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使用分层相衬断层扫描(HiP-CT)对健康和疾病状态下的成人心脏进行多维度分析。

Multidimensional Analysis of the Adult Human Heart in Health and Disease using Hierarchical Phase-Contrast Tomography (HiP-CT).

作者信息

Brunet J, Cook A C, Walsh C L, Cranley J, Tafforeau P, Engel K, Berruyer C, O'Leary E Burke, Bellier A, Torii R, Werlein C, Jonigk D D, Ackermann M, Dollman K, Lee P D

机构信息

Department of Mechanical Engineering, University College London, London, UK.

European Synchrotron Radiation Facility, Grenoble, France.

出版信息

bioRxiv. 2023 Oct 10:2023.10.09.561474. doi: 10.1101/2023.10.09.561474.

Abstract

Cardiovascular diseases (CVDs) are a leading cause of death worldwide. Current clinical imaging modalities provide resolution adequate for diagnosis but are unable to provide detail of structural changes in the heart, across length-scales, necessary for understanding underlying pathophysiology of disease. Hierarchical Phase-Contrast Tomography (HiP-CT), using new (4) generation synchrotron sources, potentially overcomes this limitation, allowing micron resolution imaging of intact adult organs with unprecedented detail. In this proof of principle study (n=2), we show the utility of HiP-CT to image whole adult human hearts ex-vivo: one 'control' without known cardiac disease and one with multiple known cardiopulmonary pathologies. The resulting multiscale imaging was able to demonstrate exemplars of anatomy in each cardiac segment along with novel findings in the cardiac conduction system, from gross (20 um/voxel) to cellular scale (2.2 um/voxel), non-destructively, thereby bridging the gap between macroscopic and microscopic investigations. We propose that the technique represents a significant step in virtual autopsy methods for studying structural heart disease, facilitating research into abnormalities across scales and age-groups. It opens up possibilities for understanding and treating disease; and provides a cardiac 'blueprint' with potential for in-silico simulation, device design, virtual surgical training, and bioengineered heart in the future.

摘要

心血管疾病(CVDs)是全球主要的死亡原因。当前的临床成像方式提供的分辨率足以用于诊断,但无法提供心脏在不同长度尺度上结构变化的细节,而这些细节对于理解疾病的潜在病理生理学是必要的。使用新一代同步加速器源的分层相衬断层扫描(HiP-CT)有可能克服这一限制,能够以前所未有的细节对完整的成年器官进行微米级分辨率成像。在这项原理验证研究(n = 2)中,我们展示了HiP-CT对离体的完整成年人心脏进行成像的效用:一个是没有已知心脏病的“对照”心脏,另一个是患有多种已知心肺疾病的心脏。所得到的多尺度成像能够在每个心脏节段展示解剖学示例以及心脏传导系统中的新发现,从大体尺度(20微米/体素)到细胞尺度(2.2微米/体素),且具有非破坏性,从而弥合了宏观和微观研究之间的差距。我们认为,该技术代表了研究结构性心脏病的虚拟尸检方法中的重要一步,有助于跨尺度和年龄组研究异常情况。它为理解和治疗疾病开辟了可能性;并提供了一个心脏“蓝图”,未来有可能用于计算机模拟、设备设计、虚拟手术训练和生物工程心脏。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49b4/10592740/93b1f8f5a06e/nihpp-2023.10.09.561474v1-f0001.jpg

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