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Alterations of retinal thickness measured by optical coherence tomography correlate with neurophysiological measures in diabetic polyneuropathy

AIMS/INTRODUCTION: Diabetic polyneuropathy (DPN) and diabetic retinopathy (DR) are traditionally regarded as microvascular complications. However, these complications may share similar neurodegenerative pathologies. Here we evaluate the correlations in the severity of DPN and changes in the thicknes...

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Autores principales: Yamada, Yuichiro, Himeno, Tatsuhito, Tsuboi, Kotaro, Shibata, Yuka, Kawai, Miyuka, Asada‐Yamada, Yuriko, Hayashi, Yusuke, Asano‐Hayami, Emi, Hayami, Tomohide, Ishida, Yuichiro, Ejima, Yohei, Motegi, Mikio, Asano, Saeko, Kato, Makoto, Nagao, Eriko, Nakai‐Shimoda, Hiromi, Ishikawa, Takahiro, Morishita, Yoshiaki, Kondo, Masaki, Tsunekawa, Shin, Kato, Yoshiro, Nakayama, Takayuki, Kamei, Motohiro, Nakamura, Jiro, Kamiya, Hideki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8354512/
https://www.ncbi.nlm.nih.gov/pubmed/33300294
http://dx.doi.org/10.1111/jdi.13476
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author Yamada, Yuichiro
Himeno, Tatsuhito
Tsuboi, Kotaro
Shibata, Yuka
Kawai, Miyuka
Asada‐Yamada, Yuriko
Hayashi, Yusuke
Asano‐Hayami, Emi
Hayami, Tomohide
Ishida, Yuichiro
Ejima, Yohei
Motegi, Mikio
Asano, Saeko
Kato, Makoto
Nagao, Eriko
Nakai‐Shimoda, Hiromi
Ishikawa, Takahiro
Morishita, Yoshiaki
Kondo, Masaki
Tsunekawa, Shin
Kato, Yoshiro
Nakayama, Takayuki
Kamei, Motohiro
Nakamura, Jiro
Kamiya, Hideki
author_facet Yamada, Yuichiro
Himeno, Tatsuhito
Tsuboi, Kotaro
Shibata, Yuka
Kawai, Miyuka
Asada‐Yamada, Yuriko
Hayashi, Yusuke
Asano‐Hayami, Emi
Hayami, Tomohide
Ishida, Yuichiro
Ejima, Yohei
Motegi, Mikio
Asano, Saeko
Kato, Makoto
Nagao, Eriko
Nakai‐Shimoda, Hiromi
Ishikawa, Takahiro
Morishita, Yoshiaki
Kondo, Masaki
Tsunekawa, Shin
Kato, Yoshiro
Nakayama, Takayuki
Kamei, Motohiro
Nakamura, Jiro
Kamiya, Hideki
author_sort Yamada, Yuichiro
collection PubMed
description AIMS/INTRODUCTION: Diabetic polyneuropathy (DPN) and diabetic retinopathy (DR) are traditionally regarded as microvascular complications. However, these complications may share similar neurodegenerative pathologies. Here we evaluate the correlations in the severity of DPN and changes in the thickness of neuroretinal layers to elucidate whether these complications exist at similar stages of progression. MATERIALS AND METHODS: A total of 43 patients with type 2 diabetes underwent a nerve conduction study (NCS), a macular optical coherence tomography, and a carotid artery ultrasound scan. Diabetic polyneuropathy was classified according to Baba’s classification using NCS. The retina was automatically segmented into four layers; ganglion cell complex (GCC), inner nuclear layer/outer plexiform layer (INL/OPL), outer nuclear layer/photoreceptor inner and outer segments, and retinal pigment epithelium (RPE). The thickness of each retinal layer was separately analyzed for the fovea and the parafovea. RESULTS: Fourteen patients were classified as having moderate to severe diabetic polyneuropathy. The thicknesses of the foveal and parafoveal INL/OPL increased in patients with diabetic polyneuropathy compared with patients without. The thickness of the parafoveal retinal pigment epithelium decreased in patients with diabetic polyneuropathy. The thinning of parafoveal ganglion cell complex and foveal and parafoveal retinal pigment epithelium were positively correlated with deterioration of nerve functions in the nerve conduction study, but the thickening of INL/OPL was positively correlated with the nerve function deterioration. The thinning of parafoveal ganglion cell complex and foveal retinal pigment epithelium were positively correlated with the thickening of the carotid intima‐media. CONCLUSIONS: Depending on the progression of diabetic polyneuropathy, the ganglion cell complex and retinal pigment epithelium became thinner and the INL/OPL became thicker. These retinal changes might be noteworthy for pathological investigations and for the assessment of diabetic polyneuropathy and diabetic retinopathy.
