首页> 外文期刊>American Journal of Physiology >Intracranial pressure accommodation is impaired by blocking pathways leading to extracranial lymphatics.
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Intracranial pressure accommodation is impaired by blocking pathways leading to extracranial lymphatics.

机译:颅内淋巴管阻塞的通路阻碍了颅内压力的调节。

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摘要

Tracer studies indicate that cerebrospinal fluid (CSF) transport can occur through the cribriform plate into the nasal submucosa, where it is absorbed by cervical lymphatics. We tested the hypothesis that sealing the cribriform plate extracranially would impair the ability of the CSF pressure-regulating systems to compensate for volume infusions. Sheep were challenged with constant flow or constant pressure infusions of artificial CSF into the CSF compartment before and after the nasal mucosal side of the cribriform plate was sealed. With both infusion protocols, the intracranial pressure (ICP) vs. flow rate relationships were shifted significantly to the left when the cribriform plate was blocked. This indicated that obstruction of the cribriform plate reduced CSF clearance. Sham surgical procedures had no significant effects. Estimates of the proportional flow through cribriform and noncribriform routes suggested that cranial CSF absorption occurred primarily through the cribriform plate at low ICPs.Additional drainage sites (arachnoid villi or other lymphatic pathways) appeared to be recruited only when intracranial pressures were elevated. These data challenge the conventional view that CSF is absorbed principally via arachnoid villi and provide further support for the existence of several anatomically distinct cranial CSF transport pathways.
机译:示踪剂研究表明,脑脊液(CSF)可以通过筛状板进入鼻粘膜下层,然后被颈淋巴管吸收。我们检验了以下假说:颅外密封筛状板会损害CSF调压系统补偿输液量的能力。在密封筛状板的鼻粘膜侧之前和之后,以恒定流量或恒定压力将人工CSF输注到CSF隔室中,挑战绵羊。在两种输注方案中,当颅骨板被阻塞时,颅内压(ICP)与流速的关系都显着向左移动。这表明筛状板的阻塞降低了CSF清除率。假手术没有明显影响。通过筛状和非筛状途径的比例流动的估计表明,颅脑CSF吸收主要在低ICP时通过筛状板发生。另外,仅在颅内压升高时才募集其他引流部位(蛛网膜绒毛或其他淋巴途径)。这些数据挑战了传统的观点,即脑脊液主要通过蛛网膜绒毛吸收,并为几种解剖学上不同的颅脑CSF转运途径的存在提供了进一步的支持。

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