Influence of Intraocular Lens Material and Eye Axial Length on Posterior Capsule Opacification Dynamic Rate and Frequency

Purpose: To evaluate posterior capsule opacification (PCO) formation dynamic rate and frequency in artificial eyes with myopia in different terms after cataract extraction and it’s relation with IOL material. Patients and methods. An evaluation of PCO formationdynamic rate and frequency was done by...

Full description

Bibliographic Details
Main Authors: G. V. Sorokoletov, V. K. Zuev, J. R. Tumanjan, F. M. Gerlyak, V. N. Veshhikova, A. N. Bessarabov, L. V. Agdarova
Format: Article
Language:Russian
Published: Ophthalmology Publishing Group 2016-12-01
Series:Oftalʹmologiâ
Subjects:
Online Access:https://www.ophthalmojournal.com/opht/article/view/334
_version_ 1797875501930381312
author G. V. Sorokoletov
V. K. Zuev
J. R. Tumanjan
F. M. Gerlyak
V. N. Veshhikova
A. N. Bessarabov
L. V. Agdarova
author_facet G. V. Sorokoletov
V. K. Zuev
J. R. Tumanjan
F. M. Gerlyak
V. N. Veshhikova
A. N. Bessarabov
L. V. Agdarova
author_sort G. V. Sorokoletov
collection DOAJ
description Purpose: To evaluate posterior capsule opacification (PCO) formation dynamic rate and frequency in artificial eyes with myopia in different terms after cataract extraction and it’s relation with IOL material. Patients and methods. An evaluation of PCO formationdynamic rate and frequency was done by using a retrospective analysis of YAG-laser assist posterior capsule dissections in different terms after cataract extraction on 45640 eyes of 43520 patients with emmetropia and myopia without concomitant pathology.The mean patient’s age was 73±7 years and the least follow-up after  hacoemulsification was 5 years. All eyes were divided on two groups. The first group included 25339 eyes where a hydrophilic IOL was implanted; the second group included 20301 eyes where a hydrophobic IOL was implanted. Results. At the first group the YAG-laser assist posterior capsule dissection was done on 2128 (8,4%) eyes. It was shown a proportional influence of axial length on PCO frequency but more rapidly the PCO rate increased between 26 to 28 mm and then this parameter had stabilization. The PCO dynamic rate had a normal statistical corresponding in the group with maximum at third postoperative year. At the second group YAG-laser assist posterior capsule dissection was done on 244 (1,2%) eyes. It was shown a proportional influence of axial length on PCO frequency too. But increasing of axial length more than 28 mmincreased PCO rate correspondingly that differ the second group from the first. The PCO dynamic rate had an inversely proportional character in the group. Comparing the PCO frequency in both groups showed that hydrophobic material has less PCO rate with any axial length and every time of follow-up. Conclusion. An IOL’s material plays an important role in PCO formation and PCO formation dynamic rate. Hydrophobic material has a statistically significant less PCO frequency through five-year follow-up in eyes with myopia and emmetropia. The PCO dynamic rate strongly differ between groups with a normal statistical corresponding in group 1 and inversely proportional in group 2.
first_indexed 2024-04-10T01:47:29Z
format Article
id doaj.art-1d789ff3e646497a877e5c323dee52d4
institution Directory Open Access Journal
issn 1816-5095
2500-0845
language Russian
last_indexed 2024-04-10T01:47:29Z
publishDate 2016-12-01
publisher Ophthalmology Publishing Group
record_format Article
series Oftalʹmologiâ
spelling doaj.art-1d789ff3e646497a877e5c323dee52d42023-03-13T09:08:37ZrusOphthalmology Publishing GroupOftalʹmologiâ1816-50952500-08452016-12-0113424725110.18008/1816-5095-2016-4-247-251309Influence of Intraocular Lens Material and Eye Axial Length on Posterior Capsule Opacification Dynamic Rate and FrequencyG. V. Sorokoletov0V. K. Zuev1J. R. Tumanjan2F. M. Gerlyak3V. N. Veshhikova4A. N. Bessarabov5L. V. Agdarova6Федеральное государственное автономное учреждение «Межотраслевой научно-технический комплекс «Микрохирургия Глаза» имени академика С.Н. Федорова» Министерства здравоохранения Российской Федерации»Федеральное государственное автономное учреждение «Межотраслевой научно-технический комплекс «Микрохирургия Глаза» имени академика С.Н. Федорова» Министерства здравоохранения Российской Федерации»Федеральное государственное автономное учреждение «Межотраслевой научно-технический комплекс «Микрохирургия Глаза» имени академика С.Н. Федорова» Министерства здравоохранения Российской Федерации»Федеральное государственное автономное учреждение «Межотраслевой научно-технический комплекс «Микрохирургия Глаза» имени академика С.Н. Федорова» Министерства здравоохранения Российской Федерации»Федеральное государственное автономное учреждение «Межотраслевой научно-технический комплекс «Микрохирургия Глаза» имени академика С.