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生物分子超声成象的出现。

The Advent of Biomolecular Ultrasound Imaging.

机构信息

Department of Imaging Physics, Delft University of Technology, Delft, The Netherlands.

Department of Imaging Physics, Delft University of Technology, Delft, The Netherlands.

出版信息

Neuroscience. 2021 Oct 15;474:122-133. doi: 10.1016/j.neuroscience.2021.03.011. Epub 2021 Mar 13.

Abstract

Ultrasound imaging is one of the most widely used modalities in clinical practice, revealing human prenatal development but also arterial function in the adult brain. Ultrasound waves travel deep within soft biological tissues and provide information about the motion and mechanical properties of internal organs. A drawback of ultrasound imaging is its limited ability to detect molecular targets due to a lack of cell-type specific acoustic contrast. To date, this limitation has been addressed by targeting synthetic ultrasound contrast agents to molecular targets. This molecular ultrasound imaging approach has proved to be successful but is restricted to the vascular space. Here, we introduce the nascent field of biomolecular ultrasound imaging, a molecular imaging approach that relies on genetically encoded acoustic biomolecules to interface ultrasound waves with cellular processes. We review ultrasound imaging applications bridging wave physics and chemical engineering with potential for deep brain imaging.

摘要

超声成像是临床实践中应用最广泛的方法之一,不仅可以揭示人类产前发育情况,还可以检测成人大脑中的动脉功能。超声波可以在柔软的生物组织内传播很深的距离,并提供关于内部器官运动和机械特性的信息。超声成像的一个缺点是由于缺乏细胞类型特异性的声对比度,其检测分子靶标的能力有限。迄今为止,这一限制已通过将合成超声对比剂靶向分子靶标来解决。这种分子超声成像方法已被证明是成功的,但仅限于血管空间。在这里,我们介绍了新兴的生物分子超声成像领域,这是一种分子成像方法,它依赖于基因编码的声学生物分子将超声波与细胞过程联系起来。我们回顾了超声成像应用,这些应用将波物理学和化学工程与深部脑成像的潜力联系起来。

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