Comsa D C, Farrell T J, Patterson M S
Juravinski Cancer Centre and McMaster University, 699 Concession Street, Hamilton, ON L8V 5C2, Canada.
Phys Med Biol. 2007 Sep 7;52(17):5415-28. doi: 10.1088/0031-9155/52/17/021. Epub 2007 Aug 21.
The performance of a simple approach for the in vivo reconstruction of bioluminescent point sources in small animals was evaluated. The method uses the diffusion approximation as a forward model of light propagation from a point source in a homogeneous tissue to find the source depth and power. The optical properties of the tissue are estimated from reflectance images obtained at the same location on the animal. It was possible to localize point sources implanted in mice, 2-8 mm deep, to within 1 mm. The same performance was achieved for sources implanted in rat abdomens when the effects of tissue surface curvature were eliminated. The source power was reconstructed within a factor of 2 of the true power for the given range of depths, even though the apparent brightness of the source varied by several orders of magnitude. The study also showed that reconstructions using optical properties measured in situ were superior to those based on data in the literature.
对一种用于小动物体内生物发光点源重建的简单方法的性能进行了评估。该方法使用扩散近似作为光从均匀组织中的点源传播的正向模型,以找到源深度和功率。组织的光学特性是根据在动物同一位置获得的反射图像估计的。能够将植入小鼠体内2 - 8毫米深的点源定位在1毫米范围内。当消除组织表面曲率的影响时,对于植入大鼠腹部的源也能达到相同的性能。即使源的表观亮度变化了几个数量级,在给定深度范围内,源功率的重建值与真实功率相差不超过2倍。该研究还表明,使用原位测量的光学特性进行的重建优于基于文献数据的重建。