The Fourth Hospital of Changsha, Affiliated Changsha Hospital of Hunan Normal University, Changasha, 410006, Hunan, People's Republic of China.
Department of Biomedical Engineering, School of Measuring and Optical Engineering, Nanchang Hangkong University, Nanchang, 330063, Jiangxi, People's Republic of China.
Biomed Eng Online. 2022 Jul 23;21(1):49. doi: 10.1186/s12938-022-01019-1.
Ocular diseases are closely related to the physiological changes in the eye sphere and its contents. Using biomechanical methods to explore the relationship between the structure and function of ocular tissue is beneficial to reveal the pathological processes. Studying the pathogenesis of various ocular diseases will be helpful for the diagnosis and treatment of ocular diseases. We provide a critical review of recent biomechanical analysis of ocular diseases including glaucoma, high myopia, and diabetes. And try to summarize the research about the biomechanical changes in ocular tissues (e.g., optic nerve head, sclera, cornea, etc.) associated with those diseases. The methods of ocular biomechanics research in vitro in recent years are also reviewed, including the measurement of biomechanics by ophthalmic equipment, finite element modeling, and biomechanical analysis methods. And the preparation and application of microfluidic eye chips that emerged in recent years were summarized. It provides new inspiration and opportunity for the pathogenesis of eye diseases and personalized and precise treatment.
眼部疾病与眼球及其内容物的生理变化密切相关。利用生物力学方法研究眼组织的结构和功能关系,有助于揭示眼部疾病的病理过程。研究各种眼部疾病的发病机制有助于眼部疾病的诊断和治疗。我们对近年来青光眼、高度近视和糖尿病等眼部疾病的生物力学分析进行了批判性回顾,并尝试总结了与这些疾病相关的眼部组织(如视神经头、巩膜、角膜等)生物力学变化的研究。还回顾了近年来体外眼生物力学研究的方法,包括眼科设备的生物力学测量、有限元建模和生物力学分析方法。并总结了近年来出现的微流控眼芯片的制备和应用。为眼部疾病的发病机制和个性化、精准治疗提供了新的启示和机会。