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首页> 外文期刊>Journal of Anatomy >Anatomo-functional study of the temporo-parieto-occipital region: Dissection, tractographic and brain mapping evidence from a neurosurgical perspective
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Anatomo-functional study of the temporo-parieto-occipital region: Dissection, tractographic and brain mapping evidence from a neurosurgical perspective

机译:颞顶枕区的解剖功能研究:从神经外科的角度进行解剖,脑电图和脑图的证据

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摘要

The temporo-parieto-occipital (TPO) junction is a complex brain territory heavily involved in several high-level neurological functions, such as language, visuo-spatial recognition, writing, reading, symbol processing, calculation, self-processing, working memory, musical memory, and face and object recognition. Recent studies indicate that this area is covered by a thick network of white matter (WM) connections, which provide efficient and multimodal integration of information between both local and distant cortical nodes. It is important for neurosurgeons to have good knowledge of the three-dimensional subcortical organisation of this highly connected region to minimise post-operative permanent deficits. The aim of this dissection study was to highlight the subcortical functional anatomy from a topographical surgical perspective. Eight human hemispheres (four left, four right) obtained from four human cadavers were dissected according to Klingler's technique. Proceeding latero-medially, the authors describe the anatomical courses of and the relationships between the main pathways crossing the TPO. The results obtained from dissection were first integrated with diffusion tensor imaging reconstructions and subsequently with functional data obtained from three surgical cases, all resection of infiltrating glial tumours using direct electrical mapping in awake patients. The subcortical limits for performing safe lesionectomies within the TPO region are as follows: within the parietal region, the anterior horizontal part of the superior longitudinal fasciculus and, more deeply, the arcuate fasciculus; dorsally, the vertical projective thalamo-cortical fibres. For lesions located within the temporal and occipital lobes, the resection should be tailored according to the orientation of the horizontal associative pathways (the inferior fronto-occipital fascicle, inferior longitudinal fascicle and optic radiation). The relationships between the WM tracts and the ventricle system were also examined. These results indicate that a detailed anatomo-functional awareness of the WM architecture within the TPO area is mandatory when approaching intrinsic brain lesions to optimise surgical results and to minimise post-operative morbidity.
机译:颞顶枕(TPO)交界处是复杂的大脑区域,主要参与多种高级神经功能,例如语言,视觉空间识别,书写,阅读,符号处理,计算,自我处理,工作记忆,音乐记忆以及面部和物体识别。最近的研究表明,该区域覆盖着厚厚的白质(WM)连接网络,可在本地和远处的皮质节点之间提供高效且多模式的信息集成。对于神经外科医师来说,重要的是要充分了解此高度连接区域的三维皮质下组织,以最大程度地减少术后永久性缺陷。本解剖研究的目的是从地形外科的角度突出皮质下功能解剖。根据Klingler的技术解剖了从四个人的尸体获得的八个人半球(左四个,右四个)。作者在后期进行研究,描述了穿越TPO的主要途径的解剖过程以及它们之间的关系。解剖获得的结果首先与扩散张量成像重建相结合,然后与从三个手术病例获得的功能数据相结合,所有处于清醒状态的患者均使用直接电测图切除了浸润性胶质细胞瘤。在TPO区域内进行安全性皮损切除术的皮层下限如下:在顶叶区域内,上纵筋膜的前水平部分,更深的是弓形筋膜;背侧垂直投射丘脑-皮质纤维。对于位于颞叶和枕叶内的病变,应根据水平结合路径(额枕下束,纵列下束和视放射)的方向进行切除。还检查了WM道与心室系统之间的关系。这些结果表明,在接近内在的脑部病变时,必须对TPO区域内的WM结构进行详细的解剖功能了解,以优化手术效果并最大程度地降低术后发病率。

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