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Three-dimensional Cardiomyocytes Structure Revealed By Diffusion Tensor Imaging and Its Validation Using a Tissue-Clearing Technique.


ABSTRACT: We characterized the microstructural response of the myocardium to cardiovascular disease using diffusion tensor imaging (DTI) and performed histological validation by intact, un-sectioned, three-dimensional (3D) histology using a tissue-clearing technique. The approach was validated in normal (n?=?7) and ischemic (n?=?8) heart failure model mice. Whole heart fiber tracking using DTI in fixed ex-vivo mouse hearts was performed, and the hearts were processed with the tissue-clearing technique. Cardiomyocytes orientation was quantified on both DTI and 3D histology. Helix angle (HA) and global HA transmurality (HAT) were calculated, and the DTI findings were confirmed with 3D histology. Global HAT was significantly reduced in the ischemic group (DTI: 0.79?±?0.13°/% transmural depth [TD] and 3D histology: 0.84?±?0.26°/%TD) compared with controls (DTI: 1.31?±?0.20°/%TD and 3D histology: 1.36?±?0.27°/%TD, all p?

SUBMITTER: Lee SE 

PROVIDER: S-EPMC5923209 | biostudies-literature | 2018 Apr

REPOSITORIES: biostudies-literature

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Three-dimensional Cardiomyocytes Structure Revealed By Diffusion Tensor Imaging and Its Validation Using a Tissue-Clearing Technique.

Lee Sang-Eun SE   Nguyen Christopher C   Yoon Jongjin J   Chang Hyuk-Jae HJ   Kim Sekeun S   Kim Chul Hoon CH   Li Debiao D  

Scientific reports 20180427 1


We characterized the microstructural response of the myocardium to cardiovascular disease using diffusion tensor imaging (DTI) and performed histological validation by intact, un-sectioned, three-dimensional (3D) histology using a tissue-clearing technique. The approach was validated in normal (n = 7) and ischemic (n = 8) heart failure model mice. Whole heart fiber tracking using DTI in fixed ex-vivo mouse hearts was performed, and the hearts were processed with the tissue-clearing technique. Ca  ...[more]

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