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The evaluation of blood flow velocity and heart rate by the frequency of oxygen saturation fluctuation in skin tissue

机译:皮肤组织中氧饱和波动频率评价血流速度和心率

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The oxygen in human body is transported by the hemoglobin and blood, and blood flow velocity (BFV) was related to the heart rate (HR); therefore, the oxygen saturation image of human skin can be used to evaluate the HR and BFV of human. When irradiating two different wavelengths light alternately and repeatedly, the frequency of oxygen saturation (SpO2) fluctuation (fc) can be obtained from the Fourier transformation of SpO2 images, and roughly applied to build the relationship between BFV and HR. In the experiment, a high speed light controller was employed to switch two LED light source (red-660 nm and NIR-890 nm). Due to the penetration depth of incident light increases with increasing wavelength, and the deoxy-hemoglobin (Hb) and oxy-hemoglobin (HbO2) has a relatively high absorptivity in visible and near-infrared (NIR) spectrum, respectively; the intensity of diffuse reflected images of skin can be used to compute the oxygen saturation images of skin tissue. The experiments show the SpO2 after 3 minutes exercise would decrease 3 % and recover in 100 seconds, and the SpO2 after 30 minutes exercise increased 1.5 % and became stable in 3 minutes. Simultaneously, the HR and BFV have the linear relationship to the frequency of SpO2 fluctuation (fc), so both two physiological indexes can be directly evaluated by SpO2 images.
机译:人体中的氧气由血红蛋白和血液输送,血流速度(BFV)与心率(HR)有关;因此,人体皮肤的氧饱和图像可用于评估人的HR和BFV。当交替地和重复地照射两个不同的波长光时,氧饱和度(SPO2)波动(FC)的频率可以从SPO2图像的傅立叶变换获得,并且大致应用于构建BFV和HR之间的关系。在实验中,采用高速光控制器来切换两个LED光源(Red-660nm和Nir-890nm)。由于入射光的穿透深度随着波长的增加而增加,并且脱氧 - 血红蛋白(Hb)和氧血红蛋白(HbO2)分别在可见和近红外(NIR)光谱中具有相对高的吸收率;弥漫性的皮肤的漫反射图像的强度可用于计算皮肤组织的氧饱和图像。实验显示SPO2在3分钟后运动会降低3%并在100秒内恢复,并且30分钟运动后的SPO2增加1.5%,并在3分钟内变得稳定。同时,HR和BFV具有与SPO2波动(FC)的频率的线性关系,因此两种生理指标都可以通过SPO2图像直接评估。

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