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用于光学近红外成像的脑组织模型

Brain tissue phantoms for optical near infrared imaging.

作者信息

Rao K Prahlad, Radhakrishnan S, Reddy M Ramasubba

机构信息

Biomedical Engineering Division, Department of Applied Mechanics, Indian Institute of Technology Madras, 600036, Chennai, India.

出版信息

Exp Brain Res. 2006 Apr;170(4):433-7. doi: 10.1007/s00221-005-0242-4. Epub 2005 Dec 9.

Abstract

In this study, solid, stable, and cost-effective optical phantoms of scalp-skull, white matter and grey matter are developed by inverse method. To begin with, to obtain a range of optical parameters, absorption and reduced scattering coefficients (mu(a) and mu(s)', respectively), 20 homogeneous phantoms were made of paraffin wax by using optically contrast black and highly scattering white colouring materials in different combination. By comparing the measured reflectance values for each phantom got from the four channel reflectometer with that obtained from steady-state diffusion equation, the values of mu(a) and mu(s)' were determined. Next, phantoms which exhibit specific optical properties of scalp-skull, white and grey matter are developed iteratively by comparing actual reflectance measurements got by adjusting the colour concentration with the predicted reflectance values from the diffusion equation. This is done as follows: to obtain mu(a) of 0.04 mm(-1) for scalp-skull, 9.5 mg of black dye per 100 ml of wax added since more attenuation of light occurs in bone tissue. To obtain a mu(s)' 6.0 mm(-1) for white matter in brain tissue, 190 mg of white dye per 100 ml of wax was used to facilitate more scatter of light. The colour concentrations of phantoms were then adjusted to obtain the predetermined values of optical parameters for scalp-skull, grey and white matter.

摘要

在本研究中,采用逆方法制备了头皮-颅骨、白质和灰质的固态、稳定且经济高效的光学模型。首先,为了获得一系列光学参数,即吸收系数和约化散射系数(分别为μ(a)和μ(s)'),使用光学对比黑色和高散射白色着色材料以不同组合制成了20个石蜡均匀模型。通过将从四通道反射仪测得的每个模型的反射率值与从稳态扩散方程获得的反射率值进行比较,确定了μ(a)和μ(s)'的值。接下来,通过将调整颜色浓度后得到的实际反射率测量值与扩散方程预测的反射率值进行比较,迭代地开发出具有头皮-颅骨、白质和灰质特定光学特性的模型。具体做法如下:为了使头皮-颅骨的μ(a)达到0.04 mm(-1),由于骨组织中光的衰减更大,每100 ml蜡中添加9.5 mg黑色染料。为了使脑组织中白质的μ(s)'达到6.0 mm(-1),每100 ml蜡中使用190 mg白色染料以促进更多的光散射。然后调整模型的颜色浓度,以获得头皮-颅骨、灰质和白质光学参数的预定值。

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