[后房型人工晶体植入术后影响穹顶的术前因素分析]。

X L Li, Y Xie, L M Lin, Q T Feng, Q Liu
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Preoperative ocular examinations, including Pentacam anterior segment analysis system, Sirius anterior segment analysis system, ultrasound biomicroscopy (UBM), and IOLMaster optical biometry, were performed to measure parameters such as refractive power, corneal curvature, corneal horizontal diameter, anterior chamber volume, anterior chamber depth, pupil diameter, sulcus-to-sulcus diameter (STS), and lens thickness. The degree and position of implanted pIOL, as well as vault height measured by anterior segment optical coherence tomography (AS-OCT) at 1 day, 1 week, 1 month, and 3 months postoperatively, were recorded. Statistical analyses were conducted using repeated measures analysis of variance, Pearson correlation analysis, and multiple linear regression analysis. <b>Results:</b> A total of 314 patients (314 eyes) were included, with 52 male (16.56%) and 262 female (83.44%) patients, and an average age of (26.44±4.60) years. 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引用次数: 0

摘要

目的分析后房型人工晶体(pIOL)植入后穹隆高度的早期变化及其影响因素。方法: 进行一项回顾性病例系列研究:对2020年9月至2021年8月期间在中山大学中山眼科中心接受pIOL植入术并完成3个月随访的患者进行回顾性病例系列研究。数据收集对象为近视或近视散光患者。术前进行了眼部检查,包括Pentacam前节分析系统、Sirius前节分析系统、超声生物显微镜(UBM)和IOLMaster光学生物测量仪,以测量屈光力、角膜曲率、角膜水平直径、前房容积、前房深度、瞳孔直径、沟对沟直径(STS)和晶状体厚度等参数。术后 1 天、1 周、1 个月和 3 个月时,通过前节光学相干断层扫描(AS-OCT)测量的植入 pIOL 的程度和位置以及穹窿高度均被记录在案。统计分析采用重复测量方差分析、皮尔逊相关分析和多元线性回归分析。结果共纳入 314 名患者(314 只眼),其中男性 52 名(16.56%),女性 262 名(83.44%),平均年龄(26.44±4.60)岁。术前等效球面力为(-8.09±2.41)D。术后 1 天、1 周、1 个月和 3 个月的穹隆高度分别为(671.88±273.02)μm、(652.26±272.21)μm、(615.组间差异有统计学意义(P750 μm),术后早期穹隆高度下降幅度更大(PP>0.05)。与术后 1 天穹隆高度相关的因素包括角膜水平直径、前房深度、术前柱状体力量、角膜度数、晶状体厚度和 pIOL 柱状体力量。术后 3 个月时与穹隆高度相关的因素包括角膜水平直径、前房深度、术前圆柱力、前房容积、角度、晶状体厚度、轴向长度、pIOL 球面和圆柱力。与术后早期穹隆高度变化相关的因素包括角膜曲率 K2、前房深度、前房容积、瞳孔直径、水平 STS、垂直 STS、轴向长度和术前球面力(均为 PPConclusions):人工晶体植入术后的穹隆高度在术后早期不稳定,并在 3 个月内逐渐降低。基线穹隆高度越高,下降幅度越大。前房体积、瞳孔直径和晶状体厚度是术后前 3 个月穹窿高度的影响因素。
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[Analysis of pre-operative factors affecting vault after posterior chamber phakic intraocular lens implantation].

Objective: To analyze the early changes in vault height and its influencing factors after implantation of posterior chamber phakic intraocular lenses (pIOL). Methods: A retrospective case series study was conducted, including patients who underwent pIOL implantation at Zhongshan Ophthalmic Center, Sun Yat-sen University, from September 2020 to August 2021, and completed a 3-month follow-up. Data were collected from myopic or myopic astigmatism patients. Preoperative ocular examinations, including Pentacam anterior segment analysis system, Sirius anterior segment analysis system, ultrasound biomicroscopy (UBM), and IOLMaster optical biometry, were performed to measure parameters such as refractive power, corneal curvature, corneal horizontal diameter, anterior chamber volume, anterior chamber depth, pupil diameter, sulcus-to-sulcus diameter (STS), and lens thickness. The degree and position of implanted pIOL, as well as vault height measured by anterior segment optical coherence tomography (AS-OCT) at 1 day, 1 week, 1 month, and 3 months postoperatively, were recorded. Statistical analyses were conducted using repeated measures analysis of variance, Pearson correlation analysis, and multiple linear regression analysis. Results: A total of 314 patients (314 eyes) were included, with 52 male (16.56%) and 262 female (83.44%) patients, and an average age of (26.44±4.60) years. The preoperative equivalent spherical power was (-8.09±2.41) D. Postoperative vault heights at 1 day, 1 week, 1 month, and 3 months were (671.88±273.02) μm, (652.26±272.21) μm, (615.08±259.69) μm, and (591.14±250.71) μm, respectively, with statistically significant differences among groups (P<0.001). Eyes with vault height>750 μm showed a greater decrease in early postoperative vault height (P<0.001). The eyes implanted with 12.1 mm pIOL had the lowest postoperative vault height, while those with 13.2 mm had the highest (P>0.05). Factors correlated with vault height at 1 day postoperatively included corneal horizontal diameter, anterior chamber depth, preoperative cylinder power, angle degree, lens thickness, and pIOL cylinder power. Factors correlated with vault height at 3 months postoperatively included corneal horizontal diameter, anterior chamber depth, preoperative cylinder power, anterior chamber volume, angle degree, lens thickness, axial length, pIOL spherical and cylinder power. Factors associated with changes in early postoperative vault height included corneal curvature K2, anterior chamber depth, anterior chamber volume, pupil diameter, horizontal STS, vertical STS, axial length, and preoperative spherical power (all P<0.05). Multiple linear regression analysis revealed that lens thickness significantly influenced vault height at 1 day postoperatively, anterior chamber volume significantly influenced vault height at 3 months postoperatively, and pupil diameter significantly influenced changes in early postoperative vault height (all P<0.05). Conclusions: Vault height after pIOL implantation is unstable in the early postoperative period and gradually decreases within 3 months. A higher baseline vault height is associated with a greater decrease. Anterior chamber volume, pupil diameter, and lens thickness are influencing factors on vault height during the first 3 months postoperatively.

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中华眼科杂志
中华眼科杂志 Medicine-Ophthalmology
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