Morphological variation of the soleus muscle: Determining general patterns and characteristics of the connective tissue architecture

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Abstract

Background

The tendons within the soleus muscle are commonly utilized to delineate location of injury for soleus muscle strains. Strains within the soleus frequently involve the myotendinous (MTJ) or myofascial (MFJ) junctions, although spatial relationship between these tendinous structures are not well understood. This study aimed to structurally identify the MTJs and MFJs within the soleus as a starting point to understanding the distribution of connective tissue for further anatomical classification.

Methods

Forty (n = 40) soleus muscles, representing left and right sides from twenty (n = 20) formalin-embalmed cadavers (average age 78 years old; 10 males, 10 females) were dissected in-situ to analyze the distribution and orientation of the MTJs and MFJs within classified morphological variants. Muscles were cut in cross-section at three measured locations, proximal, middle, and distal, which allowed for analyzation of tendons through the course of the muscle. Additionally, anterior surfaces of morphological variants were visualized and reconstructed in three dimensions using a handheld blue light 3D scanner.

Results

The study revealed five morphological variants. Bipennate-Midline (n = 25), Bipennate-Medial Deviation (n = 6), Bipennate-Lateral Deviation (n = 3), Unipennate (n = 3), and Hypopennate (n = 3). Muscles included an anterior aponeurosis that was split into medial and lateral components, with each side made up of interconnections between the MTJ and MJF. The average width of the medial aponeurosis was greatest in the middle location, while the average lateral aponeurotic width decreased from proximal to distal. Regression analysis at the middle location revealed that 65 % of the change in width of the medial aponeuroses is due to the width of the medial MFJ.

Conclusions

Proximal-to-distal interconnections between the lateral and medial anterior aponeuroses and their corresponding MTJs and MFJs likely play a role in soleus injury patterns, especially in morphological variants. Awareness of anatomical variations in the location and orientation of these tendinous relationships is crucial for understanding lesions on diagnostic imaging.

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比目鱼肌的形态变化:确定结缔组织结构的一般模式和特征
背景比目鱼肌内的肌腱通常用来划分比目鱼肌拉伤的损伤位置。比目鱼肌内的拉伤经常涉及肌腱(MTJ)或肌筋膜(MFJ)连接处,但这些肌腱结构之间的空间关系并不十分清楚。本研究旨在从结构上识别比目鱼肌内的 MTJ 和 MFJ,并以此为起点了解结缔组织的分布情况,以便进一步进行解剖学分类。方法对 20 具(n = 20)福尔马林防腐尸体(平均年龄 78 岁,男性 10 具,女性 10 具)的 40 块(n = 40)代表左右两侧的比目鱼肌进行原位解剖,分析分类形态变体中 MTJ 和 MFJ 的分布和方向。在近端、中段和远端三个测量位置切开肌肉横截面,以便分析肌腱的走向。此外,还使用手持式蓝光三维扫描仪对形态变体的前表面进行了可视化和三维重建。双ennate-Midline(n = 25)、双ennate-Medial Deviation(n = 6)、双ennate-Lateral Deviation(n = 3)、Unipennate(n = 3)和Hypopennate(n = 3)。肌肉包括分为内侧和外侧两部分的前肌腱膜,每侧由 MTJ 和 MJF 之间的相互连接组成。内侧肌腱膜的平均宽度在中间位置最大,而外侧肌腱膜的平均宽度则从近端向远端递减。结论外侧和内侧前方肌腱及其相应的 MTJ 和 MFJ 之间从近端到远端的相互联系可能在比目鱼肌损伤模式中发挥作用,尤其是在形态变异中。了解这些肌腱关系在位置和方向上的解剖学变化对于理解影像诊断中的病变至关重要。
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来源期刊
CiteScore
2.90
自引率
0.00%
发文量
71
审稿时长
25 days
期刊介绍: Translational Research in Anatomy is an international peer-reviewed and open access journal that publishes high-quality original papers. Focusing on translational research, the journal aims to disseminate the knowledge that is gained in the basic science of anatomy and to apply it to the diagnosis and treatment of human pathology in order to improve individual patient well-being. Topics published in Translational Research in Anatomy include anatomy in all of its aspects, especially those that have application to other scientific disciplines including the health sciences: • gross anatomy • neuroanatomy • histology • immunohistochemistry • comparative anatomy • embryology • molecular biology • microscopic anatomy • forensics • imaging/radiology • medical education Priority will be given to studies that clearly articulate their relevance to the broader aspects of anatomy and how they can impact patient care.Strengthening the ties between morphological research and medicine will foster collaboration between anatomists and physicians. Therefore, Translational Research in Anatomy will serve as a platform for communication and understanding between the disciplines of anatomy and medicine and will aid in the dissemination of anatomical research. The journal accepts the following article types: 1. Review articles 2. Original research papers 3. New state-of-the-art methods of research in the field of anatomy including imaging, dissection methods, medical devices and quantitation 4. Education papers (teaching technologies/methods in medical education in anatomy) 5. Commentaries 6. Letters to the Editor 7. Selected conference papers 8. Case Reports
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