro preparations, diseases of acute brain injury and migraine, computational modeling, and clinical brain injury, among other topics. The discussion included general agreement on many key issues, but also revealed divergent views on some topics that are relevant to the design of clinical interventions targeting SDs. A draft summary of viewpoints offered was then written by a multidisciplinary writing group of iCSD members, based on a transcript of the session. Feedback of all discussants was then formally collated, reviewed and incorporated into the final document. It is hoped that this report will stimulate collection of data that are needed to develop a more nuanced understanding of SD in different pathophysiological states, as the field continues to move toward effective clinical interventions.
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http://dx.doi.org/10.1007/s12028-019-00776-7 | DOI Listing |
Exp Neurol
December 2024
Department of Neurosurgery, University of Cincinnati, Cincinnati, OH 45267, USA; Department of Neurology and Rehabilitation Medicine, University of Cincinnati, Cincinnati, OH 45267, USA. Electronic address:
Cortical spreading depolarizations (CSDs) are the most common electrophysiological dysfunction following a traumatic brain injury (TBI), and clustered CSDs (≥3 CSDs in 2 h) are associated with poor outcomes 6 months after TBI. While many experimental studies have investigated a single CSD after injury, no known studies have investigated how time after injury affects the characteristics and impact of a CSD cluster. This study sought to determine the characteristics of a cluster of repetitive CSDs when induced at three different time points after moderate experimental TBI.
View Article and Find Full Text PDFUnlabelled: Coxsackievirus B3 (CVB3) is a non-enveloped picornavirus that can cause systemic inflammatory diseases including myocarditis, pericarditis, pancreatitis, and meningoencephalitis. We have previously reported that following infection, CVB3 localizes to mitochondria, inducing mitochondrial fission and mitophagy, while inhibiting lysosomal degradation by blocking autophagosome-lysosome fusion. This results in the release of virus-laden mitophagosomes from the host cell as infectious extracellular vesicles (EVs) which allow non-lytic viral egress.
View Article and Find Full Text PDFJ Neurophysiol
December 2024
Department of Biology, Queen's University, XXX.
Spreading depolarization (SD) temporarily shuts down neural processing in mammals and insects. Age is a critical factor for predicting the consequences of SD in humans. We investigated the effect of aging in an insect model of SD and explored the contribution of oxidative stress.
View Article and Find Full Text PDFNeurosurgery
December 2024
Department of Neurosurgery, University of Virginia School of Medicine, Charlottesville, Virginia, USA.
Monitoring of electrocorticography for the purpose of detecting spreading depolarization (SD) events is becoming increasingly used both for research and clinical applications. Although such monitoring bears many similarities to standard long-term epilepsy monitoring, there are a number of differences that neurosurgeons need to be aware of when initiating such a program. In addition, most of the focus in SD monitoring has been on traumatic and vascular conditions, where invasive monitoring is used commonly, but electrocorticography is not commonly used.
View Article and Find Full Text PDFmedRxiv
November 2024
CerebroScope, the dba entity of SciencePlusPlease LLC, 4165 Blair St., Pittsburgh, PA 15207-1508, USA.
Background/objective: Cortical spreading depolarization (SD) is increasingly recognized as a major contributor to secondary brain injury. Monitoring SDs could be used to institute and guide SD-based therapeutics if noninvasive detection methods were available. Our primary objective is to use a high density array of electrodes to compare scalp direct current (DC)-shifts to SDs detected by gold standard electrocorticography (ECoG) to establish proof-of-concept validation that scalp DC-potentials can potentially provide noninvasive SD detection.
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