O'Leary M A, Boas D A, Li X D, Chance B, Yodh A G
Opt Lett. 1996 Jan 15;21(2):158-60. doi: 10.1364/ol.21.000158.
The lifetime of a f luorophore generally varies in different environments, making the molecule a sensitive indicator of tissue oxygenation, pH, and glucose. However, lifetime measurements are complicated when the f luorophore is embedded in an optically thick, highly scattering medium such as human tissue. We formulate the inverse problem for f luorescence lifetime tomography using diffuse photon density waves, and we demonstrate the technique by deriving spatial images of heterogeneous f luorophore distribution and lifetime, using simulated measurements in heterogeneous turbid media.
荧光团的寿命通常在不同环境中有所变化,这使得该分子成为组织氧合、pH值和葡萄糖的敏感指标。然而,当荧光团嵌入诸如人体组织这样光学厚度大、高度散射的介质中时,寿命测量就变得复杂了。我们利用扩散光子密度波来阐述荧光寿命断层成像的逆问题,并通过在异质浑浊介质中进行模拟测量,推导异质荧光团分布和寿命的空间图像来演示该技术。