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从慢性脑脊髓静脉功能不全的病理生理学角度看脑静脉回流的生物物理学

Biophysics of venous return from the brain from the perspective of the pathophysiology of chronic cerebrospinal venous insufficiency.

作者信息

Zaniewski Maciej, Simka Marian

机构信息

Department of General & Vascular Surgery in Tychy, Silesian Medical University, Katowice, Poland.

出版信息

Rev Recent Clin Trials. 2012 May;7(2):88-92. doi: 10.2174/157488712800100288.

Abstract

This article discusses the biophysical aspects of venous outflow from the brain in healthy individuals and in patients with chronic cerebrospinal venous insufficiency. Blood flows out of the brain differently, depending on body position. In the supine position it flows out mainly through internal jugular veins, while in the upright position it uses the vertebral veins. This phenomenon is probably not due to the active regulation of the flow but instead results from the collapse of jugular veins when the head is elevated. Such a collapse is associated with a significant increase in flow resistance, which leads to redirection of the flow towards the vertebral pathway. Theoretical calculations respecting the rules of fluid mechanics indicate that the pressure gradients necessary for moving blood from the brain toward the heart differ significantly between the supine and upright positions. The occlusion of internal jugular veins, according to fluid mechanics, should result in significant increase in the flow resistance and the restriction of cerebral flow, which is in line with clinical observations. Importantly, the biophysical analysis of cerebral venous outflow implies that the brain cannot easily compensate for increased peripheral venous resistance (namely, an occlusion of the large extracranial veins draining this organ), either by elevating the pressure gradient or by decreasing the vascular resistance through the recruitment of additional drainage pathways. This may mean that chronic cerebrospinal venous insufficiency may cause the destruction of the delicate nervous tissue of the central nervous system.

摘要

本文讨论了健康个体以及患有慢性脑脊髓静脉功能不全患者脑静脉流出的生物物理学方面。根据身体姿势的不同,血液从脑部流出的方式也有所不同。在仰卧位时,血液主要通过颈内静脉流出,而在直立位时,则通过椎静脉流出。这种现象可能并非由于血流的主动调节,而是由于头部抬高时颈静脉塌陷所致。这种塌陷会导致血流阻力显著增加,从而使血流转向椎静脉路径。依据流体力学规律进行的理论计算表明,在仰卧位和直立位时,血液从脑部流向心脏所需的压力梯度存在显著差异。根据流体力学原理,颈内静脉闭塞应会导致血流阻力显著增加以及脑血流量受限,这与临床观察结果相符。重要的是,对脑静脉流出的生物物理学分析表明,大脑无法轻易通过提高压力梯度或通过增加额外引流途径来降低血管阻力,以补偿外周静脉阻力增加(即引流该器官的大颅外静脉闭塞)的情况。这可能意味着慢性脑脊髓静脉功能不全可能会导致中枢神经系统脆弱神经组织的破坏。

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