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成年和老年大鼠卵巢神经无髓纤维的数量、大小、传导和血管收缩能力。

Number, size, conduction, and vasoconstrictor ability of unmyelinated fibers of the ovarian nerve in adult and aged rats.

机构信息

Department of Autonomic Neuroscience, Tokyo Metropolitan Institute of Gerontology, Itabashi-ku, Tokyo 173-0015, Japan.

出版信息

Auton Neurosci. 2011 Oct 28;164(1-2):6-12. doi: 10.1016/j.autneu.2011.05.001. Epub 2011 Jun 1.

Abstract

The effect of aging on the number, size, conduction velocity, and vasoconstrictive function of unmyelinated fibers in ovarian nerve accompanying the ovarian artery was studied in adult (4-7mo) and aged (28-31mo) rats. Morphological observation by electron microscopy showed that the ovarian nerve contains mainly unmyelinated fibers with only a small percentage (less than 4%) of myelinated fibers in either age group. The number of unmyelinated fibers tended to decrease in aged rats (717±59) compared to adult rats (801±48), especially in fibers of smaller diameter, although this difference was not statistically significant. The maximum conduction velocity of unmyelinated fibers within the ovarian nerve was similar when compared between adult (1.05±0.04m/s) and aged (1.02±0.05m/s) rats. Under anesthesia, electrical stimulation of the distal portion of a severed ovarian nerve reduced ovarian blood flow, as measured by laser Doppler flowmetry, when the stimulus intensity was above the threshold for unmyelinated C fibers. Stimulation of the ovarian nerve with supra-maximum intensity (10V) at 2-20Hz frequencies produced frequency-dependent reductions in ovarian blood flow in both adult and aged rats. There were no significant differences in magnitude of the reduction in ovarian blood flow with comparable frequencies of electrical stimulation of the ovarian nerve between adult and aged rats. Collectively, these data indicate that unmyelinated C fibers in ovarian nerve are maintained in number, size, conduction ability, and vasoconstrictor function in aged rats.

摘要

本研究旨在探讨卵巢动脉伴行卵巢神经中无髓纤维的数量、大小、传导速度和血管收缩功能随年龄的变化。电镜形态学观察显示,卵巢神经主要含有无髓纤维,在成年(4-7 月龄)和老年(28-31 月龄)大鼠中,有髓纤维的比例均小于 4%。与成年大鼠(801±48)相比,老年大鼠(717±59)无髓纤维数量减少的趋势更为明显,尤其是在较小直径的纤维中,但这种差异无统计学意义。在卵巢神经内,无髓纤维的最大传导速度在成年(1.05±0.04m/s)和老年(1.02±0.05m/s)大鼠之间相似。在麻醉状态下,通过激光多普勒血流仪测量,刺激卵巢神经远端时,当刺激强度超过无髓 C 纤维的阈值时,可减少卵巢血流。在 2-20Hz 的频率范围内,用超最大强度(10V)刺激卵巢神经可产生频率依赖性的卵巢血流减少,在成年和老年大鼠中均如此。在对卵巢神经进行相同频率的电刺激时,老年大鼠卵巢血流减少的幅度与成年大鼠相比没有显著差异。综上所述,这些数据表明,老年大鼠卵巢神经中的无髓 C 纤维在数量、大小、传导能力和血管收缩功能方面均得以维持。

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