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Activity of Pursuit-Related Neurons in Medial Superior Temporal Area (MST) during Static Roll-Tilt

机译:静态侧倾时内侧上颞部区域(MST)中与追踪相关的神经元活动

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摘要

Recent studies have shown that rhesus macaques can perceive visual motion direction in earth-centered coordinates as accurately as humans. We tested whether coordinate frames representing smooth pursuit and/or visual motion signals in medial superior temporal area (MST) are earth centered to better understand its role in coordinating smooth pursuit. In 2 Japanese macaques, we compared preferred directions (re monkeys' head–trunk axis) of pursuit and/or visual motion responses of MSTd neurons while upright and during static whole-body roll-tilt. In the majority (41/51 = 80%) of neurons tested, preferred directions of pursuit and/or visual motion responses were not significantly different while upright and during 40° static roll-tilt. Preferred directions of the remaining 20% of neurons (n = 10) were shifted beyond the range expected from ocular counter-rolling; the maximum shift was 14°, and the mean shift was 12°. These shifts, however, were still less than half of the expected shift if MST signals are coded in the earth-centered coordinates. Virtually, all tested neurons (44/46 = 96%) failed to exhibit a significant difference between resting discharge rate while upright and during static roll-tilt while fixating a stationary spot. These results suggest that smooth pursuit and/or visual motion signals of MST neurons are not coded in the earth-centered coordinates; our results favor the head- and/or trunk-centered coordinates.
机译:最近的研究表明,恒河猴可以像人类一样准确地感知以地球为中心的坐标中的视觉运动方向。我们测试了表示内侧上颞部区域(MST)中代表平滑追踪和/或视觉运动信号的坐标系是否以地球为中心,以便更好地了解其在协调平滑追踪中的作用。在2只日本猕猴中,我们比较了直立和静态全身倾斜时MSTd神经元的追踪和/或视觉运动响应的首选方向(猴子的头尾轴)。在测试的大多数神经元中(41/51 = 80%),直立和40°静态侧倾时,首选的追求方向和/或视觉运动响应没有明显差异。其余20%的神经元(n = 10)的首选方向超出了眼睛反向滚动预期的范围;最大偏移为14°,平均偏移为12°。但是,如果将MST信号编码在以地球为中心的坐标中,则这些偏移仍小于预期偏移的一半。实际上,所有测试的神经元(44/46 = 96%)在直立时的静息放电速率与固定固定点的静态侧倾倾斜之间均未表现出显着差异。这些结果表明,MST神经元的平稳跟踪和/或视觉运动信号未在以地球为中心的坐标中进行编码。我们的结果支持以头和/或躯干为中心的坐标。

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