First metatarsophalangeal joint: Embryology, anatomy and biomechanics.

IF 2 Q2 ORTHOPEDICS
Osama M Embaby, Mohamed M Elalfy
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引用次数: 0

Abstract

The first metatarsophalangeal (MTP) joint plays a crucial role in foot biomechanics, particularly in weight-bearing activities such as walking and running. It is frequently affected by conditions like hallux valgus (HV) and hallux rigidus, with HV impacting approximately 23%-35% of the population. This narrative review explores the embryology, anatomy, and biomechanics of the first MTP joint (MTPJ), highlighting its significance in maintaining foot stability and function. A comprehensive literature search was conducted using PubMed, Scopus, and Google Scholar, analyzing 50 relevant studies, including 12 clinical trials. The joint's complex structure and mechanical demands make it susceptible to degenerative and structural disorders. Studies indicate that 25%-40% of individuals with HV experience significant pain and functional impairment, affecting mobility and quality of life. Biomechanical stress, abnormal gait patterns, and joint instability contribute to disease progression. Understanding the anatomical and biomechanical properties of the first MTPJ is essential for improving diagnostic and therapeutic approaches. Emerging surgical techniques, such as osteotomy and joint resurfacing, show promise in reducing recurrence rates and enhancing long-term outcomes. Further research is needed to refine minimally invasive interventions and optimize treatment strategies for first MTPJ disorders.

第一跖趾关节:胚胎学、解剖学和生物力学。
第一跖趾(MTP)关节在足部生物力学中起着至关重要的作用,特别是在负重活动中,如走路和跑步。它经常受到拇外翻(HV)和拇僵硬等疾病的影响,HV影响了大约23%-35%的人口。本文综述了第一MTP关节(MTPJ)的胚胎学、解剖学和生物力学,强调了其在维持足部稳定性和功能方面的重要性。综合检索PubMed、Scopus、谷歌Scholar等文献,分析相关研究50项,其中临床试验12项。关节复杂的结构和力学要求使其容易发生退行性和结构紊乱。研究表明,25%-40%的HV患者会经历严重的疼痛和功能障碍,影响活动能力和生活质量。生物力学应力、异常步态模式和关节不稳定有助于疾病进展。了解第一MTPJ的解剖和生物力学特性对于改进诊断和治疗方法至关重要。新兴的外科技术,如截骨术和关节表面置换,在降低复发率和提高长期疗效方面显示出希望。需要进一步的研究来完善微创干预措施并优化治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.10
自引率
0.00%
发文量
814
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