Guo Jing-Min, Chen Zhi-Qi, Chen Wei, Yan Xiao-Qin, Zhang Hong, Wang Jun-Ming
Department of Ophthalmology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, C.P. 430030, Wuhan, China.
Department of Ophthalmology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, C.P. 430030, Wuhan, China.
Med Eng Phys. 2021 Feb;88:25-31. doi: 10.1016/j.medengphy.2020.12.005. Epub 2020 Dec 19.
Schlemm's canal (SC) is a ring structure responsible for maintaining fluid homeostasis in the anterior chamber of the eye by draining aqueous humor (AH) from the trabecular meshwork (TM) into the collecting channel (CC). Obstruction of the AH flow in this conventional pathway leads to an elevation of intraocular pressure in glaucoma, which is internationally recognized as the most common cause of blindness. Although there are obvious morphological differences between patients and healthy individuals, the AH drainage capacity of SC with specific parameters is difficult to quantitatively evaluate due to the limitations of analyses or experimental technologies. In this paper, the AH flow dynamic features under various SC morphological parameters are studied by numerical simulations of 3D models. The axis length of the SC cross-section and the level of openness are chosen as the main morphological factors according to the clinical data. The flow features, including the velocity, streamline and wall shear stress, are analyzed. This study aimed not only to explore the feasibility of 3D numerical modeling in evaluating the SC drainage capacity, but also to reveal the relationship between SC morphological parameters and the dynamic features of AH drainage.
施莱姆管(SC)是一种环形结构,通过将房水(AH)从小梁网(TM)引流至集合通道(CC)来维持眼前房的液体稳态。在这种传统途径中,房水流动受阻会导致青光眼患者眼内压升高,青光眼是国际公认的最常见致盲原因。尽管患者与健康个体之间存在明显的形态差异,但由于分析或实验技术的局限性,具有特定参数的施莱姆管的房水引流能力难以进行定量评估。本文通过三维模型的数值模拟研究了在各种施莱姆管形态参数下房水流动的动态特征。根据临床数据,选择施莱姆管横截面的轴长和开放程度作为主要形态学因素。分析了包括流速、流线和壁面剪应力在内的流动特征。本研究不仅旨在探索三维数值建模在评估施莱姆管引流能力方面的可行性,还旨在揭示施莱姆管形态参数与房水引流动态特征之间的关系。