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一种用于人类心脏电生理-形态融合的复合可视化方法。

A composite visualization method for electrophysiology-morphous merging of human heart.

作者信息

Yang Fei, Zhang Lei, Lu Weigang, Zhang Yue, Zuo Wangmeng, Wang Kuanquan, Zhang Henggui

机构信息

School of Mechanical, Electrical & Information Engineering, Shandong University, Weihai, China.

School of Art and Design, Harbin University, Harbin, China.

出版信息

Biomed Eng Online. 2017 Jun 8;16(1):70. doi: 10.1186/s12938-017-0368-1.

Abstract

BACKGROUND

Electrophysiological behavior is of great importance for analyzing the cardiac functional mechanism under cardiac physiological and pathological condition. Due to the complexity of cardiac structure and biophysiological function, visualization of a cardiac electrophysiological model compositively is still a challenge. The lack of either modality of the whole organ structure or cardiac electrophysiological behaviors makes analysis of the intricate mechanisms of cardiac dynamic function a difficult task. This study aims at exploring 3D conduction of stimulus and electrical excitation reactivity on the level of organ with the authentic fine cardiac anatomy structure.

METHODS

In this paper, a cardiac electrical excitation propagation model is established based on the human cardiac cross-sectional data to explore detailed cardiac electrical activities. A novel biophysical merging visualization method is then presented for biophysical integration of cardiac anatomy and electrophysiological properties in the form of the merging optical model, which provides the corresponding position, spatial relationship and the whole process in 3D space with the context of anatomical structure for representing the biophysical detailed electrophysiological activity.

RESULTS

The visualization result present the action potential propagation of the left ventricle within the excitation cycle with the authentic fine cardiac organ anatomy. In the visualized images, all vital organs are identified and distinguished without ambiguity. The three dimensional spatial position, relation and the process of cardiac excitation conduction and re-entry propagation in the anatomical structure during the phase of depolarization and repolarization is also shown in the result images, which exhibits the performance of a more detailed biophysical understanding of the electrophysiological kinetics of human heart in vivo.

CONCLUSIONS

Results suggest that the proposed merging optical model can merge cardiac electrophysiological activity with the anatomy structure. By specifying the respective opacity for the cardiac anatomy structure and the electrophysiological model in the merging attenuation function, the visualized images can provide an in-depth insight into the biophysical detailed cardiac functioning phenomena and the corresponding electrophysiological behavior mechanism, which is helpful for further speculating cardiac physiological and pathological responses and is fundamental to the cardiac research and clinical diagnoses.

摘要

背景

电生理行为对于分析心脏生理和病理状态下的心脏功能机制至关重要。由于心脏结构和生物生理功能的复杂性,综合可视化心脏电生理模型仍然是一项挑战。缺乏全器官结构或心脏电生理行为的任何一种模态都使得分析心脏动态功能的复杂机制成为一项艰巨任务。本研究旨在利用真实精细的心脏解剖结构,探索器官水平上刺激的三维传导和电兴奋反应性。

方法

本文基于人体心脏横截面数据建立了心脏电兴奋传播模型,以探索详细的心脏电活动。然后提出了一种新颖的生物物理融合可视化方法,以融合光学模型的形式对心脏解剖结构和电生理特性进行生物物理整合,该方法在解剖结构背景下提供三维空间中的相应位置、空间关系和全过程,以表示生物物理详细的电生理活动。

结果

可视化结果呈现了在兴奋周期内左心室动作电位的传播以及真实精细的心脏器官解剖结构。在可视化图像中,所有重要器官都能被清晰识别和区分。结果图像还显示了解剖结构中去极化和复极化阶段心脏兴奋传导和折返传播的三维空间位置、关系和过程,这展示了对体内人体心脏电生理动力学更详细的生物物理理解。

结论

结果表明,所提出的融合光学模型可以将心脏电生理活动与解剖结构融合。通过在融合衰减函数中为心脏解剖结构和电生理模型指定各自的不透明度,可视化图像可以深入洞察生物物理详细的心脏功能现象和相应的电生理行为机制,这有助于进一步推测心脏生理和病理反应,是心脏研究和临床诊断的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c2e/5465514/ab49192c7a3b/12938_2017_368_Fig1_HTML.jpg

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