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Strength-duration characteristics of myelinated and non-myelinated bulbospinal axons in the cat spinal cord.

机译:猫脊髓中有髓和无髓球根轴突的强度-持续时间特征。

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摘要

Strength-duration characteristics for the stimulation of 131 raphespinal and reticulospinal axons in the spinal cord were determined using two types of stimulating electrode. Conduction velocity of these fibres ranged from 0.86 to 63 m/s. With silver wire (250 micron diameter) stimulating electrodes, chronaxies were: 0.18 +/- 0.06 ms for axons conducting between 16 and 63 m/s, 0.4 +/- 0.22 ms for axons conducting between 5 and 15 m/s and 2.06 +/- 0.79 ms for those with conduction velocity less than 5 m/s. There was an inverse relationship between chronaxie and conduction velocity. Rheobase values ranged from 7.4 to 400 microA but were independent of conduction velocity. Chronaxies obtained with wire electrodes were compared with those from stimulation of the same fibre through saline-filled micropipettes (2-12 micron tip diameter). Rheobase values with the micropipettes ranged from 1.6 to 20 microA, indicating a close proximity of the pipette to the axon. For these axons, chronaxies from metal wire electrodes ranged from 0.12 to 2.4 ms and for micropipettes from 0.04 to 0.65 ms. In almost all cases, chronaxies for micropipette stimulation were lower than those for metal wire electrodes. Furthermore, with micropipettes chronaxies were independent of conduction velocity. The results are shown to be related to differences in time constant of the activated region of axon and charge requirements of threshold activation. The two stimulating conditions, i.e. micro-electrodes compared with wire electrodes, are analogous to the theoretical point stimulated cable and uniformly polarized membrane cases. The results are discussed in relation to the possibility of determination of fibre type from stimulation characteristics. A distinction between chronaxies of myelinated and non-myelinated fibres can be made using wire electrodes of 250 micron diameter, but not with micro-stimulation, as with micropipettes (2-12 micron diameter).
机译:使用两种类型的刺激电极,确定了刺激脊髓中131根短颈椎和网状脊髓轴突的强度-持续时间特性。这些纤维的传导速度在0.86至63m / s的范围内。使用银线(直径为250微米)的刺激电极,时轴为:轴突传导在16到63 m / s之间时为0.18 +/- 0.06 ms,轴突传导在5到15 m / s到2.06之间时轴突为0.4 +/- 0.22 ms /-对于传导速度小于5 m / s的传感器,为0.79 ms。时轴与传导速度之间存在反比关系。 Rheobase值范围为7.4至400 microA,但与传导速度无关。将使用线电极获得的时变与通过充满生理盐水的微量移液器(尖端直径2-12微米)刺激相同纤维而获得的时变进行了比较。微量移液器的Rheobase值在1.6到20 microA之间,表明该移液器与轴突非常接近。对于这些轴突,来自金属丝电极的时间轴的波动范围为0.12至2.4 ms,对于微量移液器,时间轴的波动范围为0.04至0.65 ms。在几乎所有情况下,用于微量移液器刺激的时间轴均低于用于金属丝电极的时间轴。此外,使用微量移液器时轴与传导速度无关。结果表明,该结果与轴突激活区域的时间常数差异和阈值激活的电荷需求有关。两种刺激条件,即与线电极相比的微电极,类似于理论上的点激励电缆和均匀极化膜的情况。讨论了有关根据刺激特性确定纤维类型的可能性的结果。可以使用直径为250微米的线状电极区分髓鞘纤维和非髓鞘纤维的时间轴,但不能像微移液管(直径2-12微米)那样通过微刺激进行区分。

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