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Integration of vestibular and hindlimb inputs by vestibular nucleus neurons: multisensory influences on postural control

机译:前庭细胞核神经元的前庭和后肢输入的整合:对姿势控制的多思干影响

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We recently demonstrated in decerebrate and conscious cat preparations that hindlimb somatosensory inputs converge with vestibular afferent input onto neurons in multiple central nervous system (CNS) locations that participate in balance control. Although it is known that head position and limb state modulate postural reflexes, presumably through vestibulospinal and reticulospinal pathways, the combined influence of the two inputs on the activity of neurons in these brainstem regions is unknown. In the present study, we evaluated the responses of vestibular nucleus (VN) neurons to vestibular and hindlimb stimuli delivered separately and together in conscious cats. We hypothesized that VN neuronal firing during activation of vestibular and limb proprioceptive inputs would be well fit by an additive model. Extracellular single-unit recordings were obtained from VN neurons. Sinusoidal whole body rotation in the roll plane was used as the search stimulus. Units responding to the search stimulus were tested for their responses to 10 degrees ramp-and-hold roll body rotation, 60 degrees extension hindlimb movement, and both movements delivered simultaneously. Composite response histograms were fit by a model of low- and high-pass filtered limb and body position signals using least squares nonlinear regression. We found that VN neuronal activity during combined vestibular and hindlimb proprioceptive stimulation in the conscious cat is well fit by a simple additive model for signals with similar temporal dynamics. The mean R-2 value for goodness of fit across all units was 0.74 +/- 0.17. It is likely that VN neurons that exhibit these integrative properties participate in adjusting vestibulospinal outflow in response to limb state.
机译:我们最近在去脑和清醒猫的准备中证明,后肢体感输入与前庭传入输入汇聚到参与平衡控制的多个中枢神经系统(CNS)部位的神经元上。虽然已知头部位置和肢体状态调节姿势反射,可能通过前庭脊髓和网状脊髓通路,但这两种输入对这些脑干区域神经元活动的联合影响尚不清楚。在本研究中,我们评估了清醒猫前庭核(VN)神经元对前庭和后肢刺激的反应。我们假设前庭和肢体本体感觉输入激活期间的VN神经元放电符合相加模型。从VN神经元获得细胞外单单位记录。以滚动平面上的正弦全身旋转作为搜索刺激。对搜索刺激做出反应的单位被测试其对10度倾斜和保持滚动身体旋转、60度伸展后肢运动以及两种运动同时进行的反应。复合响应直方图通过使用最小二乘非线性回归的低通和高通滤波肢体和身体位置信号模型进行拟合。我们发现,在清醒猫的前庭和后肢本体感觉联合刺激期间,VN神经元的活动与具有类似时间动力学的信号的简单相加模型非常吻合。所有单位的拟合优度平均R-2值为0.74+/-0.17。表现出这些整合特性的VN神经元很可能参与调节前庭脊髓流出以响应肢体状态。

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