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Toward an In Vivo Neuroimaging Template of Human Brainstem Nuclei of the Ascending Arousal Autonomic and Motor Systems

机译:走向提升的觉醒自主和运动系统的人脑干核的体内神经影像模板

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摘要

Brainstem nuclei (Bn) in humans play a crucial role in vital functions, such as arousal, autonomic homeostasis, sensory and motor relay, nociception, sleep, and cranial nerve function, and they have been implicated in a vast array of brain pathologies. However, an in vivo delineation of most human Bn has been elusive because of limited sensitivity and contrast for detecting these small regions using standard neuroimaging methods. To precisely identify several human Bn in vivo, we employed a 7 Tesla scanner equipped with multi-channel receive-coil array, which provided high magnetic resonance imaging sensitivity, and a multi-contrast (diffusion fractional anisotropy and T2-weighted) echo-planar-imaging approach, which provided complementary contrasts for Bn anatomy with matched geometric distortions and resolution. Through a combined examination of 1.3 mm3 multi-contrast anatomical images acquired in healthy human adults, we semi-automatically generated in vivo probabilistic Bn labels of the ascending arousal (median and dorsal raphe), autonomic (raphe magnus, periaqueductal gray), and motor (inferior olivary nuclei, two subregions of the substantia nigra compatible with pars compacta and pars reticulata, two subregions of the red nucleus, and, in the diencephalon, two subregions of the subthalamic nucleus) systems. These labels constitute a first step toward the development of an in vivo neuroimaging template of Bn in standard space to facilitate future clinical and research investigations of human brainstem function and pathology. Proof-of-concept clinical use of this template is demonstrated in a minimally conscious patient with traumatic brainstem hemorrhages precisely localized to the raphe Bn involved in arousal.
机译:人类的脑干核(Bn)在重要功能中起着至关重要的作用,例如唤醒,自主神经稳态,感觉和运动中继,伤害感受,睡眠和颅神经功能,并且它们与各种各样的脑病有关。然而,由于使用标准的神经影像学方法检测这些小区域的灵敏度和对比度有限,因此大多数人Bn的体内描述一直难以捉摸。为了精确地识别体内几种人Bn,我们使用了配备了多通道接收线圈阵列的7 Tesla扫描仪,该阵列提供了高磁共振成像灵敏度以及多对比度(扩散分数各向异性和T2加权)回波平面-成像方法,可为Bn解剖结构提供互补的对比度,并具有匹配的几何变形和分辨率。通过对在健康成人中获得的1.3 mm 3 多对比度解剖图像进行联合检查,我们半自动生成了升觉(中位数和背幅),自主性(油菜籽)的体内概率Bn标签magnus,导水管周围的灰色)和运动(橄榄核下核,黑质的两个子区域与pars compacta和pars reticulata兼容,红色核的两个子区域,以及在diencephalon中,丘脑下核的两个子区域)系统。这些标记构成了在标准空间中开发Bn体内神经成像模板的第一步,以促进人类脑干功能和病理学的未来临床和研究研究。此模板的概念验证临床使用已在外伤性脑干出血的意识不清的患者中精确定位,该外伤恰好位于引起唤醒的缝隙Bn上。

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