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通过三角形刺激脉冲对不同直径的外周神经纤维群进行选择性激活。

Selective Activation of peripheral nerve fibre groups of different diameter by triangular shaped stimulus pulses.

作者信息

Accornero N, Bini G, Lenzi G L, Manfredi M

出版信息

J Physiol. 1977 Dec;273(3):539-60. doi: 10.1113/jphysiol.1977.sp012109.

Abstract
  1. The differential block of cutaneous nerve fibres has been achieved with a simple method of electrical stimulation, employing a single pair of active electrodes. 2. The method allows the selective activation of 95% of small myelinated (delta) axons, without activation of the larger (beta) ones; and activation of unmyelinated (C) fibres, without A fibre activation. Asynchronous firing of myelinated axons was absent in the majority of the experiments. 3. The method employs triangularly shaped electrical pulses, with a steep rise front and a slow exponential decay. The outward flow of current at the cathode fires conducted impulses in both larger and smaller axons, and the inward flow inactivates differentially the conduction in the smaller ones. 4. The differential effect of anodal currents rests upon the greater internal conductance and greater conduction velocity of larger fibres. 5. The method has the advantage over the conventional polarization block of simpler surgical preparation, longer nerve survival and minimal latency distortion. However, it cannot be applied in experiments requiring physiological stimulation of peripheral receptors.
摘要
  1. 采用一对有源电极的简单电刺激方法实现了皮肤神经纤维的差异性阻滞。2. 该方法能选择性激活95%的小髓鞘(δ)轴突,而不激活较大的(β)轴突;能激活无髓鞘(C)纤维,而不激活A纤维。在大多数实验中,髓鞘轴突无异步放电现象。3. 该方法采用三角形电脉冲,前沿陡峭,呈缓慢指数衰减。阴极处的电流外流在较大和较小轴突中激发传导冲动,而内流则使较小轴突的传导差异性失活。4. 阳极电流的差异效应取决于较大纤维具有更大的内部电导和更快的传导速度。5. 该方法相较于传统极化阻滞,具有手术准备更简单、神经存活时间更长和潜伏期失真最小的优点。然而,它不能应用于需要对外周感受器进行生理刺激的实验。

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Diaphragmatic contribution to respiration in the rabbit.膈肌对家兔呼吸的作用
J Appl Physiol. 1966 May;21(3):843-7. doi: 10.1152/jappl.1966.21.3.843.
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Observations on anodal polarization of cutaneous nerve.关于皮神经阳极极化的观察
Brain Res. 1969 Mar;13(1):155-67. doi: 10.1016/0006-8993(69)90150-4.
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Selective activation of C-fibers.C纤维的选择性激活。
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