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脚桥被盖核作为小脑与基底神经节之间的运动和认知接口

The Pedunculopontine Tegmental Nucleus as a Motor and Cognitive Interface between the Cerebellum and Basal Ganglia.

作者信息

Mori Fumika, Okada Ken-Ichi, Nomura Taishin, Kobayashi Yasushi

机构信息

Laboratories for Neuroscience Visual Neuroscience Group, Graduate School of Frontier Biosciences, Osaka UniversityOsaka, Japan; Center for Information and Neural Networks (CiNet), National Institute of Information and Communications Technology and Osaka UniversityOsaka, Japan.

Bio-Dynamics Group, Department of Mechanical Science and Bioengineering, Graduate School of Engineering Science, Osaka University Osaka, Japan.

出版信息

Front Neuroanat. 2016 Nov 7;10:109. doi: 10.3389/fnana.2016.00109. eCollection 2016.

Abstract

As an important component of ascending activating systems, brainstem cholinergic neurons in the pedunculopontine tegmental nucleus (PPTg) are involved in the regulation of motor control (locomotion, posture and gaze) and cognitive processes (attention, learning and memory). The PPTg is highly interconnected with several regions of the basal ganglia, and one of its key functions is to regulate and relay activity from the basal ganglia. Together, they have been implicated in the motor control system (such as voluntary movement initiation or inhibition), and modulate aspects of executive function (such as motivation). In addition to its intimate connection with the basal ganglia, projections from the PPTg to the cerebellum have been recently reported to synaptically activate the deep cerebellar nuclei. Classically, the cerebellum and basal ganglia were regarded as forming separated anatomical loops that play a distinct functional role in motor and cognitive behavioral control. Here, we suggest that the PPTg may also act as an interface device between the basal ganglia and cerebellum. As such, part of the therapeutic effect of PPTg deep brain stimulation (DBS) to relieve gait freezing and postural instability in advanced Parkinson's disease (PD) patients might also involve modulation of the cerebellum. We review the anatomical position and role of the PPTg in the pathway of basal ganglia and cerebellum in relation to motor control, cognitive function and PD.

摘要

作为上行激活系统的重要组成部分,脚桥被盖核(PPTg)中的脑干胆碱能神经元参与运动控制(运动、姿势和注视)以及认知过程(注意力、学习和记忆)的调节。PPTg与基底神经节的多个区域高度互联,其关键功能之一是调节和传递来自基底神经节的活动。它们共同参与运动控制系统(如自主运动的启动或抑制),并调节执行功能的各个方面(如动机)。除了与基底神经节密切相连外,最近有报道称PPTg向小脑的投射可通过突触激活小脑深部核团。传统上,小脑和基底神经节被认为形成了独立的解剖环路,在运动和认知行为控制中发挥着不同的功能作用。在此,我们认为PPTg可能还充当基底神经节和小脑之间的接口装置。因此,PPTg深部脑刺激(DBS)缓解晚期帕金森病(PD)患者步态冻结和姿势不稳的部分治疗效果可能也涉及对小脑的调节。我们综述了PPTg在基底神经节和小脑通路中与运动控制、认知功能及PD相关的解剖位置和作用。

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