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猫下橄榄核中的偏航方向神经元。

Yaw direction neurons in the cat inferior olive.

作者信息

Robinson F R, Fraser M O, Hollerman J R, Tomko D L

机构信息

Department of Physiology, University of Pittsburgh School of Medicine, Pennsylvania 15261.

出版信息

J Neurophysiol. 1988 Nov;60(5):1739-52. doi: 10.1152/jn.1988.60.5.1739.

Abstract
  1. Single units that responded to yaw rotation were recorded extracellularly in the caudal inferior olive (IO) of barbiturate-anesthetized cats. Of 276 neurons, 55 responded reliably to yaw, and extensive quantitative data were recorded from 25. 2. No yaw-sensitive IO neuron responded to somatosensory or auditory stimuli but two responded, though unreliably, to flash. 3. Yaw-sensitive IO cells fired at low (1-4 spikes/s), irregular rates during one direction of rotation. Though cells responded reliably during yaw, firing rates varied considerably from cycle to cycle. Rotation speed and acceleration were not represented in any cell's firing rate. 4. Eighty five percent (47/55) of yaw-sensitive cells fired during contralateral rotation, 9% (5/55) during ipsilateral rotation, and 6% (3/55) fired from late in the ipsilateral phase of a sinusoidal oscillation to the middle of the contralateral phase. 5. Responses were tested to 0.1-Hz sinusoidal yaw oscillations with a range of peak angular velocities (1-200 degrees/s). Thresholds were not sharp because of the cycle to cycle variability in response rates but were estimated using averaged responses. The peak rate of the most sensitive cell was driven to criterion (2 SD above spontaneous rate) by an oscillation with a peak velocity of 1 degrees/s. Other cells reached criterion between 5 and 50 degrees/s. 6. Sinusoidal oscillation at all frequencies tested (0.01-0.5 Hz) elicited approximately the same firing rates. Even at 0.01 Hz cells responded well. Responses lagged acceleration by approximately 25 degrees at 0.01 Hz and shifted to later parts of the cycle as frequency increased so that firing lagged acceleration by approximately 200 degrees at 0.5 Hz. 7. Histological reconstruction showed that yaw-sensitive neurons were recorded in olivary subnucleus beta (N beta), the dorsal cap of Kooy (DC), the posterior medial region of the medial accessory division of the inferior olive (MAO), and in the medial-lateral center of the caudal MAO. 8. Yaw-sensitive neurons in the inferior olive provide a signal to the cerebellum that indicates the direction of passive rotation over a wide range of velocity and acceleration. The signal from individual neurons does not reliably encode either rotation velocity or acceleration. Yaw-sensitive IO neurons are therefore unlike other central vestibular neurons but are similar to somatosensory IO cells which signal the presence, but not the intensity of a stimulus.
摘要
  1. 在巴比妥麻醉的猫的尾侧下橄榄核(IO)中,细胞外记录到对偏航旋转有反应的单个神经元。在276个神经元中,55个对偏航有可靠反应,从25个神经元记录了大量定量数据。2. 没有对偏航敏感的IO神经元对体感或听觉刺激有反应,但有两个对闪光有反应,不过反应不可靠。3. 对偏航敏感的IO细胞在一个旋转方向上以低(1 - 4个脉冲/秒)且不规则的频率放电。尽管细胞在偏航期间反应可靠,但放电频率在不同周期有很大变化。任何细胞的放电频率都不表示旋转速度和加速度。4. 85%(47/55)的对偏航敏感的细胞在对侧旋转时放电,9%(5/55)在同侧旋转时放电,6%(3/55)在正弦振荡的同侧阶段后期到对侧阶段中期放电。5. 测试了对0.1赫兹正弦偏航振荡的反应,峰值角速度范围为(1 - 200度/秒)。由于反应率在不同周期的变化,阈值不尖锐,但使用平均反应进行估计。最敏感细胞的峰值放电率由峰值速度为1度/秒的振荡驱动到标准(高于自发率2个标准差)。其他细胞在5到50度/秒之间达到标准。6. 在所有测试频率(0.01 - 0.5赫兹)的正弦振荡都引发大致相同的放电率。即使在0.01赫兹时细胞也反应良好。在0.01赫兹时反应滞后加速度约25度,并且随着频率增加,反应转移到周期的后期部分,以至于在0.5赫兹时放电滞后加速度约200度。7. 组织学重建显示,在橄榄核亚核β(Nβ)、库伊背帽(DC)、下橄榄核内侧副核的后内侧区域(MAO)以及尾侧MAO的内外侧中心记录到了对偏航敏感的神经元。8. 下橄榄核中对偏航敏感的神经元向小脑提供一个信号,该信号指示在广泛的速度和加速度范围内被动旋转的方向。单个神经元的信号不能可靠地编码旋转速度或加速度。因此,对偏航敏感的IO神经元不同于其他中枢前庭神经元,但类似于体感IO细胞,后者信号刺激的存在但不信号刺激的强度。

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