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A new model of concussive brain injury in the cat produced by extradural fluid volume loading: I. Biomechanical properties

 

作者: StalhammarDaniel,   GalinatBrian J.,   AllenArletha M.,   BeckerDonald P.,   StonningtonHenry H.,   HayesRonald L.,  

 

期刊: Brain Injury  (Taylor Available online 1987)
卷期: Volume 1, issue 1  

页码: 73-91

 

ISSN:0269-9052

 

年代: 1987

 

DOI:10.3109/02699058709034448

 

出版商: Taylor&Francis

 

关键词: acute brain injury;acute head injury;concussive head injury;closed head injury;pressure transients;mechanical brain injury model

 

数据来源: Taylor

 

摘要:

This study presents a new device for producing experimental, concussive head injury together with a detailed description of biomechanical features of fluid percussion brain injury in the cat. Anaesthetized cats were subjected to multiple (N=3) or single injuries (N=87). The variables studied in repeated injury experiments included the volume of fluid injected intracranially, rate of fluid flow, and the associated pressure transients recorded extracranially in the injury device and intracranially at supratentorial and infratentorial sites. Peak fluid flow increased with increasing volumes of fluid loaded intracranially. Extracranial pressure peaks and durations increased when volume loading was increased. Extracranial and intracranial pressure transients were similar at all recording sites. The form of pressure transients recorded in single injury experiments was similar to that recorded in multiple injury experiments. In single injury experiments, the extracranial pressure peaks and durations also increased with increased intracranial fluid volume loading. The slopes describing the relationships between intracranial volume loading and extracranial pressure transients were significantly different in single and multiple injury experiments. Details of the design and use of the head injury device are also discussed.

 

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