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Fluorescence-enhanced three-dimensional lifetime imaging: a phantom study

机译:荧光增强的三维寿命成像:幻像研究

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Near-infrared fluorescence optical imaging has the unique opportunity of differentiating diseased lesions from normal lesions based upon environmentally indicated changes in the lifetime of a fluorescent imaging agent. In this paper, we demonstrate three-dimensional lifetime tomography using the gradient- based penalty modified barrier function with simple bounds truncated Newton with trust region method to reconstruct lifetime maps in a clinically relevant, single breast-shaped (similar to 1081 cm(3)) phantom from point-frequency-domain photon migration measurements at 100 MHz. A reverse differentiation technique is used to calculate the gradients. This algorithm is desirable because the storage benefit from the use of the truncated Newton method and the reverse differentiation technique increase the speed. Two fluorescent contrast agents, indocyanine green and 3-3'-diethylthiatricarbocyanine iodide which differed in their fluorescence lifetimes by 0.62 ns, were used. Images of targets at a depth of 2.0 cm and target-to-background ratios (T: B) of 212: 1 and 70: 1 in fluoroscence absorption and 1:2.1 and 2.1:1 in lifetimes are successfully reconstructed. Our results show that image reconstruction is possible when there is (i) a longer lifetime in a target than the background and (ii) a shorter lifetime in a target than the background.
机译:基于环境指示的荧光显像剂寿命变化,近红外荧光光学成像具有独特的机会,可将病变病变与正常病变区分开。在本文中,我们演示了使用基于梯度的罚分修饰的势垒函数和简单边界截断牛顿法与信任区方法的三维寿命断层扫描,以重建具有临床相关性的单乳腺形状(类似于1081 cm(3))的寿命图)来自点频域光子迁移测量(100 MHz)的幻像。使用反向微分技术来计算梯度。该算法是理想的,因为使用截断的牛顿法和反向微分技术可以提高存储速度。使用两种荧光造影剂,吲哚菁绿和3-3'-二乙基硫杂三氰胺碘化物,它们的荧光寿命相差0.62 ns。成功地重建了深度为2.0 cm的目标图像,目标与背景之比(T:B)的荧光吸收为212:1和70:1,寿命为1:2.1和2.1:1。我们的结果表明,当(i)目标的寿命长于背景且(ii)目标的寿命短于背景时,图像重建是可能的。

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