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翼外肌的附着:对人类颞下颌关节的解剖学研究

Insertions of the lateral pterygoid muscle: an anatomic study of the human temporomandibular joint.

作者信息

Carpentier P, Yung J P, Marguelles-Bonnet R, Meunissier M

机构信息

Department of Basic Dental Sciences, Laboratoire de Recherches Orthodepiques--CNRS, Paris, France.

出版信息

J Oral Maxillofac Surg. 1988 Jun;46(6):477-82. doi: 10.1016/0278-2391(88)90417-x.

Abstract

The objective of this investigation was to evaluate the anatomic relationships of the lateral pterygoid muscle with the disc-condyle complex using an acrylic embedding technique to obtain anatomic serial cuts of a solid block containing the temporomandibular joint (TMJ) and the neighboring structures. The fibers of the upper and lower heads were found to be fused in front of the TMJ and to constitute medially a strong muscular wall. The lateral third of the anterior band of the disc was free of any muscle insertions and related anteriorly with loose connective tissue; the middle third showed fibers that run under the anterior band of the disc and attached in the upper part of the condylar fovea. Only the medial portion demonstrated both fibers running into the disc and fibers inserting into the bone. The fibers inserted into the bone run under those attached into the disc and terminated below the medial pole of the condyle binding the disc tightly over the medial pole. This study demonstrates that the main insertions of the superior head are not into the disc but into the condyle. Considering the anatomic organization of the upper head, the explanation of anterior displacement of the disc due to a spastic activity of this muscle alone is not probable. Hypotonicity, not hyperactivity, of the upper head may contribute to an anterior and medial disc displacement.

摘要

本研究的目的是使用丙烯酸包埋技术评估翼外肌与盘-髁复合体的解剖关系,以获得包含颞下颌关节(TMJ)及相邻结构的实体块的解剖连续切片。发现上、下头的纤维在TMJ前方融合,并在内侧构成一个强大的肌肉壁。盘前带外侧三分之一没有任何肌肉附着,前方与疏松结缔组织相关;中间三分之一有纤维在盘前带下方走行并附着于髁凹上部。只有内侧部分既有纤维进入盘内,也有纤维插入骨内。插入骨内的纤维走行于附着于盘的纤维下方,并在髁突内侧极下方终止,将盘紧密固定在髁突内侧极上方。本研究表明,上头的主要附着部位不是盘,而是髁突。考虑到上头的解剖结构,仅因该肌肉的痉挛活动导致盘前移位的解释不太可能。上头的低张力而非高活性可能导致盘向前内侧移位。

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