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猴上丘:单细胞特性及其传入输入

Monkey superior colliculus: properties of single cells and their afferent inputs.

作者信息

Marrocco R T, Li R H

出版信息

J Neurophysiol. 1977 Jul;40(4):844-60. doi: 10.1152/jn.1977.40.4.844.

DOI:10.1152/jn.1977.40.4.844
PMID:407333
Abstract
  1. Receptive-field (RF) properties of 212 single cells in the superior colliculus of paralyzed macaque monkeys were studied with microelectrodes. Units were divided into superficial (0-1 mm) and deep (1-2.5 mm) layers. Orthodromic action potentials were evoked in these cells by shocking optic chiasm. 2. The vast majority of superficial cells responded to stationary or moving stimuli with transient bursts of activity and were nondirectionally selective. Moving stimuli were most effective and three main cell groups, based on response patterns to leading and trailing stimulus edges, were identified. 3. All cells had chromatically nomopponent RFs, as judged by their spectral response functions in the presence of neutral and chromatic backgrounds and on their lack of response to moving, equal-luminance chromatic borders. 4. With the exception of some very short and very long values, orthodromic latencies were unimodally distributed with a mean of 7.8 ms. The prime determinant of a cell's latency was its depth below the collicular surface rather than a specific RF feature. 5. Cells with shorter latencies (located in superficial layers) were able to reliably signal high-velocity stimulus movement; those with longer latencies (located in deeper layers) reliably signaled low-velocity motion only. 6. Results support the hypothesis that response latency is related to differences in RF organization between layers.
摘要
  1. 用微电极研究了瘫痪猕猴上丘中212个单细胞的感受野(RF)特性。将这些细胞分为浅层(0 - 1毫米)和深层(1 - 2.5毫米)。通过刺激视交叉在这些细胞中诱发顺向动作电位。2. 绝大多数浅层细胞对静止或移动刺激以短暂的活动爆发做出反应,且无方向选择性。移动刺激最为有效,并根据对领先和尾随刺激边缘的反应模式确定了三个主要细胞组。3. 根据它们在中性和彩色背景下的光谱反应函数以及对移动的等亮度彩色边界缺乏反应判断,所有细胞都具有非颜色拮抗的RF。4. 除了一些非常短和非常长的值外,顺向潜伏期呈单峰分布,平均为7.8毫秒。细胞潜伏期的主要决定因素是其在丘表面以下的深度,而非特定的RF特征。5. 潜伏期较短的细胞(位于浅层)能够可靠地信号高速刺激运动;潜伏期较长的细胞(位于深层)仅可靠地信号低速运动。6. 结果支持这样的假设,即反应潜伏期与各层之间RF组织的差异有关。

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1
Monkey superior colliculus: properties of single cells and their afferent inputs.猴上丘:单细胞特性及其传入输入
J Neurophysiol. 1977 Jul;40(4):844-60. doi: 10.1152/jn.1977.40.4.844.
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Responses of single units in the monkey superior colliculus to moving stimuli.猴子上丘中单个神经元对移动刺激的反应。
Exp Brain Res. 1979 Apr 2;35(2):349-69. doi: 10.1007/BF00236620.
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Organization of monkey superior colliculus: enhanced visual response of superficial layer cells.猕猴上丘的组织架构:表层细胞视觉反应增强
J Neurophysiol. 1976 Jul;39(4):745-65. doi: 10.1152/jn.1976.39.4.745.
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Projections of extraocular, neck muscle, and retinal afferents to superior colliculus in the cat: their connections to cells of origin of tectospinal tract.猫的眼外肌、颈部肌肉和视网膜传入纤维向上丘的投射:它们与顶盖脊髓束起源细胞的联系。
J Neurophysiol. 1975 Jan;38(1):10-8. doi: 10.1152/jn.1975.38.1.10.
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Use of an extraretinal signal by monkey superior colliculus neurons to distinguish real from self-induced stimulus movement.猴上丘神经元利用视网膜外信号区分真实刺激运动与自我诱发的刺激运动。
J Neurophysiol. 1976 Jul;39(4):852-70. doi: 10.1152/jn.1976.39.4.852.
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J Neurophysiol. 1976 Nov;39(6):1352-61. doi: 10.1152/jn.1976.39.6.1352.
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Both striate cortex and superior colliculus contribute to visual properties of neurons in superior temporal polysensory area of macaque monkey.猕猴颞上多感觉区神经元的视觉特性既受纹状皮质的影响,也受上丘的影响。
J Neurophysiol. 1986 May;55(5):1057-75. doi: 10.1152/jn.1986.55.5.1057.
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J Neurophysiol. 1995 May;73(5):1988-2003. doi: 10.1152/jn.1995.73.5.1988.

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