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Descending Influences on Vestibulospinal and Vestibulosympathetic Reflexes

机译:对椎骨和椎体交感神经反射的下降影响

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摘要

This review considers the integration of vestibular and other signals by the central nervous system pathways that participate in balance control and blood pressure regulation, with an emphasis on how this integration may modify posture-related responses in accordance with behavioral context. Two pathways convey vestibular signals to limb motoneurons: the lateral vestibulospinal tract and reticulospinal projections. Both pathways receive direct inputs from the cerebral cortex and cerebellum, and also integrate vestibular, spinal, and other inputs. Decerebration in animals or strokes that interrupt corticobulbar projections in humans alter the gain of vestibulospinal reflexes and the responses of vestibular nucleus neurons to particular stimuli. This evidence shows that supratentorial regions modify the activity of the vestibular system, but the functional importance of descending influences on vestibulospinal reflexes acting on the limbs is currently unknown. It is often overlooked that the vestibulospinal and reticulospinal systems mainly terminate on spinal interneurons, and not directly on motoneurons, yet little is known about the transformation of vestibular signals that occurs in the spinal cord. Unexpected changes in body position that elicit vestibulospinal reflexes can also produce vestibulosympathetic responses that serve to maintain stable blood pressure. Vestibulosympathetic reflexes are mediated, at least in part, through a specialized group of reticulospinal neurons in the rostral ventrolateral medulla that project to sympathetic preganglionic neurons in the spinal cord. However, other pathways may also contribute to these responses, including those that dually participate in motor control and regulation of sympathetic nervous system activity. Vestibulosympathetic reflexes differ in conscious and decerebrate animals, indicating that supratentorial regions alter these responses. However, as with vestibular reflexes acting on the limbs, little is known about the physiological significance of descending control of vestibulosympathetic pathways.
机译:这篇综述考虑了参与平衡控制和血压调节的中枢神经系统途径对前庭和其他信号的整合,并着重于这种整合如何根据行为情境改变与姿势相关的反应。有两种途径将前庭信号传递到肢体运动神经元:前庭脊髓外侧束和网状棘突。两种途径都接受来自大脑皮层和小脑的直接输入,并且还整合了前庭,脊柱和其他输入。动物或中风的去大脑活动中断了人类的皮质球投射,从而改变了前庭脊髓反射的获得以及前庭核神经元对特定刺激的反应。该证据表明,幕上区域改变了前庭系统的活动,但目前尚不清楚降级影响作用于四肢的前庭脊髓反射的功能重要性。通常被忽视的是前庭脊髓和网状脊髓系统主要终止于脊髓中间神经元,而不直接终止于运动神经元,但是对于脊髓中发生的前庭信号的转换知之甚少。引起前庭脊髓反射的身体位置的意外变化也会产生前庭交感神经反应,以维持稳定的血压。上皮交感神经反射至少部分地通过在延髓腹侧延髓中的一组网状脊髓神经元介导,该网状神经元投射到脊髓中的交感神经节前神经元。但是,其他途径也可能有助于这些反应,包括双重参与运动控制和交感神经系统活动调节的途径。在有意识和无脑的动物中,上颌骨交感神经反射有所不同,这表明上影区改变了这些反应。然而,与作用在四肢上的前庭反射一样,对前庭交感神经通路下降控制的生理意义了解甚少。

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