TY - GEN
T1 - Investigating the 3D cardiomyocyte arrangement in human interventricular septum sample using X-ray phase-contrast microtomography
AU - Li, Wenfeng
AU - Li, Zhaorui
AU - Du, Yongbin
AU - Wang, Shunli
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - A good knowledge of the three-dimensional cardiomyocyte arrangement in interventricular septum is crucial for understanding both ventricle's functions. In this preliminary study, we investigate the local myocardial architecture in a human interventricular septum sample imaged by X-ray phase-contrast micro-tomography. This imaging modality allows us to visualize the complex structure of myocardial tissue at high resolution. We first cut the reconstruction data into sub-volume of 32×32×32 voxels (i.e. 112×112×112 μm3) in size, and compute the elevation angle of the local cardiomyocyte using Fast Fourier Transform based method. Then, we describe the distribution of cardiomyocyte elevation angle in the sample globally and locally. We note that, in part of regions, the running of cardiomyocyte aggregates is winding. Though the function of this specific cardiomyocyte arrangement manner is unclear, its existence is inspiring and merits further investigation.
AB - A good knowledge of the three-dimensional cardiomyocyte arrangement in interventricular septum is crucial for understanding both ventricle's functions. In this preliminary study, we investigate the local myocardial architecture in a human interventricular septum sample imaged by X-ray phase-contrast micro-tomography. This imaging modality allows us to visualize the complex structure of myocardial tissue at high resolution. We first cut the reconstruction data into sub-volume of 32×32×32 voxels (i.e. 112×112×112 μm3) in size, and compute the elevation angle of the local cardiomyocyte using Fast Fourier Transform based method. Then, we describe the distribution of cardiomyocyte elevation angle in the sample globally and locally. We note that, in part of regions, the running of cardiomyocyte aggregates is winding. Though the function of this specific cardiomyocyte arrangement manner is unclear, its existence is inspiring and merits further investigation.
KW - X-ray phase-contrast microtomography
KW - elevation angle
KW - human heart
KW - interventricular septum
KW - local cardiomyocyte arrangement
UR - https://www.scopus.com/pages/publications/85218344990
U2 - 10.1109/ICSP62129.2024.10846596
DO - 10.1109/ICSP62129.2024.10846596
M3 - 会议稿件
AN - SCOPUS:85218344990
T3 - International Conference on Signal Processing Proceedings, ICSP
SP - 647
EP - 650
BT - ICSP 2024 - 2024 IEEE 17th International Conference on Signal Processing, Proceedings
A2 - Baozong, Yuan
A2 - Qiuqi, Ruan
A2 - Shikui, Wei
A2 - Gaoyun, An
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 17th IEEE International Conference on Signal Processing, ICSP 2024
Y2 - 28 October 2024 through 31 October 2024
ER -