Dalecki Diane, Hocking Denise C
Department of Biomedical Engineering, University of Rochester, 310 Goergen Hall, P.O. Box 270168, Rochester, NY, 14627, USA,
Ann Biomed Eng. 2015 Mar;43(3):747-61. doi: 10.1007/s10439-014-1158-6. Epub 2014 Oct 18.
Ultrasound is emerging as a powerful tool for developing biomaterials for regenerative medicine. Ultrasound technologies are finding wide-ranging, innovative applications for controlling the fabrication of bioengineered scaffolds, as well as for imaging and quantitatively monitoring the properties of engineered constructs both during fabrication processes and post-implantation. This review provides an overview of the biomedical applications of ultrasound for imaging and therapy, a tutorial of the physical mechanisms through which ultrasound can interact with biomaterials, and examples of how ultrasound technologies are being developed and applied for biomaterials fabrication processes, non-invasive imaging, and quantitative characterization of bioengineered scaffolds in vitro and in vivo.
超声正逐渐成为开发用于再生医学的生物材料的有力工具。超声技术在控制生物工程支架的制造方面有着广泛的创新性应用,同时也用于在制造过程中和植入后对工程构建体的特性进行成像和定量监测。本文综述了超声在生物医学成像和治疗方面的应用,介绍了超声与生物材料相互作用的物理机制,并举例说明了超声技术是如何被开发并应用于生物材料制造过程、无创成像以及体外和体内生物工程支架的定量表征的。