Hayashi N, Nishijo H, Ono T, Endo S, Tabuchi E
Department of Physiology, Faculty of Medicine, Toyama Medical and Pharmaceutical University, Japan.
Neuroscience. 1995 Sep;68(2):323-38. doi: 10.1016/0306-4522(95)00126-4.
Generators of somatosensory evoked potentials, elicited by electrical stimulation of the median nerve in anaesthetized monkeys (Macaca fuscata), were investigated by submitting a three-dimensional reconstructed brain model to dipole tracing, which can equate surface potential distributions to an approximate corresponding equivalent dipole. The following components of the somatosensory evoked potentials were simultaneously recorded from 21-27 epidural electrodes: P7 (the letter indicates positive or negative polarity; the number indicates the approximate latency of the peak in ms) was recorded widely from various locations on both the left and right hemispheres, P10 was recorded near the anterior side of the central sulcus contralateral to the stimulation side, N10 was recorded near the posterior side of the contralateral central sulcus, P12 was recorded on both sides of the contralateral central sulcus, and P18 was recorded posterior to the contralateral central sulcus. Current source generators (dipoles) of each component of somatosensory evoked potentials were localized by dipole tracing: a dipole for P7 was located in the thalamus contralateral to the stimulation side; a dipole for P10 and N10 in the posterior wall of the contralateral central sulcus (area 3b); a dipole for P12 in the contralateral post central gyrus (areas 1 and 2); and a dipole for P18 in the anterior wall of the contralateral intraparietal sulcus (area 5). The locations and latencies of dipoles that generated cortical components of somatosensory evoked potentials, estimated by dipole tracing, were confirmed by direct cortical surface recording from a 16-25 electrode array placed directly on the cortical surface; and multiple unit recording from the anterior and posterior parietal cortices. After excision of area 5, P18 and N18 were abolished, whereas P10, N10, and P12 were not affected. The results suggest that dipoles for somatosensory evoked potentials progressed from the thalamus to area 5 via the primary somatosensory area. This progress is consistent with the hierarchical sequence of somatosensory information processing.
通过将三维重建脑模型进行偶极子追踪,研究了在麻醉的猕猴(食蟹猴)中电刺激正中神经所诱发的体感诱发电位的发生器,该方法可将表面电位分布等同于近似对应的等效偶极子。从21 - 27个硬膜外电极同时记录体感诱发电位的以下成分:P7(字母表示正负极性;数字表示峰值的近似潜伏期,单位为毫秒)在左右半球的各个位置广泛记录到,P10在刺激侧对侧中央沟前侧附近记录到,N10在对侧中央沟后侧附近记录到,P12在对侧中央沟两侧记录到,P18在对侧中央沟后方记录到。通过偶极子追踪定位体感诱发电位各成分的电流源发生器(偶极子):P7的偶极子位于刺激侧对侧的丘脑;P10和N10的偶极子位于对侧中央沟后壁(3b区);P12的偶极子位于对侧中央后回(1区和2区);P18的偶极子位于对侧顶内沟前壁(5区)。通过偶极子追踪估计的产生体感诱发电位皮质成分的偶极子的位置和潜伏期,通过直接放置在皮质表面的16 - 25个电极阵列进行皮质表面直接记录以及顶叶前后皮质的多单位记录得到了证实。切除5区后,P18和N18消失,而P10、N10和P12不受影响。结果表明,体感诱发电位的偶极子从丘脑经初级体感区向5区进展。这一进展与体感信息处理的层次序列一致。