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Receptive Field Properties of Koniocellular On/Off Neurons in the Lateral Geniculate Nucleus of Marmoset Monkeys

机译:mo猴侧面细小核中单核细胞开/关神经元的感受野特性

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摘要

The koniocellular (K) layers of the primate dorsal lateral geniculate nucleus house a variety of visual receptive field types, not all of which have been fully characterized. Here we made single-cell recordings targeted to the K layers of diurnal New World monkeys (marmosets). A subset of recorded cells was excited by both increments and decrements of light intensity (on/off-cells). Histological reconstruction of the location of these cells confirmed that they are segregated to K layers; we therefore refer to these cells as K-on/off cells. The K-on/off cells show high contrast sensitivity, strong bandpass spatial frequency tuning, and their response magnitude is strongly reduced by stimuli larger than the excitatory receptive field (silent suppressive surrounds). Stationary counterphase gratings evoke unmodulated spike rate increases or frequency-doubled responses in K-on/off cells; such responses are largely independent of grating spatial phase. The K-on/off cells are not orientation or direction selective. Some (but not all) properties of K-on/off cells are consistent with those of local-edge-detector/impressed-by-contrast cells reported in studies of cat retina and geniculate, and broad-thorny ganglion cells recorded in macaque monkey retina. The receptive field properties of K-on/off cells and their preferential location in the ventral K layers (K1 and K2) make them good candidates for the direct projection from geniculate to extrastriate cortical area MT/V5. If so, they could contribute to visual information processing in the dorsal (“where” or “action”) visual stream.>SIGNIFICANCE STATEMENT We characterize cells in an evolutionary ancient part of the visual pathway in primates. The cells are located in the lateral geniculate nucleus (the main visual afferent relay nucleus), in regions called koniocellular layers that are known to project to extrastriate visual areas as well as primary visual cortex. The cells show high contrast sensitivity and rapid, transient responses to light onset and offset. Their properties suggest they could contribute to visual processing in the dorsal (“where” or “action”) visual stream.
机译:灵长类动物背外侧膝状核的运动细胞(K)层具有多种视觉感受野类型,但并非所有特征都得到了充分表征。在这里,我们针对日新世界猴子(monkey猴)的K层制作了单细胞录音。光强度的增加和减少(打开/关闭的单元格)都会激发记录的细胞子集。这些细胞的位置的组织学重建证实它们被分离成K层。因此,我们将这些单元称为K-on / off单元。 K-on / off电池显示出高对比度灵敏度,强大的带通空间频率调谐能力,并且其响应幅度会受到大于兴奋性感受野(无声抑制性环绕声)的刺激而大大降低。固定式反相光栅在K开/关单元中引起未调制的尖峰频率增加或倍频响应;这样的响应在很大程度上与光栅空间相位无关。 K开/关单元不是定向或方向选择性的。 K-on / off细胞的某些(但不是全部)特性与对猫视网膜和膝状体以及猕猴中记录的宽棘神经节细胞的研究中报道的局部边缘检测器/造影剂印象相一致。视网膜。 K开/关细胞的接受场特性及其在腹侧K层(K1和K2)中的优先位置使其成为从膝状肌直接投射到外皮层区域MT / V5的良好候选者。如果这样的话,它们可能有助于背面(“何处”或“动作”)视觉流中的视觉信息处理。>意义声明我们在灵长类动物视觉通路的进化古代部分表征细胞。这些细胞位于外侧膝状体核(主要的视觉传入中继核)中,在称为运动细胞层的区域中,该区域已知会突出于视觉区域以及初级视觉皮层。这些单元显示出高对比度灵敏度以及对光的起落和偏移的快速瞬态响应。它们的特性表明,它们可能有助于背面(“何处”或“动作”)视觉流中的视觉处理。

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