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原发性闭角型青光眼前房深度测量的研究进展
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Abstract:
青光眼作为世界第二大致盲眼病,危险因素众多,相互关系纷繁复杂,浅前房深度被认为是原发性闭角型青光眼的一个重要危险因素。准确测量前房深度是诊断和观察青光眼患者的重要指标,有助于闭角型青光眼的早期诊断和病程演变的评估。本文综述了测量前房深度的各种方法及最新研究状况。比较各类仪器的优缺点,为临床应用提供参考。
Glaucoma, the second most common blinding eye disease in the world, has many risk factors with complex interrelationships, and shallow anterior chamber depth is considered to be an important risk factor for primary angle-closure glaucoma. Accurate measurement of anterior chamber depth is an important indicator for diagnosis and observation of glaucoma patients, which helps in early diagnosis of angle-closure glaucoma and evaluation of disease evolution. This article summarizes the various methods of measuring anterior chamber depth and the state of the art of research. The advantages and disadvantages of each type of instrument are compared to provide reference for clinical application.
[1] | 崔冬梅, 吴小宏, 贺严. UBM对白内障合并原发性闭角型青光眼术前晶状体悬韧带及术后房角形态的观察[J]. 河北医学, 2020, 26(6): 980-983. |
[2] | 陈林江, 熊柯, 吴京. 光学相干断层扫描及超声生物显微镜测量眼前房深度的Meta分析[J]. 南方医科大学学报, 2013, 33(10): 1533-1537. |
[3] | Li, S., Shao, M., Wan, Y., Tang, B., Sun, X. and Cao, W. (2019) Relationship between Ocular Biometry and Severity of Primary Angle-Closure Glaucoma: Relevance for Predictive, Preventive, and Personalized Medicine. EPMA Journal, 10, 261-271. https://doi.org/10.1007/s13167-019-00174-1 |
[4] | Li, S., Shao, M., Cao, W. and Sun, X. (2019) Association be-tween Pretreatment Serum Uric Acid Levels and Progression of Newly Diagnosed Primary Angle-Closure Glaucoma: A Prospective Cohort Study. Oxidative Medicine and Cellular Longevity, 2019, Article ID: 7919836. https://doi.org/10.1155/2019/7919836 |
[5] | 刘敏, 赵骏, 赵华, 强军, 刘丽. 三种仪器测量中央前房深度比较[J]. 中国实用眼科杂志, 2011, 29(4): 345-347. |
[6] | Azuara-Blanco, A., Burr, J., Ramsay, C.R., et al. (2016) Effec-tiveness of Early Lens Extraction for the Treatment of Primary Angle-Closure Glaucoma (EAGLE): A Randomised Con-trolled Trial. The Lancet, 388, 1389-1397.
https://doi.org/10.1016/S0140-6736(16)30956-4 |
[7] | Wang, Q., Qu, X., Chen, W., et al. (2021) Altered Coupling of Cerebral Blood Flow and Functional Connectivity Strength in Visual and Higher Order Cognitive Cortices in Primary Open Angle Glaucoma. Journal of Cerebral Blood Flow & Metabolism, 41, 901-913. https://doi.org/10.1177/0271678X20935274 |
[8] | 李思珍, 梁远波, 王宁利. 原发性闭角型青光眼的房角关闭机制[J]. 青岛大学医学院学报, 2009, 45(1): 86-88. |
[9] | 范肃洁, 吕爱国, 郝洁, 梁远波, 郭黎霞, 李爱林, 王宁利. 房角关闭机制指导下可疑原发性房角关闭患者激光干预的疗效评价[J]. 眼科, 2017, 26(3): 149-153. |
[10] | Nongpiur, M.E., Khor, C.C., Jia, H., et al. (2014) ABCC5, A Gene That Influences the Anterior Chamber Depth, Is Associated with Primary Angle Closure Glaucoma. PLOS Genetics, 10, e1004089.
https://doi.org/10.1371/journal.pgen.1004352 |
[11] | 赵春柳. 多种仪器测量前房深度结果的对比[J]. 中华眼外伤职业眼病杂志, 2020, 42(1): 31-36. |
[12] | Wang, C., An, Y., Xia, Z., et al. (2022) The Neuroprotective Effect of Mel-atonin in Glutamate Excitotoxicity of R28 Cells and Mouse Retinal Ganglion Cells. Frontiers in Endocrinology, 13, Arti-cle 986131.
