Ferster D, Lindström S
J Physiol. 1985 Oct;367:217-32. doi: 10.1113/jphysiol.1985.sp015821.
Evoked potentials were recorded in the visual cortex of the cat after electrical stimulation of the lateral geniculate nucleus (l.g.n.). The primary response, mediated by geniculo-cortical fibres, was depressed at stimulation frequencies above 7 Hz and replaced by a late potential, the incremental response, which gradually increased in amplitude with successive stimuli. The incremental response was a negative-positive potential in the depth of the cortex with the negative component having maximal amplitude in layer 4. The response reversed polarity in layer 1 to become a positive-negative potential at the surface. The latency of the negative component of the incremental response was about 3.5-4 ms in layer 4, compared to about 1.5 and 2.5 ms for the mono- and disynaptic components of the primary response. The incremental response could only be evoked from the l.g.n. and the optic radiation, not from the optic tract, superior colliculus or other surrounding structures. Within the l.g.n., the effect was only evoked from stimulation sites in approximate retinotopic register with the recording site in the cortex. Low threshold points were found in the A laminae, completely overlapping with the low threshold points for the primary response. Thresholds increased steeply when the stimulation electrode was lowered into the C laminae. The incremental response could still be evoked ten days after the destruction of all cells in the l.g.n. complex by kainic acid. It is concluded that the described incremental response is identical to the augmenting response of Dempsey & Morison (1943) and is mediated by intracortical axon collaterals of antidromically activated cortico-geniculate neurones.
在对猫的外侧膝状体核(l.g.n.)进行电刺激后,记录其视觉皮层中的诱发电位。由膝状体 - 皮层纤维介导的主反应在刺激频率高于7Hz时受到抑制,并被一个晚期电位即增量反应所取代,该增量反应的幅度会随着连续刺激而逐渐增加。增量反应是皮层深度处的一个负 - 正电位,其负向成分在第4层具有最大幅度。该反应在第1层极性反转,在表面变为正 - 负电位。与主反应的单突触和双突触成分的潜伏期分别约为1.5ms和2.5ms相比,增量反应负向成分在第4层的潜伏期约为3.5 - 4ms。增量反应只能从外侧膝状体核和视辐射诱发,而不能从视束、上丘或其他周围结构诱发。在外侧膝状体核内,该效应仅从与皮层记录部位大致呈视网膜拓扑对应关系的刺激部位诱发。在A板层发现了低阈值点,与主反应的低阈值点完全重叠。当刺激电极向下进入C板层时,阈值急剧增加。在用 kainic 酸破坏外侧膝状体核复合体中的所有细胞十天后,仍可诱发增量反应。结论是,所描述的增量反应与Dempsey和Morison(1943)的增强反应相同,并且由逆向激活的皮层 - 膝状体神经元的皮层内轴突侧支介导。