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In vivo breast imaging with diffuse optical tomography based on higher-order diffusion equations

机译:基于高阶扩散方程的弥散光学层析成像的体内乳房成像

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摘要

We report on in vivo absorption and scattering imaging of a human breast cyst and implant, using a reconstruction algorithm based on our third-order diffusion equations. To validate these in vivo images, a series of phantom experiments were conducted, in which we used low-absorbing and low-scattering heterogeneities to mimic a breast cyst or implant. These heterogeneities or targets were composed of pure water or a mixture of water and very dilute Intralipid (0.05% and 0.1%). The phantom experiments confirmed the quantitative imaging capability of our improved algorithm for reconstructing heterogeneities where the conventional diffusion approximation is inadequate. Pilot clinical results from female volunteers indicate that enhanced diffuse optical tomography can quantitatively image findings such as breast cysts or implants in which the absorption and scattering coefficients are usually low. (C) 2003 Optical Society of America. [References: 12]
机译:我们使用基于我们的三阶扩散方程的重建算法,报告了人类乳腺囊肿和植入物的体内吸收和散射成像。为了验证这些体内图像,进行了一系列的幻像实验,其中我们使用了低吸收和低散射异质性来模拟乳腺囊肿或植入物。这些异质性或靶标由纯水或水与非常稀的Intralipid(0.05%和0.1%)的混合物组成。幻像实验证实了我们改进的算法的定量成像能力,该算法可以重建传统扩散近似不足的异质性。来自女性志愿者的临床试验结果表明,增强型漫射光学层析成像可以定量地对诸如乳腺囊肿或植入物等吸收和散射系数通常较低的发现进行成像。 (C)2003年美国眼镜学会。 [参考:12]

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