Cliffer K D, Tonra J R, Carson S R, Radley H E, Cavnor C, Lindsay R M, Bodine S C, DiStefano P S
Regeneron Pharmaceuticals, Inc., Tarrytown, New York 10591, USA.
Muscle Nerve. 1998 Nov;21(11):1405-13. doi: 10.1002/(sici)1097-4598(199811)21:11<1405::aid-mus7>3.0.co;2-d.
Sensory and motor conduction velocities calculated from latencies of H reflexes and M waves in rat hind limbs have been used to assess experimental peripheral neuropathy. Amplitudes and latencies vary with recording location, and are seldom assessed directly. Using subcutaneous electrodes on the foot, we recorded consistent M waves and H reflexes while stimulating the sciatic or tibial nerve. The late wave disappeared when dorsal roots were cut, verifying that it was an H reflex. However, stimulus-response characteristics differed from those in humans: (a) the threshold was often higher than for M waves; (b) stimulus intensity eliciting a maximum H-reflex amplitude (Hmax) was often higher than adequate for a maximum M-wave amplitude; and (c) the amplitudes of H reflexes stimulated with intensities supramaximal for the M wave were over 90% of Hmax. H reflexes and M waves recorded repeatedly in rats can be useful in assessing sensory and motor function in models of neuropathy, using amplitudes as well as conduction velocities.
根据大鼠后肢H反射和M波潜伏期计算出的感觉和运动传导速度,已被用于评估实验性周围神经病变。波幅和潜伏期会因记录位置而异,且很少直接进行评估。我们使用足部皮下电极,在刺激坐骨神经或胫神经时记录到了稳定的M波和H反射。切断背根时迟发电位消失,证实其为H反射。然而,刺激-反应特性与人类不同:(a)阈值通常高于M波;(b)引出最大H反射波幅(Hmax)的刺激强度通常高于引出最大M波波幅所需的强度;(c)用高于M波最大刺激强度刺激时,H反射波幅超过Hmax的90%。在大鼠中反复记录的H反射和M波,利用波幅和传导速度,可用于评估神经病变模型中的感觉和运动功能。