终纹床核及其白质连接的三维解剖:外科和神经精神病学的观点。

Ozan Barut, Yunus Emre Durmus, Orhun Mete Cevik, Sevki Serhat Baydin, Cengiz Cokluk, Necmettin Tanriover
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引用次数: 0

摘要

目的:终纹床核(BST)位于基底前脑深处,在调节情绪、应激和自主神经反应的电路中起着关键的中继作用。尽管它具有临床意义,特别是在焦虑相关疾病中,但其详细的白质连接仍未得到充分探索。本研究旨在提供BST及其结构关联的深入解剖描述,重点是其外科和神经调节相关性。材料与方法:采用Klingler法对14个经福尔马林固定的人脑进行纤维分层解剖。在高倍镜下,从外侧到内侧和从内侧到外侧进行解剖,可以详细观察BST与邻近纤维束和核(如前连合、穹窿、终纹、伏隔核和间隔区)的关系。结果:BST始终位于前连合的正上方,中间与间隔核接壤,形成紧凑而完整的结构。BST和边缘-下丘脑目标之间通过终纹、形式纤维和Broca对角带确定了密集的投射。这些联系强调了BST在协调边缘输出和神经营养中心方面的关键地位。结论:本研究完善了BST的地形和连接图,为其作为边缘中枢的作用提供了结构上的见解。这种清晰度可能有助于调整神经调节干预,如深部脑刺激,通过提高涉及恐惧、强迫和影响调节的疾病的解剖精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-Dimensional Dissection of the Bed Nucleus of the Stria Terminalis and Its White Matter Connections: A Surgical and Neuropsychiatric Perspective.

Aim: To provide an in-depth anatomical description of the bed nucleus of the stria terminalis (BST) and its structural affiliations, with an emphasis on its surgical and neuromodulatory relevance.

Material and methods: We conducted stepwise fiber dissections on 14 formalin-fixed human brains prepared using the Klingler method. Under high magnification, dissections were performed lateral to medial and medial to lateral directions, enabling detailed visualization of the BST?s relationship with adjacent fiber tracts and nuclei such as the anterior commissure, fornix, stria terminalis, nucleus accumbens, and septal area.

Results: The BST was consistently located anterosuperior to the anterior commissure and medially bordered by the septal nuclei, forming a compact yet integrative structure. Dense projections were identified between the BST and limbic-hypothalamic targets via the stria terminalis, fornical fibers, and the diagonal band of Broca. These connections emphasize the BST?s pivotal position in coordinating limbic output with neurovegetative centers.

Conclusion: This study refines the topographic and connectional map of the BST, offering structural insight into its role as a limbic hub. Such clarity may assist in tailoring neuromodulatory interventions?such as deep brain stimulation?by improving anatomical precision in disorders involving fear, compulsion, and affect regulation.

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