https://doi.org/10.3389/fendo.2022.986131 |
[13] | Bayliss, J.M., Ng, W.S., Waugh, N. and Azuara-Blanco, A. (2021) Laser Peripheral Iridoplasty for Chronic Angle Closure. Cochrane Database of Systematic Reviews, 3, CD006746. https://doi.org/10.1002/14651858.CD006746.pub4 |
[14] | Xu, B.Y., Chiang, M., Chaudhary, S., Kulkarni, S., Pardeshi, A.A. and Varma, R. (2019) Deep Learning Classifiers for Automated Detection of Gonioscopic Angle Closure Based on Anterior Segment OCT Images. American Journal of Ophthalmology, 208, 273-280. https://doi.org/10.1016/j.ajo.2019.08.004 |
[15] | Jindal, A., Ctori, I., Virgili, G., Lucenteforte, E. and Lawrenson, J.G. (2020) Non-Contact Tests for Identifying People at Risk of Primary Angle Closure Glaucoma. Cochrane Database of Systematic Reviews, 5, CD012947.
https://doi.org/10.1002/14651858.CD012947.pub2 |
[16] | 田国川. 超声生物显微镜下两种原发性闭角型青光眼生物学参数比较[J]. 临床医学研究与实践, 2023, 8(36): 78-81, 90. |
[17] | 潘丽军, 赵子文. 超声生物显微镜检查对原发性闭角型青光眼的诊断意义[J]. 广东医科大学学报, 2022, 40(3): 334-336. |
[18] | 罗昊敏, 李婵. 前节光学相干断层扫描仪对虹膜激光周切术后前房深度变化的影响分析[J]. 中国社区医师, 2022, 38(28): 79-81. |
[19] | 吴敏, 叶剑, 孙强, 翟军印, 曹书, 喻箭. 前节OCT与A超测量前房深度的比较[J]. 国际眼科杂志, 2007, 7(5): 1341-1342. |
[20] | 刘帅帅, 丁蕾, 赵莉莉, 程梦雅, 殷西亮. CASIA2与PentacamHR测量角膜厚度和前房深度的对比研究[J]. 国际眼科杂志, 2022, 22(11): 1922-1926. |
[21] | 何利东, 穆涛, 刘海军, 王旭辉. Pentacam在原发性闭角型青光眼的筛查和早期诊断中的应用研究[J]. 宁夏医学杂志, 2023, 45(1): 73-76. |
[22] | Hamoudi, H., Correll Christensen, U. and La Cour, M. (2018) Agreement of Phakic and Pseudophakic Anterior Chamber Depth Measure-ments in IOLMaster and Pentacam. Acta Ophthalmologica, 96, e403.
https://doi.org/10.1111/aos.13599 |
[23] | 胡平会, 张甜甜, 郝雪梅, 郭晓枚. 4种仪器测量高度近视患者前房深度和晶状体厚度的临床观察[J]. 中国眼耳鼻喉科杂志, 2022, 22(4): 402-406. |
[24] | 张慧君, 杨玉慧. IOLMaster与A型超声在白内障患者前房深度及眼轴长度测量中的临床应用[J]. 黔南民族医专学报, 2022, 35(1): 33-35. |
[25] | Xu, G., Wu, G., Du, Z., et al. (2021) Distribution of White-to-White Corneal Diameter and Anterior Cham-ber Depth in Chinese Myopic Patients. Frontiers in Medicine, 8, Article 732719. https://doi.org/10.3389/fmed.2021.732719 |
[26] | Zhao, J., Zhao, J., Yang, W., et al. (2021) Peripheral Anterior Chamber Depth and Angle Measurements Using Pentacam after Implantation of Toric and Non-Toric Implantable Col-lamer Lenses. Frontiers in Medicine, 8, Article 610590.
https://doi.org/10.3389/fmed.2021.610590 |
[27] | 刘杏, 赵博, 蔡小于, 陈秀琦. 超声生物显微镜和光学测量仪对闭角型青光眼前房深度及角膜厚度测量的比较[J]. 中国超声医学杂志, 2001, 17(11): 816-818. |
[28] | Cui, X., Yang, Y., Li, Y., et al. (2019) Correlation between Anterior Chamber Volume and Corneal Biomechanical Properties in Human Eyes. Frontiers in Bioengineering and Biotechnology, 7, Article 379.
https://doi.org/10.3389/fbioe.2019.00379 |
[29] | Shajari, M., Herrmann, K., Bühren, J., et al. (2019) Anterior Cham-ber Angle, Volume, and Depth in a Normative Cohort—A Retrospective Cross-Sectional Study. Current Eye Research, 44, 632-637.
https://doi.org/10.1080/02713683.2019.1576205 |