Köstli K P, Frenz M, Bebie H, Weber H P
Institute of Applied Physics, University of Bern, Switzerland.
Phys Med Biol. 2001 Jul;46(7):1863-72. doi: 10.1088/0031-9155/46/7/309.
In medical imaging different techniques have been developed to gain information from inside a tissue. Optoacoustics is a method to generate tomography pictures of tissue using Q-switched laser pulses. Due to thermal and pressure confinement, a short light pulse generates a pressure distribution inside tissue, which mirrors absorbing structures and can be measured outside the tissue. Using a temporal back-projection method, the pressure distribution measured on the tissue surface allows us to gain a tomography picture of the absorbing structures inside tissue. This study presents a novel computational algorithm, which, at least in principle, yields an exact reconstruction of the absorbing structures in three-dimensional space inside the tissue. The reconstruction is based on 2D pressure distributions captured outside at different delay times. The algorithm is tested in a simulation and back-projection of pressure transients of a small absorber and a single point source.
在医学成像领域,已经开发出了不同的技术来从组织内部获取信息。光声成像技术是一种利用调Q激光脉冲生成组织断层图像的方法。由于热约束和压力约束,短光脉冲会在组织内部产生压力分布,该压力分布反映了吸收结构,并且可以在组织外部进行测量。使用时间反投影方法,在组织表面测量到的压力分布使我们能够获得组织内部吸收结构的断层图像。本研究提出了一种新颖的计算算法,至少在原理上,该算法能够精确重建组织内部三维空间中的吸收结构。重建基于在不同延迟时间在外部捕获的二维压力分布。该算法在对小吸收体和单点源的压力瞬变进行模拟和反投影中进行了测试。