Suppr超能文献

人类的中枢体感传导:从颈部、右侧或左侧头皮及耳垂记录到的远场成分的神经发生器和峰间潜伏期。

Central somatosensory conduction in man: neural generators and interpeak latencies of the far-field components recorded from neck and right or left scalp and earlobes.

作者信息

Desmedt J E, Cheron G

出版信息

Electroencephalogr Clin Neurophysiol. 1980 Dec;50(5-6):382-403. doi: 10.1016/0013-4694(80)90006-1.

Abstract

Early somatosensory evoked potential (SEP) components to median nerve or finger stimulation were recorded with non-cephalic references in normal young adults. Detailed topographic data over scalp and neck were related to anatomical observations on the actual conduction distances in dorsal column, medial lemniscus and thalamo-cortical parts of the somatosensory pathway. The extrapolation of afferent conduction velocity (CV) measured from sensory nerve potentials along the peripheral nerve to the C6-C7 spinal segments identified the spinal entry time with the onset of the neck N11 or scalp P11 (far field 2 or FF2). The first far field (FF1) is generated in the nerve proximal to axilla. The definite latency shift of the spinal negativity along the neck indicates a CV of 58 m/sec. Data about the maximal diameter of lemniscal axons in man were used to calculate a CV of 40.5 m/sec. Consideration of transit times from spinal entry to cortex and of synaptic delays clarified the arrival times of the afferent volley at various relay nuclei, and also suggested a thalamo-cortical CV of about 33 m/sec. Interpeak and onset-to-peak measures on scalp far fields suggest that FF3-FF4 are generated in medial lemniscus rather than above the thalamus. Consistent differences in amplitude, but not in wave form, were recorded at right and left earlobes for FF2 (larger ipsilaterally) and FF3-FF4 (larger contralaterally). The scalp topography of far fields was analysed in detail.

摘要

在正常年轻成年人中,使用非头部参考电极记录了正中神经或手指刺激诱发的早期体感诱发电位(SEP)成分。头皮和颈部的详细地形图数据与体感通路中背柱、内侧丘系和丘脑 - 皮质部分实际传导距离的解剖学观察结果相关。从感觉神经电位沿周围神经测量的传入传导速度(CV)外推至C6 - C7脊髓节段,确定了颈部N11或头皮P11(远场2或FF2)起始时的脊髓进入时间。第一个远场(FF1)在腋窝近端的神经中产生。颈部脊髓负电位的明确潜伏期变化表明CV为58米/秒。使用关于人类内侧丘系轴突最大直径的数据计算出CV为40.5米/秒。考虑从脊髓进入到皮质的传输时间和突触延迟,明确了传入冲动在各个中继核的到达时间,还提示丘脑 - 皮质CV约为33米/秒。头皮远场的峰间和起始到峰的测量表明,FF3 - FF4是在内侧丘系而不是丘脑上方产生的。对于FF2(同侧较大)和FF3 - FF4(对侧较大),在右耳垂和左耳垂记录到幅度上存在一致差异,但波形无差异。详细分析了远场的头皮地形图。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验