眼科 ›› 2026, Vol. 35 ›› Issue (5): 375-380.doi: 10.13281/j.cnki.issn.1004-4469.2026.05.005

• 论著 • 上一篇    下一篇

特发性黄斑裂孔内界膜剥除术后短期视网膜神经节细胞复合体厚度及视网膜敏感度的改变

陈鹏飞1   黄子琼2   赵可人1   郝玉华1    

  1. 1河北医科大学第四医院眼科,石家庄050011; 2石家庄市人民医院眼科,石家庄050011
  • 收稿日期:2025-02-09 出版日期:2026-09-25 发布日期:2026-09-18
  • 通讯作者: 郝玉华,Email:47106435@hebmu.edu.cn
  • 基金资助:
    河北省科技厅惠民计划项目(16277717D)

Changes in retinal ganglion cell complex thickness and retinal sensitivity following internal limiting membrane peeling in idiopathic macular hole patients

Chen Pengfei1, Huang Ziqiong2, Zhao Keren1, Hao Yuhua1   

  1. 1 Department of Ophthalmology, The Fourth Hospital of Hebei Medical University, Shijiazhuang 050011, China;
    2 Department of Ophthalmology, Shijiazhuang People's Hospital, Shijiazhuang 050011, China
  • Received:2025-02-09 Online:2026-09-25 Published:2026-09-18
  • Contact: Hao Yuhua, Email: 47106435@hebmu.edu.cn
  • Supported by:
    Hebei Provincial Department of Science and Technology People's Benefit Program (16277717D)

摘要: 目的 探讨特发性黄斑裂孔(IMH)内界膜剥除术后短期内视网膜神经节细胞复合体(GCC)厚度及视网膜敏感度的变化,分析内界膜剥除对视网膜内层结构及功能的影响。设计 回顾性比较性病例系列。研究对象 2021年10月至2022年12月IMH患者24例,其中女性21例(21眼)。方法 回顾患者的病历资料。患眼为试验组,对侧健眼为对照组。所有患者均行PHACO+IOL+玻璃体切割+内界膜剥除+无菌空气填充术,术后黄斑裂孔闭合。使用SD-OCT测量术前黄斑裂孔直径及术后3个月双眼GCC厚度,微视野计MP-3测量试验组术前及术后3个月黄斑区敏感度(MMS)、中心凹敏感度(CMS)及眼底4°~12°四个扇形区域的视网膜敏感度。分析比较术后两组GCC厚度、试验组手术前后视敏度变化及GCC厚度变化与术后视敏度的相关性。主要指标 最佳矫正视力(BCVA),GCC厚度,黄斑区敏感度(MMS)、中心凹敏感度(CMS)及眼底4°~12°四个扇形区域的视网膜敏感度。结果 对照组四个象限GCC厚度组间比较有显著差异(F=20.444,P=0.000),鼻侧两象限GCC厚度显著大于颞侧(P均=0.000)。术后3个月,试验组鼻侧两象限GCC厚度显著大于颞侧(F=34.165,P=0.000),且鼻侧GCC厚度较健眼增厚(SN:t=-4.703,P=0.000;IN: t=-2.972,P=0.006)。试验组颞下象限GCC厚度较健眼变薄(t=2.247,P=0.034)。术后MMS和CMS较术前显著提升(t=-7.346,-8.623,P均=0.000),手术前后4°~12°四个扇形区域的平均视网膜敏感度无显著差异(P均>0.05)。四个象限GCC厚度变化与术后相应象限平均视网膜敏感度无显著相关性(P均>0.05),但颞下象限GCC变薄与平均视网膜敏感度下降可能相关(ρ=0.424 P=0.062)。结论 颞下象限是内界膜剥除术中最易受损的象限,术中应缩短该区域的剥膜操作时间,避免反复牵拉,且术后随访需结合GCC厚度评估神经节细胞损伤,而非仅依赖视力检查。

关键词:  , 特发性黄斑裂孔;内界膜剥除术;神经节细胞复合体;微视野计-3

Abstract: Objective To investigate the changes in retinal ganglion cell complex (GCC) thickness and retinal sensitivity after internal limiting membrane (ILM) peeling in idiopathic macular hole (IMH) patients, and to evaluate the impact of ILM peeling on the structure and function of the inner retina. Design Retrospective comparative case series. Participants A total of 24 IMH patients (21 females) who visited the hospital between October 2021 and December 2022 were included. Methods The patient's medical records were reviewed. The affected eyes were designated as the experimental group, while the contralateral healthy eyes served as the control group. All patients underwent PHACO+IOL+vitrectomy+internal limiting membrane (ILM) peeling+sterile air tamponade, with successful closure of the macular hole postoperatively. Best-corrected visual acuity (BCVA) was recorded preoperatively and 3 months postoperatively. Spectral-domain optical coherence tomography (SD-OCT) was used to measure the preoperative macular hole diameter and GCC thickness in both eyes 3 months postoperatively. Microperimetry-3 (MP-3) was employed to measure the macular mean sensitivity (MMS), central macular sensitivity (CMS), and retinal sensitivity in the 4°-12° sectoral regions of the experimental group preoperatively and 3 months postoperatively. The postoperative GCC thickness between the two groups, changes in retinal sensitivity in the experimental group before and after surgery, and the correlation between GCC thickness changes and postoperative retinal sensitivity were analyzed. Main Outcome Measures  BCVA, GCC thickness, MMS,CMS, retinal sensitivity in the 4°-12° sectoral regions. Results There were significant differences in GCC thickness among the four quadrants of the control group (F=20.444, P=0.000). The GCC thickness in the two nasal quadrants was significantly greater than that in the temporal quadrants, and the differences were statistically significant (both P=0.000<0.05). At three months postoperatively, the GCC thickness in the two nasal quadrants of the experimental group was significantly greater than that in the temporal quadrants (F=34.165, P=0.000), and the nasal GCC thickness was increased compared with that of the healthy eye (SN: t=-4.703, P=0.000; IN: t=-2.972, P=0.006). The GCC thickness in the inferior temporal quadrant of the experimental group was decreased compared with that of the healthy eye (t=2.247, P=0.034). Postoperative MMS and CMS were significantly improved compared with preoperative values (t=-7.346, -8.623, both P=0.000). There were no significant differences in mean retinal sensitivity across the four sectoral areas (4°–12°) before and after surgery (all P>0.05). No significant correlation was found between changes in GCC thickness in the four quadrants and the corresponding quadrant mean retinal sensitivity after surgery (all P >0.05). However, a potential trend was observed between thinning of GCC thickness in the inferior temporal quadrant and decreased mean retinal sensitivity (ρ=0.424, P=0.062). Conclusion The inferotemporal quadrant is the most susceptible region to mechanical injury during ILM peeling. Surgical manipulation in this area should be minimized to avoid repeated traction. Postoperatively, GCC thickness measurement should be incorporated into routine follow-up as a complementary indicator of ganglion cell damage, as visual acuity alone is insufficient to detect early structural changes.

Key words:  Idiopathic macular hole (IMH), Internal limiting membrane peeling, Ganglion cell complex, Microperimetry-3