首页> 外文会议>Photonic Therapeutics and Diagnostics II; Progress in Biomedical Optics and Imaging; vol.7, no.1 >Measuring Optical Properties of a Blood Vessel Model Using Optical Coherence Tomography
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Measuring Optical Properties of a Blood Vessel Model Using Optical Coherence Tomography

机译:使用光学相干断层扫描技术测量血管模型的光学特性

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In this paper we develop the concept of a tissue-engineered optical phantom that uses engineered tissue as a phantom for calibration and optimization of biomedical optics instrumentation. With this method, the effects of biological processes on measured signals can be studied in a well controlled manner. To demonstrate this concept, we attempted to investigate how the cellular remodeling of a collagen matrix affected the optical properties extracted from optical coherence tomography (OCT) images of the samples. Tissue-engineered optical phantoms of the vascular system were created by seeding smooth muscle cells in a collagen matrix. Four different optical properties were evaluated by fitting the OCT signal to 2 different models: the sample reflectivity ρ and attenuation parameter μ were extracted from the single scattering model, and the scattering coefficient μ_s and root-mean-square scattering angle θ_(rms) were extracted from the extended Huygens-Fresnel model. We found that while contraction of the smooth muscle cells was clearly evident macroscopically, on the microscopic scale very few cells were actually embedded in the collagen. Consequently, no significant difference between the cellular and acellular samples in either set of measured optical properties was observed. We believe that further optimization of our tissue-engineering methods is needed in order to make the histology and biochemistry of the cellular samples sufficiently different from the acellular samples on the microscopic level. Once these methods are optimized, we can better verify whether the optical properties of the cellular and acellular collagen samples differ.
机译:在本文中,我们开发了组织工程光学体模的概念,该组织体工程光学体模使用工程组织作为体模进行生物医学光学仪器的校准和优化。使用这种方法,可以以受控的方式研究生物学过程对测量信号的影响。为了证明这一概念,我们尝试研究胶原基质的细胞重塑如何影响从样品的光学相干断层扫描(OCT)图像提取的光学特性。通过将平滑肌细胞接种在胶原蛋白基质中来创建血管系统的组织工程光学模型。通过将OCT信号拟合到两个不同的模型来评估四个不同的光学特性:从单个散射模型中提取样品反射率ρ和衰减参数μ,散射系数μ_s和均方根散射角θ_(rms)为从扩展的惠更斯-菲涅耳模型中提取。我们发现,尽管在宏观上平滑肌细胞的收缩明显可见,但在微观尺度上,实际上只有很少的细胞被包埋在胶原蛋白中。因此,在任何一组测量的光学性质中,在细胞样品和非细胞样品之间均未观察到显着差异。我们认为需要进一步优化我们的组织工程方法,以使细胞样品的组织学和生物化学在微观水平上与脱细胞样品充分不同。一旦优化了这些方法,我们就可以更好地验证细胞和无细胞胶原蛋白样品的光学性质是否不同。

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