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A Computer Model of Intracranial Pressure Dynamics During Traumatic Brain Injury that Explicitly Models Fluid Flows and Volumes

机译:创伤性脑损伤颅内压动力学计算机模型,明确模拟流体流量和体积

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摘要

This report documents a computer model of intracranial pressure (ICP) dynamics that is used to evaluate clinical treatment options for elevated ICP during traumatic brain injury (TBI). The model uses fluid volumes as primary state variables and explicitly models fluid flows as well as the resistance, compliance, and pressure associated with each of the compartments (arteries and arterioles, capillary bed, veins, venous sinus, ventricles, and brain parenchyma). The model has been tested to assure that it reproduces a correct physiologic response to intra-and extra-parenchymal hemorrhage and edema, and to therapies directed at reducing ICP such as cerebral spinal fluid drainage, mannitol administration, head elevation, and mild hyperventilation.The model is able to replicate observed clinical behavior in many cases, including elevated ICP associated with severe cerebral edema, subdural hematoma, and cerebrospinal fluid blockage. The model also successfully reproduces tne cerebrovascular regulatory mechanisms that are activated during TBI in response to various abnormalities such as high or low systemic blood pressure.We conclude that incorporating fluid volumes and flows into a model of lCP dynamics significantly improved its clinical utility. Additional improvements are anticipated (or wil1 accrue or will result) as the specific mechanisms that modify cerebral compliance and autoregulation during TBI and elevated ICP are further delineated.
机译:该报告记录了颅内压(ICP)动态的计算机模型,该模型用于评估颅脑损伤(TBI)期间ICP升高的临床治疗选择。该模型使用流体体积作为主要状态变量,并显式地对流体流动以及与每个隔室(动脉和小动脉,毛细血管床,静脉,静脉窦,心室和脑实质)相关的阻力,顺应性和压力进行建模。该模型已经过测试,以确保它对实质内和实质外出血和水肿以及针对降低ICP的疗法(例如脑脊髓液引流,甘露醇给药,头抬高和轻度过度换气)产生正确的生理反应。该模型能够在许多情况下复制观察到的临床行为,包括与严重脑水肿,硬脑膜下血肿和脑脊液阻塞相关的ICP升高。该模型还成功地再现了在TBI期间因各种异常(例如高或低的全身血压)而激活的脑血管调节机制。我们得出结论,将体液和血流纳入LC动力学模型可以显着改善其临床实用性。随着进一步描述在TBI和ICP升高期间改变大脑顺应性和自动调节功能的特定机制,有望获得进一步的改善(或将产生或导致)。

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    Wakeland Wayne;

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  • 年度 2003
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