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Pulse oximetry sensor optimized for low saturation

机译:脉搏血氧饱和度传感器针对低饱和度进行了优化

摘要

A pulse oximeter sensor (410) with a light source optimized for low oxygen saturation ranges and for maximizing the immunity to perturbation induced artifact. Preferably, a red (112) and an infrared light source (114) are used, with the red light source (112) having a mean wavelength between 700-790 nm. The infrared light source (114) can have a mean wavelength as in prior art devices used on patients with high saturation. The sensor of the present invention is further optimized by arranging the spacing between the light emitter (112,114) and light detectors (116) to minimize the sensitivity to perturbation induced artifact. The present invention optimizes the chosen wavelengths to achieve a closer matching of the absorption and scattering coefficient products for the red and IR light sources. This optimization gives robust readings in the presence of perturbation artifacts including force variations, tissue variations and variations in the oxygen saturation itself. IMAGE
机译:脉搏血氧饱和度传感器(410),其光源针对低氧饱和度范围进行了优化,并最大程度地提高了对干扰引起的伪像的免疫力。优选地,使用红色(112)和红外光源(114),其中红色光源(112)的平均波长在700-790nm之间。红外光源(114)可具有与用于高饱和度患者的现有技术装置中相同的平均波长。通过在光发射器(112,114)和光检测器(116)之间布置间隔以使对扰动引起的伪像的灵敏度最小化,可以进一步优化本发明的传感器。本发明优化了选择的波长,以实现红色和红外光源的吸收和散射系数乘积的更紧密匹配。在存在干扰伪影(包括力变化,组织变化和氧饱和度自身变化)的情况下,此优化可提供可靠的读数。 <图像>

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