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The field potential profile during activation of the avian optic tectum

机译:鸟类视神经支架激活期间的场电势分布

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摘要

1. The field potential profile resulting from electrical stimulation of the optic nerve-head was recorded with micro-electrodes inserted radially into the pigeon optic tectum.2. The first response, in the superficial tectum, was a graded negative wave, the N-wave. Its latency was 2·3 msec, S.D. 0·22 msec. The wave form underwent an abrupt polarity reversal in the R-zone, to yield a graded positive wave, the P-wave, in deeper laminae. The P-wave had a latency of 2·0 msec, S.D. 0·16 msec.3. Both N-wave and P-wave showed a graded increase in amplitude as stimulating current was increased. On any given track this increase occurred over a similar range of stimulating current.4. In many tracks the rise-time and duration of the N-wave were independent of amplitude.5. The rise-time of the P-wave was longer, and its duration was shorter, than the rise-time and duration of the N-wave. This effect was shown to be due to two successive sinks occurring superficially to the P-zone.6. Depth profiles also showed these two sinks, separately located in the N-zone and R-zone.7. To paired stimuli the N-wave showed refractoriness at intervals of 2-4·5 msec, facilitation at intervals up to 25 msec, and subsequent depression. It showed low-frequency depression at 10 and 20/sec.8. The R-zone was localized by a lesion technique to sub-layers d to g of the stratum griseum et fibrosum superficiale. Thus the tissue negativity was closely co-extensive with the anatomical distribution of optic nerve terminals.9. It is suggested that the N-wave is the sink of excitatory synaptic potentials produced in the superficial tectum, and predictions relating unitary firing to the field potential profile are made.
机译:1.用微电极径向插入鸽子的视神经皮层记录由视神经头部的电刺激产生的场电位分布图。2。在浅表层中,第一个反应是渐变负波,即N波。延迟时间为2·3毫秒,S.D。 0·22毫秒波形在R区经历了突然的极性反转,从而在更深的层流中产生了渐变的正波,即P波。 P波的延迟为2·0毫秒,S.D。 0·16毫秒3。随着刺激电流的增加,N波和P波都显示出幅度的梯度增加。在任何给定的轨道上,这种增加都发生在相似的激励电流范围内4。在许多轨道中,N波的上升时间和持续时间与振幅无关。5。与N波的上升时间和持续时间相比,P波的上升时间更长,持续时间更短。事实证明,这种影响是由于两个连续的水槽在P区表面出现的。6。深度剖面还显示了这两个汇,分别位于N区和R区7。对于成对的刺激,N波在2-4·5毫秒的间隔内显示耐火性,在25毫秒的间隔内呈现促进性,随后出现压抑。它显示出以10和20 / sec.8的低频抑制率。通过损伤技术将R区定位在灰质层和表皮纤维层的d至g的亚层中。因此,组织阴性与视神经末梢的解剖分布密切共存。9。有人认为,N波是在表层中产生的兴奋性突触电势的汇,并作出了将单发激发与场电势分布相关的预测。

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