Irvin G E, Norton T T, Sesma M A, Casagrande V A
Brain Res. 1986 Jan 8;362(2):254-70. doi: 10.1016/0006-8993(86)90450-6.
Recent anatomical studies have suggested that the cells located in the interlaminar zones (ILZs) of the primate dorsal lateral geniculate nucleus (LGN) relay visual information from the retina to the striate cortex in a manner similar to that of W-cells in the LGN of cat. In the present study, we examined this idea directly by recording the response properties of single cells localized to the ILZs in the prosimian primate, Galago crassicaudatus. The properties of the cells in the ILZs were found to be physiologically distinct from the X-like and Y-like properties of the parvocellular and magnocellular LGN layers. Moreover, the small cells located in the interlaminar zones were physiologically similar to the W-like cells found in the specialized small-celled koniocellular layers in these primates. As is the case with the koniocellular layer cells, the ILZ cells exhibited a broad range of properties which, as a group, were distinguished by the following characteristics: the ILZ cells had long latencies to stimulation of the optic chiasm (mean, 3.95 ms) and to antidromic stimulation from striate cortex (mean, 3.31 ms) and had relatively large receptive-field centers (mean, 1.79 degrees). They also had low maintained discharge rates (5.5 spikes/s), relatively long response latencies to light (mean onset, 82 ms; peak, 112 ms) and low peak firing rates (59 spikes/s). Few (25%) had standard receptive-field organization (ON-center, OFF-surround, or vice versa). Only 29% responded well to sine-wave gratings and all were influenced by non-visual (auditory and tactile) stimuli.(ABSTRACT TRUNCATED AT 250 WORDS)
最近的解剖学研究表明,灵长类动物背外侧膝状核(LGN)层间区(ILZs)中的细胞,以类似于猫LGN中W细胞的方式,将视觉信息从视网膜传递到纹状皮质。在本研究中,我们通过记录原猴亚目灵长类动物粗尾婴猴(Galago crassicaudatus)ILZs中单个细胞的反应特性,直接检验了这一观点。我们发现,ILZs中细胞的特性在生理上不同于LGN小细胞层和大细胞层中的X样和Y样特性。此外,位于层间区的小细胞在生理上类似于在这些灵长类动物特化的小细胞层状的 koniocellular层中发现的W样细胞。与koniocellular层细胞的情况一样,ILZ细胞表现出广泛的特性,作为一个群体,它们具有以下特征:ILZ细胞对视交叉刺激(平均3.95毫秒)和来自纹状皮质的逆向刺激(平均3.31毫秒)的潜伏期较长,并且具有相对较大的感受野中心(平均1.79度)。它们的持续放电率也较低(5.5个脉冲/秒),对光的反应潜伏期相对较长(平均起始潜伏期82毫秒;峰值潜伏期112毫秒),峰值放电率较低(59个脉冲/秒)。很少有细胞(占25%)具有标准的感受野组织(中心开、周边关,或反之)。只有29%的细胞对正弦波光栅反应良好,并且所有细胞都受到非视觉(听觉和触觉)刺激的影响。(摘要截选至250词)