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迈耶袢的解剖结构再探讨:基于纤维显微解剖证据改变颞叶袢的解剖学范式

The anatomy of Meyer's loop revisited: changing the anatomical paradigm of the temporal loop based on evidence from fiber microdissection.

作者信息

Goga Cristina, Türe Uğur

机构信息

1Department of Neurosurgery, Yeditepe University School of Medicine, Istanbul, Turkey; and.

2Department of Anatomy, University of Medicine and Pharmacy Targu Mures, Romania.

出版信息

J Neurosurg. 2015 Jun;122(6):1253-62. doi: 10.3171/2014.12.JNS14281. Epub 2015 Jan 30.

Abstract

OBJECT

The goal in this study was to explore and further refine comprehension of the anatomical features of the temporal loop, known as Meyer's loop.

METHODS

The lateral and inferior aspects of 20 previously frozen, formalin-fixed human brains were dissected under the operating microscope by using fiber microdissection.

RESULTS

A loop of the fibers in the anterior temporal region was clearly demonstrated in all dissections. This temporal loop, or Meyer's loop, is commonly known as the anterior portion of the optic radiation. Fiber microdissection in this study, however, revealed that various projection fibers that emerge from the sublentiform portion of the internal capsule (IC-SL), which are the temporopontine fibers, occipitopontine fibers, and the posterior thalamic peduncle (which includes the optic radiation), participate in this temporal loop and become a part of the sagittal stratum. No individual optic radiation fibers could be differentiated in the temporal loop. The dissections also disclosed that the anterior extension and angulation of the temporal loop vary significantly.

CONCLUSIONS

The fiber microdissection technique provides clear evidence that a loop in the anterior temporal region exists, but that this temporal loop is not formed exclusively by the optic radiation. Various projection fibers of the IC-SL, of which the optic radiation is only one of the several components, display this common course. The inherent limitations of the fiber dissection technique preclude accurate differentiation among individual fibers of the temporal loop, such as the optic radiation fibers.

摘要

目的

本研究的目的是探索并进一步完善对颞叶袢(即迈耶袢)解剖特征的理解。

方法

使用纤维显微解剖技术,在手术显微镜下对20个先前冷冻、经福尔马林固定的人脑的外侧和下侧进行解剖。

结果

在所有解剖中均清晰显示出颞前区的纤维袢。这个颞叶袢,即迈耶袢,通常被认为是视辐射的前部。然而,本研究中的纤维显微解剖显示,从内囊豆状核下部(IC-SL)发出的各种投射纤维,即颞桥纤维、枕桥纤维和丘脑后脚(包括视辐射),参与了这个颞叶袢,并成为矢状层的一部分。在颞叶袢中无法区分出单独的视辐射纤维。解剖还显示,颞叶袢的向前延伸和角度变化很大。

结论

纤维显微解剖技术提供了明确的证据,表明颞前区存在一个袢,但这个颞叶袢并非仅由视辐射形成。IC-SL的各种投射纤维,其中视辐射只是几个组成部分之一,呈现出这一共同走行。纤维解剖技术的固有局限性妨碍了对颞叶袢中单个纤维(如视辐射纤维)的准确区分。

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