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皮质-顶盖连接作为下行锥体外系通路的一个组成部分:源于聚焦纤维解剖的新的和直接的结构证据。

The corticotegmental connectivity as an integral component of the descending extrapyramidal pathway: novel and direct structural evidence stemming from focused fiber dissections.

机构信息

Athens Microneurosurgery Laboratory, Evangelismos Hospital, Athens, Greece.

Department of Neurosurgery, Evangelismos Hospital, National and Kapodistrian University of Athens, Athens, Greece.

出版信息

Neurosurg Rev. 2021 Dec;44(6):3283-3296. doi: 10.1007/s10143-021-01489-2. Epub 2021 Feb 10.

DOI:10.1007/s10143-021-01489-2
PMID:33564983
Abstract

This study opts to investigate the thus far ill-defined intra-hemispheric topography, morphology, and connectivity of the extrapyramidal fibers that originate from the frontoparietal cortex and project to the tegmental area and to explore structural correlations to the pyramidal pathway. To this end, twenty normal adult, formalin-fixed cerebral hemispheres were studied through the fiber micro-dissection technique. Stepwise and in-tandem medial to lateral and lateral to medial dissections were carried out in all specimens. The cortical termination of the fibers under investigation was carefully defined, and their entry zone at the tegmental area was meticulously recorded. We consistently identified the corticotegmental tract (CTT) as a distinct fiber pathway lying in the white matter of the genu and posterior limb of the internal capsule and travelling medial to the corticospinal tract (CST) and lateral to the thalamic radiations. The CTT exhibits a fan-shaped configuration and can be classified into three discrete segments: a rostral one receiving fibers from BA8 (pre-SMA, frontal eye fields, dorsal prefrontal cortex), a middle one arising from areas BA4 and BA6 (primary motor cortex and premotor cortex), and a caudal one stemming from areas BA1/2/3 (somatosensory cortex). The anatomical location, configuration, trajectory, and axonal connectivity of this tract are attuned to the descending component of the extrapyramidal system, and therefore, it is believed to be implicated in locomotion, postural control, motor inhibition, and motor modification. Our results provide further support on the emerging concept of a dynamic, parallel, and delocalized theory for complex human motor behavior.

摘要

本研究旨在探索目前尚不明确的额顶皮质起源并投射至被盖区的锥体外系纤维的半球内的局部解剖、形态和连接,并探讨与皮质脊髓束(CST)的结构相关性。为此,我们通过纤维显微解剖技术研究了 20 例正常成人福尔马林固定的大脑半球。在所有标本中,我们进行了逐步的、从内侧到外侧和从外侧到内侧的平行解剖。仔细定义了研究纤维的皮质终止部位,并详细记录了它们在被盖区的进入区域。我们一致将皮质延髓束(CTT)确定为一种位于内囊膝部和后肢白质中的独特纤维束,位于 CST 的内侧和丘脑辐射的外侧。CTT 呈扇形排列,可分为三个离散的节段:接收来自 BA8(前运动区、额眼区、背侧前额叶皮质)纤维的近侧段、来自 BA4 和 BA6 区域(初级运动皮质和运动前皮质)纤维的中间段,以及来自 BA1/2/3 区域(躯体感觉皮质)纤维的远侧段。该束的解剖位置、形态、轨迹和轴突连接与锥体外系系统的下行成分相协调,因此,它被认为与运动、姿势控制、运动抑制和运动调节有关。我们的结果进一步支持了复杂人类运动行为的动态、并行和去中心化理论的新兴概念。

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Corticoreticular Tract in the Human Brain: A Mini Review.人类大脑中的皮质网状束:一篇综述短文
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Combined Motor Evoked Potential Monitoring and Subcortical Dynamic Mapping in Motor Eloquent Tumors Allows Safer and Extended Resections.运动功能区肿瘤的联合运动诱发电位监测与皮质下动态图谱绘制可实现更安全、更广泛的切除。
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Subcortical stimulation mapping of descending motor pathways for perirolandic gliomas: assessment of morbidity and functional outcome in 702 cases.中央沟周围胶质瘤下行运动通路的皮质下刺激图谱:702例病例的发病率及功能结果评估
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