首页> 外国专利> Methods for measuring changes in optical properties of wound tissue and correlating near infrared absorption (fNIR) and diffuse reflectance spectroscopy scattering (DRS) with tissue neovascularization and collagen concentration to determine whether wound is healing

Methods for measuring changes in optical properties of wound tissue and correlating near infrared absorption (fNIR) and diffuse reflectance spectroscopy scattering (DRS) with tissue neovascularization and collagen concentration to determine whether wound is healing

机译:测量伤口组织光学特性变化并将近红外吸收(fNIR)和漫反射光谱散射(DRS)与组织新血管形成和胶原蛋白浓度相关联以确定伤口是否正在愈合的方法

摘要

Optical changes of tissue during wound healing measured by Near Infrared and Diffuse Reflectance Spectroscopy are shown to correlate with histologic changes. Near Infrared absorption coefficient correlated with blood vessel in-growth over time, while Diffuse Reflectance Spectroscopy (DRS) data correlated with collagen concentration. Changes of optical properties of wound tissue at greater depths are also quantified by Diffuse Photon Density Wave (DPDW) methodology at near infrared wavelengths. The diffusion equation for semi-infinite media is used to calculate the absorption and scattering coefficients based on measurements of phase and amplitude with a frequency domain or time domain device. An increase in the absorption and scattering coefficients and a decrease in blood saturation of the wounds compared to the non wounded sites was observed. The changes correlated with the healing stage of the wound. The methodologies used to collect information regarding the healing state of a wound may be used to clinically assess the efficacy of wound healing agents in a patient (e.g., a diabetic) and as a non-invasive method to detect the progress of wound healing, particularly chronic wounds due to diabetes. The methodology applies to ischemic environments, impaired healing states, and emerging subsurface tissue deterioration, such as in pressure ulcers, venous ulcers, and ubiquitous ulcers.
机译:通过近红外和漫反射光谱法测量的伤口愈合过程中组织的光学变化显示与组织学变化相关。近红外吸收系数与一段时间内血管的生长相关,而漫反射光谱(DRS)数据与胶原蛋白浓度相关。还通过在近红外波长处的漫射光子密度波(DPDW)方法对更大深度的伤口组织光学特性的变化进行了定量。半无限介质的扩散方程用于基于频域或时域设备的相位和幅度测量来计算吸收系数和散射系数。与非伤口部位相比,伤口的吸收系数和散射系数增加,血液饱和度降低。这些变化与伤口的愈合阶段有关。用于收集关于伤口的愈合状态的信息的方法可以用于临床评估伤口愈合剂在患者(例如糖尿病患者)中的功效,并且可以用作检测伤口愈合进展的非侵入性方法,特别是糖尿病引起的慢性伤口。该方法适用于局部缺血的环境,受损的愈合状态和新兴的地下组织退化,例如压力性溃疡,静脉性溃疡和无处不在的溃疡。

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