...
首页> 外文期刊>Muscle and Nerve >Temperature dependence of excitability indices of human cutaneous afferents.
【24h】

Temperature dependence of excitability indices of human cutaneous afferents.

机译:人皮肤传入兴奋性指数的温度依赖性。

获取原文
获取原文并翻译 | 示例
           

摘要

The temperature dependence of different indices of axonal excitability (threshold, latency, refractoriness, supernormality, strength-duration time constant, and rheobase) was studied for cutaneous afferents of 8 healthy human volunteers using threshold tracking. Cooling from approximately 32 - approximately 22 degrees C dramatically increased the threshold for a conditioned potential evoked during the relatively refractory period (average increase 573%) but had little effect on the threshold for unconditioned potentials (increased by 4% with 0.1-ms test stimuli), strength-duration time constant (increased by 18%), or rheobase (decreased by 12%). Cooling increased the latency of the unconditioned test potential by 41%, but this slowing was small compared with the effect of cooling on the latency slowing attributable to refractoriness. This measure of refractoriness was initially 0.17 ms at a conditioning-test interval of 2 ms, and increased with cooling to 1.30 ms at the same interval. With cooling, refractoriness was both greater at any one conditioning-test interval and longer in duration, extending into intervals normally associated with supernormality. It is concluded that, although cooling affects all excitability indices to some extent, the most prominent feature is the increase in refractoriness. By contrast, strength-duration time constant is influenced little by temperature.
机译:使用阈值跟踪研究了8位健康人类志愿者的皮肤传入的不同轴突兴奋性指标的温度依赖性(阈值,潜伏期,耐火度,超正态性,强度持续时间常数和流变碱)。从大约32到大约22摄氏度的冷却使相对耐火期间诱发的条件电势的阈值急剧增加(平均增加573%),但对非条件电势的阈值影响很小(在0.1毫秒的测试刺激下增加了4%) ),强度持续时间常数(增加18%)或流变碱(减少12%)。冷却使无条件测试电势的潜伏期增加了41%,但与冷却对耐火度引起的潜伏期变慢的影响相比,这种变慢很小。耐火度的这种度量最初是在2 ms的条件测试间隔内为0.17 ms,然后在相同间隔下随着冷却至1.30 ms而增加。冷却后,在任何一个条件测试间隔内,耐火度均更高,持续时间更长,延伸至通常与超常态相关的间隔。结论是,尽管冷却在一定程度上影响所有的兴奋性指标,但最显着的特征是耐火度的增加。相反,强度持续时间常数几乎不受温度影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号