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Physiological properties of direction-selective ganglion cells in early postnatal and adult mouse retina.

机译:出生后早期和成年小鼠视网膜中方向选择性神经节细胞的生理特性。

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Selective responses of retinal ganglion cells (RGCs) to the direction of motion have been recorded extracellularly from the rabbit and the mouse retina at eye opening. Recently, it has been shown that the development of this circuitry is light independent. Using whole-cell patch clamp recording, we report here that mouse early postnatal direction-selective ganglion cells (DSGCs) showed lower membrane excitability, lower reliability of synaptic transmission and much slower kinetics of light responses compared with adult DSGCs. However, the degree of direction selectivity of early postnatal DSGCs measured by the direction-selective index and the width of the directional tuning curve was almost identical to that of adult DSGCs. The DSGCs exhibited a clear selectivity for the direction of motion at the onset of light sensitivity. Furthermore, the degree of direction selectivity was not affected by rearing in complete darkness from birth to postnatal day 11 or 30. The formation of the retinal neurocircuitryfor coding motion direction is completely independent of light.
机译:从兔子和小鼠的眼睛睁开的视网膜细胞外记录到视网膜神经节细胞(RGCs)对运动方向的选择性反应。最近,已经表明,该电路的发展是与光无关的。使用全细胞膜片钳记录,我们在这里报告说,与成年DSGC相比,小鼠早期产后方向选择性神经节细胞(DSGC)显示出较低的膜兴奋性,突触传递的可靠性较低以及光响应动力学更慢。然而,通过方向选择指数和方向调谐曲线的宽度来测量的早期产后DSGC的方向选择性程度几乎与成人DSGC相同。在光敏性开始时,DSGC对运动方向表现出明显的选择性。此外,从出生到出生后第11天或第30天,在完全黑暗的条件下饲养,方向选择性的程度不受影响。用于编码运动方向的视网膜神经回路的形成完全与光无关。

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