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神经冲动在人体中枢和外周快速传导的运动及感觉通路上的传播。

Nerve impulse propagation along central and peripheral fast conducting motor and sensory pathways in man.

作者信息

Rossini P M, Di Stefano E, Stanzione P

出版信息

Electroencephalogr Clin Neurophysiol. 1985 Apr;60(4):320-34. doi: 10.1016/0013-4694(85)90006-9.

Abstract

Forty-four limbs from 11 healthy volunteers were examined. Spinal and scalp somatosensory evoked potentials to median and peroneal nerve stimulation were recorded and the peripheral (wrist-Erb, Erb-cervical, knee-thoracic spine) and central (cervical-scalp, thoracic-cervical spine, spine-scalp) conduction times and velocities (CTs, CVs) were calculated. Sensory and mixed trunks of median and peroneal nerves were also stimulated and their motor and sensory CVs in mid-distal districts were measured. Motor responses to scalp (motor areas for hand and leg muscles) and spinal cord stimulation (cervical and lower thoracic levels) were carried out through skin rectangular plate electrodes delivering high voltage (880-1870 V) brief anodal pulses. The intracranial (scalp-cervical) and intraspinal (cervical-thoracic spine) CTs and CVs of motor pathways were measured. The elbow-cervical and knee-thoracic spines CTs of motor fibres were also calculated through the F wave method, which gave values almost superimposable on those obtained through direct spine stimulation. Nerve propagation was faster in sensory than in motor fibres in peripheral nerve mid-distal districts, while this difference was reduced or reversed in more proximal segments, including nerve roots. The scalp-cervical CT was slightly shorter in motor than in sensory fibres after subtraction of synaptic delays (6.12 vs. 6.18 msec). The scalp-lower thoracic spine, as well as the intraspinal, CVs were 7-12% faster in sensory than in motor pathways (45.3 vs. 38.7 m/sec for the former; 62.65 vs. 55.4 m/sec for the latter). The reported method allows the evaluation of fast conducting motor and sensory pathways along 'central' and 'peripheral' nerve structures of the entire body. Preliminary findings on scalp stimulation of brain motor areas with low voltage pulses are also included.

摘要

对11名健康志愿者的44条肢体进行了检查。记录了正中神经和腓总神经刺激下的脊髓和头皮体感诱发电位,并计算了外周(腕部-埃尔布点、埃尔布点-颈椎、膝部-胸椎)和中枢(颈椎-头皮、胸椎-颈椎、脊柱-头皮)的传导时间和速度(CTs、CVs)。还刺激了正中神经和腓总神经的感觉和混合干,并测量了它们在中远端区域的运动和感觉CVs。通过皮肤矩形板电极施加高电压(880 - 1870V)短暂阳极脉冲,对头皮(手部和腿部肌肉的运动区域)和脊髓刺激(颈椎和下胸椎水平)进行运动反应测试。测量了运动通路的颅内(头皮-颈椎)和脊髓内(颈椎-胸椎)CTs和CVs。还通过F波方法计算了运动纤维的肘部-颈椎和膝部-胸椎的CTs,其值与通过直接脊柱刺激获得的值几乎重叠。在周围神经中远端区域,感觉纤维的神经传导速度比运动纤维快,而在包括神经根在内的更近端节段,这种差异减小或逆转。减去突触延迟后(6.12对6.18毫秒),运动纤维的头皮-颈椎CT略短于感觉纤维。头皮-下胸椎以及脊髓内的CVs,感觉通路比运动通路快7 - 12%(前者为45.3对38.7米/秒;后者为62.65对55.4米/秒)。所报道的方法允许评估沿全身“中枢”和“外周”神经结构的快速传导运动和感觉通路。还包括了关于用低电压脉冲刺激脑运动区域的初步研究结果。

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