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基于光学相干断层扫描技术的活体鸡胚四维心脏成像,使用阻抗信号作为采集后同步的门控信号。

OCT based four-dimensional cardiac imaging of a living chick embryo using an impedance signal as a gating for post-acquisition synchronization.

作者信息

Ma Yushu, Li Chuanxi, Jiang Huiwen, Zhao Yuqian, Liu Jian, Yu Yao, Wang Yi, Shi Wenbo, Ma Zhenhe

机构信息

School of Computer Science and Engineering, Northeastern University, No. 311 Wenhua Road, Shenyang 110169, China.

Hangzhou Xinrui Medical Technology Co., Ltd, No. 22 Xinyan Road, Hangzhou 311100, China.

出版信息

Biomed Opt Express. 2022 Nov 22;13(12):6595-6609. doi: 10.1364/BOE.476254. eCollection 2022 Dec 1.

Abstract

Optical coherence tomography (OCT) is a non-invasive imaging modality with high spatial resolution suitable for early embryonic heart imaging. However, the most commonly used OCT systems cannot provide direct 4-D imaging due to acquisition speed limitations. We proposed a retrospective gating 4-D reconstruction method based on spectral domain OCT. A special circuit was designed to measure the impedance change of chick embryos in response to the heart beating. The impedance signal was acquired simultaneously with the OCT B-scan image sequence at several different locations along the heart. The impedance signal was used as a gating for 4-D reconstruction. The reconstruction algorithm includes cardiac period calculation, interpolation from multi-cardiac cycle image sequence into one cardiac cycle, and cardiac phase synchronization among the different locations of the heart. The synchronism of the impedance signal change with the heartbeat was verified. Using the proposed method, we reconstructed the cardiac outflow tract (OFT) of chick embryos at an early stage of development (Hamburger-Hamilton stage 18). We showed that the reconstructed 4-D images correctly captured the dynamics of the OFT wall motion.

摘要

光学相干断层扫描(OCT)是一种具有高空间分辨率的非侵入性成像方式,适用于早期胚胎心脏成像。然而,由于采集速度的限制,最常用的OCT系统无法提供直接的四维成像。我们提出了一种基于谱域OCT的回顾性门控四维重建方法。设计了一个特殊电路来测量鸡胚响应心跳时的阻抗变化。在心脏沿线的几个不同位置,阻抗信号与OCT B扫描图像序列同时采集。阻抗信号用作四维重建的门控信号。重建算法包括心动周期计算、将多心动周期图像序列插值到一个心动周期以及心脏不同位置之间的心相位同步。验证了阻抗信号变化与心跳的同步性。使用所提出的方法,我们重建了发育早期(汉堡-汉密尔顿第18阶段)鸡胚的心脏流出道(OFT)。我们表明,重建的四维图像正确地捕捉到了OFT壁运动的动态。

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