Н. Федорова» Министерства здравоохранения Российской Федерации»Федеральное государственное автономное учреждение «Межотраслевой научно-технический комплекс «Микрохирургия Глаза» имени академика С.Н. Федорова» Министерства здравоохранения Российской Федерации»Федеральное государственное автономное учреждение «Межотраслевой научно-технический комплекс «Микрохирургия Глаза» имени академика С.Н. Федорова» Министерства здравоохранения Российской Федерации»Purpose: To evaluate posterior capsule opacification (PCO) formation dynamic rate and frequency in artificial eyes with myopia in different terms after cataract extraction and it’s relation with IOL material. Patients and methods. An evaluation of PCO formationdynamic rate and frequency was done by using a retrospective analysis of YAG-laser assist posterior capsule dissections in different terms after cataract extraction on 45640 eyes of 43520 patients with emmetropia and myopia without concomitant pathology.The mean patient’s age was 73±7 years and the least follow-up after  hacoemulsification was 5 years. All eyes were divided on two groups. The first group included 25339 eyes where a hydrophilic IOL was implanted; the second group included 20301 eyes where a hydrophobic IOL was implanted. Results. At the first group the YAG-laser assist posterior capsule dissection was done on 2128 (8,4%) eyes. It was shown a proportional influence of axial length on PCO frequency but more rapidly the PCO rate increased between 26 to 28 mm and then this parameter had stabilization. The PCO dynamic rate had a normal statistical corresponding in the group with maximum at third postoperative year. At the second group YAG-laser assist posterior capsule dissection was done on 244 (1,2%) eyes. It was shown a proportional influence of axial length on PCO frequency too. But increasing of axial length more than 28 mmincreased PCO rate correspondingly that differ the second group from the first. The PCO dynamic rate had an inversely proportional character in the group. Comparing the PCO frequency in both groups showed that hydrophobic material has less PCO rate with any axial length and every time of follow-up. Conclusion. An IOL’s material plays an important role in PCO formation and PCO formation dynamic rate. Hydrophobic material has a statistically significant less PCO frequency through five-year follow-up in eyes with myopia and emmetropia. The PCO dynamic rate strongly differ between groups with a normal statistical corresponding in group 1 and inversely proportional in group 2.https://www.ophthalmojournal.com/opht/article/view/334факоэмульсификацияиолартифакиявторичная катарактамиопия
spellingShingle G. V. Sorokoletov
V. K. Zuev
J. R. Tumanjan
F. M. Gerlyak
V. N. Veshhikova
A. N. Bessarabov
L. V. Agdarova
Influence of Intraocular Lens Material and Eye Axial Length on Posterior Capsule Opacification Dynamic Rate and Frequency
Oftalʹmologiâ
факоэмульсификация
иол
артифакия
вторичная катаракта
миопия
title Influence of Intraocular Lens Material and Eye Axial Length on Posterior Capsule Opacification Dynamic Rate and Frequency
title_full Influence of Intraocular Lens Material and Eye Axial Length on Posterior Capsule Opacification Dynamic Rate and Frequency
title_fullStr Influence of Intraocular Lens Material and Eye Axial Length on Posterior Capsule Opacification Dynamic Rate and Frequency
title_full_unstemmed Influence of Intraocular Lens Material and Eye Axial Length on Posterior Capsule Opacification Dynamic Rate and Frequency
title_short Influence of Intraocular Lens Material and Eye Axial Length on Posterior Capsule Opacification Dynamic Rate and Frequency
title_sort influence of intraocular lens material and eye axial length on posterior capsule opacification dynamic rate and frequency
topic факоэмульсификация
иол
артифакия
вторичная катаракта
миопия
url https://www.ophthalmojournal.com/opht/article/view/334
work_keys_str_mv AT gvsorokoletov influenceofintraocularlensmaterialandeyeaxiallengthonposteriorcapsuleopacificationdynamicrateandfrequency
AT vkzuev influenceofintraocularlensmaterialandeyeaxiallengthonposteriorcapsuleopacificationdynamicrateandfrequency
AT jrtumanjan influenceofintraocularlensmaterialandeyeaxiallengthonposteriorcapsuleopacificationdynamicrateandfrequency
AT fmgerlyak influenceofintraocularlensmaterialandeyeaxiallengthonposteriorcapsuleopacificationdynamicrateandfrequency
AT vnveshhikova influenceofintraocularlensmaterialandeyeaxiallengthonposteriorcapsuleopacificationdynamicrateandfrequency
AT anbessarabov influenceofintraocularlensmaterialandeyeaxiallengthonposteriorcapsuleopacificationdynamicrateandfrequency
AT lvagdarova influenceofintraocularlensmaterialandeyeaxiallengthonposteriorcapsuleopacificationdynamicrateandfrequency