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Neuroanatomic Connectivity of the Human Ascending Arousal System Critical to Consciousness and Its Disorders

机译:对意识及其障碍至关重要的人类提升觉觉系统的神经解剖学连通性。

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摘要

The ascending reticular activating system (ARAS) mediates arousal, an essential component of human consciousness. Lesions of the ARAS cause coma, the most severe disorder of consciousness. Because of current methodological limitations, including of postmortem tissue analysis, the neuroanatomic connectivity of the human ARAS is poorly understood. We applied the advanced imaging technique of high angular resolution diffusion imaging (HARDI) to elucidate the structural connectivity of the ARAS in 3 adult human brains, 2 of which were imaged postmortem. HARDI tractography identified the ARAS connectivity previously described in animals and also revealed novel human pathways connecting the brainstem to the thalamus, hypothalamus, and basal forebrain. Each pathway contained different distributions of fiber tracts from known neurotransmitter-specific ARAS nuclei in the brainstem. The histologically guided tractography findings reported here provide initial evidence for human-specific pathways of the ARAS. The unique composition of neurotransmitter-specific fiber tracts within each ARAS pathway suggests structural specializations that subserve the different functional characteristics of human arousal. This ARAS connectivity analysis provides proof of principle that HARDI tractography may impact the study of human consciousness and its disorders, including in neuropathologic studies of patients dying in coma and the persistent vegetative state.
机译:上升的网状激活系统(ARAS)介导唤醒,这是人类意识的重要组成部分。 ARAS病变引起昏迷,这是最严重的意识障碍。由于当前的方法学局限性,包括死后组织分析,人们对人ARAS的神经解剖学连通性了解甚少。我们应用了高角度分辨率扩散成像(HARDI)的先进成像技术,阐明了3个成年人脑中ARAS的结构连接性,其中2个是在事后成像的。 HARDI体层摄影术可识别先前在动物中描述的ARAS连接性,并且还揭示了将脑干与丘脑,下丘脑和基底前脑连接的新型人类途径。每个途径包含来自脑干中已知的神经递质特异性ARAS核的纤维束的不同分布。此处报道的组织学指导的影像学检查结果为ARAS的人类特异性途径提供了初步证据。每个ARAS通路中神经递质特异性纤维束的独特组成表明,结构专长可满足人类唤醒的不同功能特征。这项ARAS连通性分析为HARDI束线成像可能会影响人类意识及其疾病的研究提供了原理证明,包括在昏迷和持续性植物状态死亡患者的神经病理学研究中。

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