Related Experiment Video
Updated: Jan 4, 2026

Retinal Pigment Epithelium Transplantation in a Non-human Primate Model for Degenerative Retinal Diseases
Published on: June 14, 2021
Fovea-sparing internal limiting membrane peeling versus complete internal limiting membrane peeling for myopic
Masanori Iwasaki1, Hirotomo Miyamoto2, Utako Okushiba2,3
1Department of Ophthalmology, Sapporo City General Hospital, 1-1 Kita 11-jo Nishi 13-chome, Chuo-ku, Sapporo, 060-8604, Japan. iwasakicom@yahoo.co.jp.
Purpose:
To compare the outcomes of vitrectomy with fovea-sparing internal limiting membrane peeling (FSIP) and complete internal limiting membrane peeling (ILMP) for myopic traction maculopathy (MTM).
Study Design:
A retrospective, observational study.
Patients And Methods:
In this study, we included 22 eyes of 21 consecutive patients who underwent vitrectomy with FSIP or ILMP for MTM and were monitored for at least 6 months. Eleven eyes were treated with FSIP, and 11, with ILMP.
Results:
With FSIP, the postoperative best-corrected visual acuity (BCVA) significantly improved from 0.61 (20/82) to 0.34 (20/44; P = .009) logarithm of the minimum angle of resolution (logMAR) units. With ILMP, the postoperative BCVA improved from 0.65 (20/89) to 0.52 (20/66) logMAR units, but was not significant (P = .106). The postoperative final central foveal thickness (CFT) reduced significantly after FSIP (from 557.6 to 128.8 µm, P = .003) and ILMP (from 547.3 to 130.3 µm, P = .008). The postoperative incidence of a macular hole was 0% (0/11 eyes) with FSIP and 27.3% (3/11 eyes) with ILMP. All patients with a macular hole had foveal detachment in association with a thin fovea preoperatively. With ILMP, postoperative BCVA with a macular hole worsened by -3.5 letters; in contrast, postoperative BCVA without a macular hole improved by +10.5 letters. With FSIP, postoperative BCVA without a macular hole significantly improved by +13.5 letters (P = .009).
Conclusions:
FSIP resulted in significant improvement in MTM and prevented postoperative macular hole development.

