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- W3138989901 abstract "Cavitation has gained popularity in recent years as a potential mechanism of blast-induced traumatic brain injury (bTBI). This review presents the most prominent debates on cavitation; how bubbles can form or exist within the cerebrospinal fluid (CSF) and brain vasculature, potential mechanisms of cellular, and tissue level damage following the collapse of bubbles in response to local pressure fluctuations, and a survey of experimental and computational models used to address cavitation research questions. Due to the broad and varied nature of cavitation research, this review attempts to provide a necessary synthesis of cavitation findings relevant to bTBI, and identifies key areas where additional work is required. Fundamental questions about the viability and likelihood of CSF cavitation during blast remain, despite a variety of research regarding potential injury pathways. Much of the existing literature on bTBI evaluates cavitation based off its prima facie plausibility, while more rigorous evaluation of its likelihood becomes increasingly necessary. This review assesses the validity of some of the common assumptions in cavitation research, as well as highlighting outstanding questions that are essential in future work." @default.
- W3138989901 created "2021-03-29" @default.
- W3138989901 creator A5040766828 @default.
- W3138989901 creator A5044740756 @default.
- W3138989901 date "2021-03-12" @default.
- W3138989901 modified "2023-10-06" @default.
- W3138989901 title "Cerebrospinal Fluid Cavitation as a Mechanism of Blast-Induced Traumatic Brain Injury: A Review of Current Debates, Methods, and Findings" @default.
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- W3138989901 doi "https://doi.org/10.3389/fneur.2021.626393" @default.
- W3138989901 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/7994250" @default.
- W3138989901 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33776887" @default.
- W3138989901 hasPublicationYear "2021" @default.
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