Hielscher Andreas H
Department of Biomedical Engineering, Columbia University, ET351 Mudd Building, 500 West 120th Street, MC8904, New York, NY 10027, USA.
Curr Opin Biotechnol. 2005 Feb;16(1):79-88. doi: 10.1016/j.copbio.2005.01.002.
Diffuse optical tomography is emerging as a viable new biomedical imaging modality. Using visible and near-infrared light this technique can probe the absorption and scattering properties of biological tissues. The main applications are currently in brain, breast, limb and joint imaging; however, optical tomographic imaging of small animals is attracting increasing attention. This interest is fuelled by recent advances in the transgenic manipulation of small animals that has led to many models of human disease. In addition, an ever increasing number of optically reactive biochemical markers has become available, which allow diseases to be detected at the molecular level long before macroscopic symptoms appear. The past three years have seen an array of novel technological developments that have led to the first optical tomographic studies of small animals in the areas of cerebral ischemia and cancer.
扩散光学层析成像正成为一种可行的新型生物医学成像方式。利用可见光和近红外光,该技术能够探测生物组织的吸收和散射特性。目前其主要应用于脑部、乳腺、肢体和关节成像;然而,小动物的光学层析成像正吸引着越来越多的关注。对小动物进行转基因操作的最新进展催生了许多人类疾病模型,从而激发了人们的这种兴趣。此外,越来越多的光反应性生化标记物可供使用,这使得在宏观症状出现之前很久就能在分子水平上检测疾病。在过去三年中,一系列新颖的技术发展促成了在脑缺血和癌症领域对小动物进行的首批光学层析成像研究。