An Integrated Stepwise Approach to the Treatment of Graft Disease in a Patient with an Implanted Iris Lens Diaphragm and Concomitant Postkeratoplastic Ametropia (Clinical Case)

Q4 Medicine Oftalmologiya Pub Date : 2023-10-03 DOI:10.18008/1816-5095-2023-3-563-571
M. V. Sinitsyn, N. A. Pozdeyeva, A. E. Terent’eva
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Abstract

The purpose : to analyze the clinical and functional results of the complex staged treatment of graft disease in patient with an implanted iris lens diaphragm and concomitant postkeratoplastic ametropia using descemet’s stripping endothelial keratoplasty using a femtosecond laser (FS-DSEK) and MyoRing implantation into a corneal graft using a femtosecond laser on the example of a clinical case. Methods . Patient M., 51 years old, was admitted with a diagnosis of the left eye: corneal transplant disease, condition after penetrating keratoplasty, iridoartifakia, avitria, optic nerve subatrophy, high myopia. To treat the graft disease, the patient underwent FS-DSEK using a FemtoVisum 1 MHz (Troitsk, Russia). Twelve months after FS-DSEK to correct irregular postkeratoplastic astigmatism and concomitant high-grade myopia detected after restoration of the transparency of the penetrating corneal graft, the MyoRing was implanted into the penetrating corneal graft using a femtosecond laser. Results . After performing FS-DSEK, the transparency of the penetrating corneal graft was completely restored, visometry, refractokeratometry, and keratopachymetric data were stabilized by 6 months after the operation. 12 months after FS-DSEK, uncorrected visual acuity (UCVA) increased from 1.6 to 1.2 LogMAR, best corrected visual acuity (BCVA) increased from 1.6 to 0.8 LogMAR. Loss of endothelial cell density of the posterior layered graft was 27.4 %. MyoRing implantation into a penetrating corneal graft made it possible to significantly increase the UCVA from 1.3 to 0.3 LogMAR and the BCVA from 0.8 to 0.2 LogMAR. The spherical component of refraction decreased from -6.25 to -0.75 D, the cylindrical component of refraction — from -9.25 to -1.25 D, the regularity, sphericity of the corneal graft and its biomechanical properties increased (corneal resistance factor increased from 8.2 to 9.4 mm Hg, corneal hysteresis — from 7.9 to 9.1 mm Hg). Conclusion . A complex staged technique of descemet’s stripping endothelial keratoplasty using a femtosecond laser followed by MyoRing implantation into the corneal graft using a femtosecond laser is an effective and safe method for treating graft disease in a patient with an implanted iris lens diaphragm and concomitant postkeratoplastic ametropia.
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综合分步治疗虹膜晶状体横膈膜植入伴角膜变形后屈光不正一例
目的:以1例临床病例为例,分析飞秒激光descemet剥脱内皮角膜移植术(FS-DSEK)和飞秒激光MyoRing角膜移植物植入术复合分阶段治疗虹膜晶状体膈植入伴角膜变形后屈光不正患者的临床和功能效果。方法。患者M, 51岁,因左眼诊断:角膜移植疾病,穿透性角膜移植术后状况,虹膜假体,视网膜,视神经亚萎缩,高度近视入院。为了治疗移植物疾病,患者使用FemtoVisum 1 MHz (Troitsk, Russia)进行了FS-DSEK。采用FS-DSEK矫正角膜移植透明后发现的不规则散光和高度近视12个月后,使用飞秒激光将MyoRing植入穿透性角膜移植物。结果。经FS-DSEK手术后,穿透性角膜移植物透明度完全恢复,术后6个月粘度、屈光角膜测量、角膜透浊测量数据稳定。FS-DSEK治疗12个月后,未矫正视力(UCVA)由1.6 LogMAR提高到1.2 LogMAR,最佳矫正视力(BCVA)由1.6 LogMAR提高到0.8 LogMAR。后层状移植物内皮细胞密度损失为27.4%。在穿透性角膜移植物中植入MyoRing可以使UCVA从1.3 LogMAR显著提高到0.3 LogMAR, BCVA从0.8 LogMAR显著提高到0.2 LogMAR。球形屈光分量由-6.25 D降低到-0.75 D,圆柱形屈光分量由-9.25 D降低到-1.25 D,角膜移植物的规整性、球形性和生物力学性能均有所提高(角膜阻力因子由8.2 mm Hg增加到9.4 mm Hg,角膜迟滞从7.9 mm Hg增加到9.1 mm Hg)。结论。一种复杂的分阶段技术,采用飞秒激光进行descemet剥离内皮角膜移植术,然后使用飞秒激光将MyoRing植入角膜移植物中,这是治疗植入虹膜晶状体膈并合并角膜变形后屈光不正患者移植物疾病的一种有效且安全的方法。
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来源期刊
Oftalmologiya
Oftalmologiya Medicine-Ophthalmology
CiteScore
0.60
自引率
0.00%
发文量
93
审稿时长
8 weeks
期刊介绍: The scientific journal Oftalmologiya is included in the Scopus database. Publisher country is RU. The main subject areas of published articles are Ophthalmology, Физиология, Клиническая медицина, Профилактическая медицина, Медико-биологические науки, Фармацевтические науки. Before sending a scientific article, we recommend you to read the section For authors. This will allow you to prepare an article better for publication, to make it more interesting for the readers and useful for the scientific community. By following these steps, you will greatly increase the likelihood of your scientific article publishing in journals included in international citation systems (e.g., Scopus). Then you may choose a different journal, select the journal included to list of SAC Russia journal list, or send your scientific work for review and publication.
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