Clarke R J, Datskovsky B W, Grigonis A M, Murphy E H
Department of Anatomy and Neurobiology, Medical College of Pennsylvania/EPPI, Philadelphia 19129.
Exp Brain Res. 1992;91(2):296-302. doi: 10.1007/BF00231662.
In visual cortex of normal adult rabbits, callosal projections are restricted to a 2 mm wide band at the area 17/18 border. In adult rabbits which are monocularly enucleated (ME) on the day of birth, the callosal zone extends 4 mm into the medial region of area 17 in the cortex ipsilateral to the remaining eye. In this study, the function of these anomalous callosal projections in ME rabbits was investigated using electrophysiological techniques. A microelectrode was placed in the visual cortex ipsilateral to the enucleated eye at the 17/18 border, bipolar stimulating electrodes were placed in a homotopic location in the contralateral cortex, and averaged evoked responses (AERs) to stimulation were recorded. The stimulating electrodes were then moved mediolaterally in 1 mm steps, and the AERs were recorded for each location of the stimulating electrodes. In the normal rabbit, a maximal short latency evoked response was recorded when the stimulating electrodes were at a location homotopic to the recording electrode. When the stimulating electrodes were moved a distance of 1 mm or more from this optimal position, this short latency response was either absent or dramatically decreased in amplitude, reflecting the precise topographic pattern of the normal callosal projection. In contrast, in ME rabbits, a consistent response was evoked at the 17/18 border when the stimulating electrodes were moved as much as 3 mm medial to the homotopic position. Since antidromically activated responses and both pre- and postsynaptic orthodromically activated responses contribute to the AER, recordings were also made from single cells in some animals.(ABSTRACT TRUNCATED AT 250 WORDS)
在正常成年兔的视皮层中,胼胝体投射局限于17区/18区边界处一条2毫米宽的带。在出生当天单眼摘除(ME)的成年兔中,胼胝体区向剩余眼同侧皮层17区的内侧区域延伸4毫米。在本研究中,使用电生理技术研究了ME兔中这些异常胼胝体投射的功能。将微电极置于摘除眼同侧视皮层的17/18边界处,将双极刺激电极置于对侧皮层的同位位置,并记录对刺激的平均诱发反应(AER)。然后将刺激电极以1毫米的步长向内侧和外侧移动,并记录刺激电极每个位置的AER。在正常兔中,当刺激电极位于与记录电极同位的位置时,记录到最大的短潜伏期诱发反应。当刺激电极从这个最佳位置移动1毫米或更远的距离时,这种短潜伏期反应要么不存在,要么幅度显著降低,这反映了正常胼胝体投射精确的地形模式。相比之下,在ME兔中,当刺激电极向同位位置内侧移动多达3毫米时,在17/18边界处会诱发一致的反应。由于逆向激活反应以及突触前和突触后正向激活反应都对AER有贡献,因此还在一些动物的单细胞上进行了记录。(摘要截断于250字)