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体液稳态中的神经机制。

Neural mechanisms in body fluid homeostasis.

作者信息

DiBona G F

出版信息

Fed Proc. 1986 Dec;45(13):2871-7.

PMID:3536583
Abstract

Under steady-state conditions, urinary sodium excretion matches dietary sodium intake. Because extracellular fluid osmolality is tightly regulated, the quantity of sodium in the extracellular fluid determines the volume of this compartment. The left atrial volume receptor mechanism is an example of a neural mechanism of volume regulation. The left atrial mechanoreceptor, which functions as a sensor in the low-pressure vascular system, is located in the left atrial wall, which has a well-defined compliance relating intravascular volume to filling pressure. The left atrial mechanoreceptor responds to changes in wall left atrial tension by discharging into afferent vagal fibers. These fibers have suitable central nervous system representation whose related efferent neurohumoral mechanisms regulate thirst, renal excretion of water and sodium, and redistribution of the extracellular fluid volume. Efferent renal sympathetic nerve activity undergoes appropriate changes to facilitate renal sodium excretion during sodium surfeit and to facilitate renal sodium conservation during sodium deficit. By interacting with other important determinants of renal sodium excretion (e.g., renal arterial pressure), changes in efferent renal sympathetic nerve activity can significantly modulate the final renal sodium excretion response with important consequences in pathophysiological states (e.g., hypertension, edema-forming states).

摘要

在稳态条件下,尿钠排泄与饮食中的钠摄入量相匹配。由于细胞外液渗透压受到严格调节,细胞外液中的钠含量决定了该腔室的容积。左心房容量感受器机制是容积调节神经机制的一个例子。左心房机械感受器作为低压血管系统中的传感器,位于左心房壁,其具有明确的顺应性,将血管内容积与充盈压联系起来。左心房机械感受器通过向迷走神经传入纤维放电来响应左心房壁张力的变化。这些纤维在中枢神经系统有相应的代表,其相关的传出神经体液机制调节口渴、肾脏对水和钠的排泄以及细胞外液容积的重新分布。肾交感神经传出活动会发生适当变化,在钠过剩时促进肾脏排钠,在钠缺乏时促进肾脏保钠。通过与肾钠排泄的其他重要决定因素(如肾动脉压)相互作用,肾交感神经传出活动的变化可显著调节最终的肾钠排泄反应,在病理生理状态(如高血压、水肿形成状态)中产生重要影响。

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