Hartveit E, Heggelund P
Department of Neurophysiology, University of Oslo, Norway.
Exp Brain Res. 1995;103(3):372-84. doi: 10.1007/BF00241496.
We studied changes in retinogeniculate transmission that occur during variation of modulatory brainstem input and during variation of stimulus contrast. Responses of single cells in the dorsal lateral geniculate nucleus (dLGN) to a stationary flashing light spot of varying contrast were measured with and without electrical stimulation of the peribrachial region (PBR) of the brainstem. PBR stimulation increased the contrast gain (slope of response versus contrast curve) and the dynamic response range (range between spontaneous activity and maximal firing). Lagged and nonlagged X-cells reached the midpoint of the dynamic response range at lower contrasts during PBR stimulation than in the controls. No comparable change was seen for Y-cells. Only minor changes of threshold contrast were seen. The characteristics of the retinogeniculate transmission were directly studied by comparing the response of dLGN cells with their retinal input (slow potentials, S-potentials). With increasing contrast there was a marked increase in the transfer ratio (proportion of impulses in the input that generates action potentials in the dLGN cell). The transfer ratio seemed to be primarily determined by the firing rate of the retinal input. The transfer ratio increased with increasing input rates from low values near threshold to values that could approach 1 at high-input firing rates. PBR stimulation increased the transfer ratio, particularly at moderate input firing rates. The increased transfer ratio, caused by increasing input firing rates, enhanced the response versus contrast characteristics through an increase in contrast gain and dynamic response range. The modulatory input from the PBR further enhanced these characteristics.
我们研究了在调节性脑干输入变化以及刺激对比度变化期间发生的视网膜膝状体传递的变化。在有和没有对脑干臂周区域(PBR)进行电刺激的情况下,测量了背外侧膝状核(dLGN)中单个细胞对不同对比度的静止闪烁光斑的反应。PBR刺激增加了对比度增益(反应与对比度曲线的斜率)和动态反应范围(自发活动与最大放电之间的范围)。在PBR刺激期间,滞后和非滞后的X细胞在比对照组更低的对比度下达到动态反应范围的中点。Y细胞未见类似变化。仅观察到阈值对比度的微小变化。通过比较dLGN细胞与其视网膜输入(慢电位,S电位)的反应,直接研究了视网膜膝状体传递的特征。随着对比度增加,传递比率(在dLGN细胞中产生动作电位的输入中的冲动比例)显著增加。传递比率似乎主要由视网膜输入的放电率决定。传递比率随着输入率从接近阈值的低值增加到高输入放电率时可接近1的值而增加。PBR刺激增加了传递比率,特别是在中等输入放电率时。由输入放电率增加引起的传递比率增加,通过增加对比度增益和动态反应范围增强了反应与对比度的特征。来自PBR的调节性输入进一步增强了这些特征。