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使用光学多频时间谐波弹性成像技术对软生物组织进行具有微米分辨率的快速硬度映射。

Rapid Stiffness Mapping in Soft Biologic Tissues With Micrometer Resolution Using Optical Multifrequency Time-Harmonic Elastography.

作者信息

Jordan Jakob, Jaitner Noah, Meyer Tom, Bramè Luca, Ghrayeb Mnar, Köppke Julia, Böhm Oliver, Chandia Stefan Klemmer, Zaburdaev Vasily, Chai Liraz, Tzschätzsch Heiko, Mura Joaquin, Braun Jürgen, Hagemann Anja I H, Sack Ingolf

机构信息

Department of Radiology, Charité - Universitätsmedizin Berlin, 10117, Berlin, Germany.

Department of Hematology/Oncology, Charité - Universitätsmedizin Berlin, 10117, Berlin, Germany.

出版信息

Adv Sci (Weinh). 2025 Feb;12(8):e2410473. doi: 10.1002/advs.202410473. Epub 2024 Dec 16.

Abstract

Rapid mapping of the mechanical properties of soft biological tissues from light microscopy to macroscopic imaging can transform fundamental biophysical research by providing clinical biomarkers to complement in vivo elastography. This work introduces superfast optical multifrequency time-harmonic elastography (OMTHE) to remotely encode surface and subsurface shear wave fields for generating maps of tissue stiffness with unprecedented detail resolution. OMTHE rigorously exploits the space-time propagation characteristics of multifrequency time-harmonic waves to address current limitations of biomechanical imaging and elastography. Key solutions are presented for stimulation, wave decoding, and stiffness reconstruction of shear waves at multiple harmonic frequencies, all tuned to provide consistent stiffness values across resolutions from microns to millimeters. OMTHE's versatility is demonstrated by simulations, phantoms, Bacillus subtilis biofilms, zebrafish embryos and adult zebrafish, reflecting the diversity of biological systems from a mechanics perspective. By zooming in on stiffness details from coarse to finer scales, OMTHE has the potential to advance mechanobiology and offers a way to perform biomechanics-based tissue histology that consistently matches in vivo time-harmonic elastography in patients.

摘要

从光学显微镜到宏观成像对软生物组织力学特性进行快速映射,可通过提供临床生物标志物来补充体内弹性成像,从而改变基础生物物理研究。这项工作引入了超快光学多频时间谐波弹性成像(OMTHE),以远程编码表面和亚表面剪切波场,从而以前所未有的细节分辨率生成组织硬度图。OMTHE严格利用多频时间谐波波的时空传播特性来解决生物力学成像和弹性成像的当前局限性。提出了用于多谐波频率下剪切波的刺激、波解码和硬度重建的关键解决方案,所有这些都经过调整,以在从微米到毫米的分辨率范围内提供一致的硬度值。通过模拟、模型、枯草芽孢杆菌生物膜、斑马鱼胚胎和成年斑马鱼证明了OMTHE的多功能性,从力学角度反映了生物系统的多样性。通过从粗到细的尺度放大硬度细节,OMTHE有潜力推动机械生物学发展,并提供一种执行基于生物力学的组织组织学的方法,该方法与患者体内时间谐波弹性成像始终匹配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bdf/11848577/f5e7db617051/ADVS-12-2410473-g001.jpg

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