首页> 外文会议>Ultrasonic Imaging and Signal Processing; Progress in Biomedical Optics and Imaging; vol.7 no.33 >Functional and Morphological Ultrasonic Biomicroscopy for Tissue Engineers
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Functional and Morphological Ultrasonic Biomicroscopy for Tissue Engineers

机译:用于组织工程的功能和形态超声生物显微镜

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Tissue engineering is an interdisciplinary field that combines various aspects of engineering and life sciences and aims to develop biological substitutes to restore, repair or maintain tissue function. Currently, the ability to have quantitative functional assays of engineered tissues is limited to existing invasive methods like biopsy. Hence, an imaging tool for non-invasive and simultaneous evaluation of the anatomical and functional properties of the engineered tissue is needed. In this paper we present an advanced in-vivo imaging technology - ultrasound biomicroscopy combined with complementary photoacoustic and elasticity imaging techniques, capable of accurate visualization of both structural and functional changes in engineered tissues, sequential monitoring of tissue adaptation and/or regeneration, and possible assistance of drug delivery and treatment planning. The combined imaging at microscopic resolution was evaluated on tissue mimicking phantoms imaged with 25 MHz single element focused transducer. The results of our study demonstrate that the ultrasonic, photoacoustic and elasticity images synergistically complement each other in detecting features otherwise imperceptible using the individual techniques. Finally, we illustrate the feasibility of the combined ultrasound, photoacoustic and elasticity imaging techniques in accurately assessing the morphological and functional changes occurring in engineered tissue.
机译:组织工程学是一个跨学科领域,结合了工程学和生命科学的各个方面,旨在开发生物替代品以恢复,修复或维持组织功能。当前,对工程组织进行定量功能测定的能力仅限于现有的侵入性方法,如活检。因此,需要一种用于无创且同时评估工程组织的解剖学和功能特性的成像工具。在本文中,我们介绍了一种先进的体内成像技术-超声生物显微镜与互补的光声和弹性成像技术相结合,能够准确地可视化工程组织的结构和功能变化,对组织适应性和/或再生进行顺序监测,并可能协助药物输送和治疗计划。在显微镜分辨率下的组合成像是在用25 MHz单元件聚焦换能器成像的组织模拟体模上评估的。我们的研究结果表明,超声图像,光声图像和弹性图像在检测使用其他技术无法察觉的特征时可以相互补充。最后,我们说明了超声,光声和弹性成像技术相结合在准确评估工程组织中发生的形态和功能变化方面的可行性。

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