High pressure effects on reflexes in isolated spinal cords of newborn rats.

Undersea biomedical research Pub Date : 1992-09-01
A Tarasiuk, D Schleifstein-Attias, Y Grossman
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Abstract

High pressure induces hyperexcitability and convulsions in both intact and decerebrated animals. However, pressure suppresses synaptic transmission in isolated invertebrate preparations. We examined the effect of high pressure on monosynaptic (MSR) and polysynaptic (PSR) reflexes in isolated spinal cords of newborn rats. Reflex activity was recorded extracellularly from the cut ends of the lumbar ventral roots L3-L5 following stimulation of the corresponding dorsal roots. Increasing the stimulus frequency from 0.1 to 2.0 Hz reduced the amplitude of both reflexes by 75%. High pressure (10.1 MPa helium) did not affect this phenomenon. Pressure had no effect on MSR amplitude, but increased PSR amplitude by 30%. For MSR, pressure increased the latency by 25%, duration by 20%, and rise time by 25%. Pressure abolished the moderate (119 +/- 4.5%, mean +/- SEM) posttetanic potentiation observed at 0.1 MPa. For the curve relating MSR amplitude to [Ca2+]o, high pressure produced a slight rightward shift of 0.25 mM without affecting its saturation level. These data suggest that the response of vertebrate central synapses to pressure may be different from previously described invertebrate synapses. Alternatively, if synaptic potentials are reduced at high pressure, other processes that determine excitability must be invoked to account for the relatively stabile reflex response.

高压对新生大鼠脊髓反射的影响。
高压在正常动物和失智动物中均可引起高兴奋性和抽搐。然而,在孤立的无脊椎动物制剂中,压力抑制突触传递。我们研究了高压对新生大鼠脊髓单突触(MSR)和多突触(PSR)反射的影响。在刺激相应的背根后,从腰腹根L3-L5的切端记录细胞外反射活动。当刺激频率从0.1 Hz增加到2.0 Hz时,两种反射的幅度都降低了75%。高压(10.1 MPa氦气)不影响这一现象。压力对MSR振幅没有影响,但使PSR振幅增加了30%。对于MSR,压力使延迟增加25%,持续时间增加20%,上升时间增加25%。压力消除了0.1 MPa下观察到的中度(119 +/- 4.5%,平均+/- SEM)破伤风后增强。对于MSR振幅与[Ca2+]o的关系曲线,高压产生0.25 mM的轻微右移,但不影响其饱和水平。这些数据表明,脊椎动物中枢突触对压力的反应可能与先前描述的无脊椎动物突触不同。或者,如果突触电位在高压下降低,则必须调用其他决定兴奋性的过程来解释相对稳定的反射反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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