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spelling pubmed-83545122021-08-15 Alterations of retinal thickness measured by optical coherence tomography correlate with neurophysiological measures in diabetic polyneuropathy Yamada, Yuichiro Himeno, Tatsuhito Tsuboi, Kotaro Shibata, Yuka Kawai, Miyuka Asada‐Yamada, Yuriko Hayashi, Yusuke Asano‐Hayami, Emi Hayami, Tomohide Ishida, Yuichiro Ejima, Yohei Motegi, Mikio Asano, Saeko Kato, Makoto Nagao, Eriko Nakai‐Shimoda, Hiromi Ishikawa, Takahiro Morishita, Yoshiaki Kondo, Masaki Tsunekawa, Shin Kato, Yoshiro Nakayama, Takayuki Kamei, Motohiro Nakamura, Jiro Kamiya, Hideki J Diabetes Investig Articles AIMS/INTRODUCTION: Diabetic polyneuropathy (DPN) and diabetic retinopathy (DR) are traditionally regarded as microvascular complications. However, these complications may share similar neurodegenerative pathologies. Here we evaluate the correlations in the severity of DPN and changes in the thickness of neuroretinal layers to elucidate whether these complications exist at similar stages of progression. MATERIALS AND METHODS: A total of 43 patients with type 2 diabetes underwent a nerve conduction study (NCS), a macular optical coherence tomography, and a carotid artery ultrasound scan. Diabetic polyneuropathy was classified according to Baba’s classification using NCS. The retina was automatically segmented into four layers; ganglion cell complex (GCC), inner nuclear layer/outer plexiform layer (INL/OPL), outer nuclear layer/photoreceptor inner and outer segments, and retinal pigment epithelium (RPE). The thickness of each retinal layer was separately analyzed for the fovea and the parafovea. RESULTS: Fourteen patients were classified as having moderate to severe diabetic polyneuropathy. The thicknesses of the foveal and parafoveal INL/OPL increased in patients with diabetic polyneuropathy compared with patients without. The thickness of the parafoveal retinal pigment epithelium decreased in patients with diabetic polyneuropathy. The thinning of parafoveal ganglion cell complex and foveal and parafoveal retinal pigment epithelium were positively correlated with deterioration of nerve functions in the nerve conduction study, but the thickening of INL/OPL was positively correlated with the nerve function deterioration. The thinning of parafoveal ganglion cell complex and foveal retinal pigment epithelium were positively correlated with the thickening of the carotid intima‐media. CONCLUSIONS: Depending on the progression of diabetic polyneuropathy, the ganglion cell complex and retinal pigment epithelium became thinner and the INL/OPL became thicker. These retinal changes might be noteworthy for pathological investigations and for the assessment of diabetic polyneuropathy and diabetic retinopathy. John Wiley and Sons Inc. 2020-12-30 2021-08 /pmc/articles/PMC8354512/ /pubmed/33300294 http://dx.doi.org/10.1111/jdi.13476 Text en © 2020 The Authors. Journal of Diabetes Investigation published by Asian Association for the Study of Diabetes (AASD) and John Wiley & Sons Australia, Ltd https://creativecommons.org/licenses/by-nc/3.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/3.0/ (https://creativecommons.org/licenses/by-nc/3.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Articles
Yamada, Yuichiro
Himeno, Tatsuhito
Tsuboi, Kotaro
Shibata, Yuka
Kawai, Miyuka
Asada‐Yamada, Yuriko
Hayashi, Yusuke
Asano‐Hayami, Emi
Hayami, Tomohide
Ishida, Yuichiro
Ejima, Yohei
Motegi, Mikio
Asano, Saeko
Kato, Makoto
Nagao, Eriko
Nakai‐Shimoda, Hiromi
Ishikawa, Takahiro
Morishita, Yoshiaki
Kondo, Masaki
Tsunekawa, Shin
Kato, Yoshiro
Nakayama, Takayuki
Kamei, Motohiro
Nakamura, Jiro
Kamiya, Hideki
Alterations of retinal thickness measured by optical coherence tomography correlate with neurophysiological measures in diabetic polyneuropathy
title Alterations of retinal thickness measured by optical coherence tomography correlate with neurophysiological measures in diabetic polyneuropathy
title_full Alterations of retinal thickness measured by optical coherence tomography correlate with neurophysiological measures in diabetic polyneuropathy
title_fullStr Alterations of retinal thickness measured by optical coherence tomography correlate with neurophysiological measures in diabetic polyneuropathy
title_full_unstemmed Alterations of retinal thickness measured by optical coherence tomography correlate with neurophysiological measures in diabetic polyneuropathy
title_short Alterations of retinal thickness measured by optical coherence tomography correlate with neurophysiological measures in diabetic polyneuropathy
title_sort alterations of retinal thickness measured by optical coherence tomography correlate with neurophysiological measures in diabetic polyneuropathy
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8354512/
https://www.ncbi.nlm.nih.gov/pubmed/33300294
http://dx.doi.org/10.1111/jdi.13476
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