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Purkinje Fibers in Canine False Tendons: New Anatomical and Electrophysiological Findings

INTRODUCTION: Purkinje system and false tendons (FTs) are related to ventricular arrhythmia, but the association between Purkinje fibers and FTs is not clear. This study investigated the associations of anatomical and electrophysiological characteristics between Purkinje fibers and FTs. METHODS AND...

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Autores principales: Liang, Ming, Wang, Zulu, Li, Yi, Liang, Yanchun, Zhang, Yuji, Rong, Jingjing, Lv, Yang, Zhang, Qi, Yang, Guitang, Sun, Mingyu, Wang, Junqi, Li, Sainan, Wang, Xunzhang, Han, Yaling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7312736/
https://www.ncbi.nlm.nih.gov/pubmed/32612855
http://dx.doi.org/10.1155/2020/8156928
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author Liang, Ming
Wang, Zulu
Li, Yi
Liang, Yanchun
Zhang, Yuji
Rong, Jingjing
Lv, Yang
Zhang, Qi
Yang, Guitang
Sun, Mingyu
Wang, Junqi
Li, Sainan
Wang, Xunzhang
Han, Yaling
author_facet Liang, Ming
Wang, Zulu
Li, Yi
Liang, Yanchun
Zhang, Yuji
Rong, Jingjing
Lv, Yang
Zhang, Qi
Yang, Guitang
Sun, Mingyu
Wang, Junqi
Li, Sainan
Wang, Xunzhang
Han, Yaling
author_sort Liang, Ming
collection PubMed
description INTRODUCTION: Purkinje system and false tendons (FTs) are related to ventricular arrhythmia, but the association between Purkinje fibers and FTs is not clear. This study investigated the associations of anatomical and electrophysiological characteristics between Purkinje fibers and FTs. METHODS AND RESULTS: We optimized the protocol of Lugol's iodine solution staining of Purkinje fibers to study the anatomical structure and originated a novel electrophysiological mapping method, named the direct visual mapping (DVM) method, to study the electrophysiological characteristics. By using the above-mentioned innovations in 12 dogs, we found the following. (1) There was no Purkinje fiber found 0.5 cm–1.0 cm below the valve annulus or on the leaflets or chordae tendineae of the mitral valve or adjacent to the top 1/3 of the papillary muscle. (2) Purkinje fibers existed in all FTs, including smaller and tiny FTs. (3) The Purkinje fibers contained in the FTs extended from the proximal to the distal end, and their electrophysiological characteristics were similar to the fibers on the endocardium, including anterograde, retrograde, and decremental conduction and automaticity. CONCLUSIONS: Purkinje fibers are commonly found in FTs. The electrophysiological characteristics of the Purkinje fibers contained in FTs are similar to the fibers on the endocardium. FTs might have an anatomical and electrophysiological basis for ventricular arrhythmia.
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spelling pubmed-73127362020-06-30 Purkinje Fibers in Canine False Tendons: New Anatomical and Electrophysiological Findings Liang, Ming Wang, Zulu Li, Yi Liang, Yanchun Zhang, Yuji Rong, Jingjing Lv, Yang Zhang, Qi Yang, Guitang Sun, Mingyu Wang, Junqi Li, Sainan Wang, Xunzhang Han, Yaling Cardiol Res Pract Research Article INTRODUCTION: Purkinje system and false tendons (FTs) are related to ventricular arrhythmia, but the association between Purkinje fibers and FTs is not clear. This study investigated the associations of anatomical and electrophysiological characteristics between Purkinje fibers and FTs. METHODS AND RESULTS: We optimized the protocol of Lugol's iodine solution staining of Purkinje fibers to study the anatomical structure and originated a novel electrophysiological mapping method, named the direct visual mapping (DVM) method, to study the electrophysiological characteristics. By using the above-mentioned innovations in 12 dogs, we found the following. (1) There was no Purkinje fiber found 0.5 cm–1.0 cm below the valve annulus or on the leaflets or chordae tendineae of the mitral valve or adjacent to the top 1/3 of the papillary muscle. (2) Purkinje fibers existed in all FTs, including smaller and tiny FTs. (3) The Purkinje fibers contained in the FTs extended from the proximal to the distal end, and their electrophysiological characteristics were similar to the fibers on the endocardium, including anterograde, retrograde, and decremental conduction and automaticity. CONCLUSIONS: Purkinje fibers are commonly found in FTs. The electrophysiological characteristics of the Purkinje fibers contained in FTs are similar to the fibers on the endocardium. FTs might have an anatomical and electrophysiological basis for ventricular arrhythmia. Hindawi 2020-06-15 /pmc/articles/PMC7312736/ /pubmed/32612855 http://dx.doi.org/10.1155/2020/8156928 Text en Copyright © 2020 Ming Liang et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Liang, Ming
Wang, Zulu
Li, Yi
Liang, Yanchun
Zhang, Yuji
Rong, Jingjing
Lv, Yang
Zhang, Qi
Yang, Guitang
Sun, Mingyu
Wang, Junqi
Li, Sainan
Wang, Xunzhang
Han, Yaling
Purkinje Fibers in Canine False Tendons: New Anatomical and Electrophysiological Findings
title Purkinje Fibers in Canine False Tendons: New Anatomical and Electrophysiological Findings
title_full Purkinje Fibers in Canine False Tendons: New Anatomical and Electrophysiological Findings
title_fullStr Purkinje Fibers in Canine False Tendons: New Anatomical and Electrophysiological Findings
title_full_unstemmed Purkinje Fibers in Canine False Tendons: New Anatomical and Electrophysiological Findings
title_short Purkinje Fibers in Canine False Tendons: New Anatomical and Electrophysiological Findings
title_sort purkinje fibers in canine false tendons: new anatomical and electrophysiological findings
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7312736/
https://www.ncbi.nlm.nih.gov/pubmed/32612855
http://dx.doi.org/10.1155/2020/8156928
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