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Multisensory Signaling Shapes Vestibulo-Motor Circuit Specificity

机译:多感官信号形状前庭发动机电路特异性

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摘要

The ability to continuously adjust posture and balance is necessary for reliable motor behavior. Vestibular and proprioceptive systems influence postural adjustments during movement by signaling functionally complementary sensory information. Using viral tracing and mouse genetics, we reveal two patterns of synaptic specificity between brainstem vestibular neurons and spinal motor neurons, established through distinct mechanisms. First, vestibular input targets preferentially extensor over flexor motor pools, a pattern established by developmental refinement in part controlled by vestibular signaling. Second, vestibular input targets slow-twitch over fast motor neuron subtypes within extensor pools, while proprioceptors exhibit inversely correlated connectivity profiles. Genetic manipulations affecting the functionality of proprioceptive feedback circuits lead to adjustments in vestibular input to motor neuron subtypes counterbalancing the imposed changes, without changing the sparse vestibular input to flexor pools. Thus, two sensory signaling systems interact to establish complementary synaptic input patterns to the final site of motor output processing.
机译:连续调整姿势和平衡的能力对于可靠的电机行为至关重要。前庭和本体感受系统通过发出功能互补的感觉信息来影响运动过程中的姿势调整。使用病毒示踪和小鼠遗传学,我们揭示了脑干前庭神经元和脊髓运动神经元之间的两种突触特异性模式,这是通过不同的机制建立的。首先,前庭输入的目标优先于屈肌运动池的伸肌,这种模式是通过发展完善而建立的,部分受前庭信号传导控制。第二,前庭输入目标在伸肌池内快速运动神经元亚型缓慢抽动,而本体感受器则表现出反向相关的连通性。影响本体感受反馈电路功能的遗传操作导致前庭输入对运动神经元亚型的调节,以抵消所施加的变化,而不会改变对屈肌池的稀疏前庭输入。因此,两个感觉信号系统相互作用以建立到马达输出处理的最终部位的互补突触输入模式。

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