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首页> 外文期刊>Advances in Experimental Medicine and Biology >A method to calculate arterial and venous saturation from near infrared spectroscopy (NIRS).
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A method to calculate arterial and venous saturation from near infrared spectroscopy (NIRS).

机译:一种从近红外光谱(NIRS)计算动脉和静脉饱和度的方法。

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摘要

For adequate development and functioning of the neonatal brain, sufficient oxygen (O2) should be available. With a fast sampling (f(s) > 50 Hz) continuous wave NIRS device, arterial (SaO2) and venous (SvO2) saturation can be measured using the physiological fluctuations in the oxyhemoglobin (O2Hb) and total hemoglobin (tHb) concentrations due to heart action and respiration. Before using this technique in a neonatal setting, the method was verified on adult volunteers (n=7) by decreasing inspired oxygen down to an arterial saturation of 70% using a pulse oximeter as reference. NIRS optodes were placed on the left forehead; the pulse oximeter sensor was placed on the right forehead. The experiments were repeated with different optode spacings. SaO2 and SvO2 were determined using the ratio between the O2Hb and tHb value in the amplitude spectrum at the heart rate and respiration rate, respectively. A good agreement between calculated SaO2 and reference SaO2 from pulse oximetry was found (bias range -3.5%to 5.2%, SD of the residuals 1.3% to 3.5%). Optode spacing of 15 mm yielded a negative bias compared to optode spacing of 45 mm. It was not always possible to calculate SvO2 because the respiration peak could not always be detected.
机译:为了使新生儿大脑充分发育和发挥功能,应有足够的氧气(O2)。通过快速采样(f(s)> 50 Hz)连续波NIRS设备,可以利用氧合血红蛋白(O2Hb)和总血红蛋白(tHb)浓度引起的生理波动来测量动脉(SaO2)和静脉(SvO2)饱和度心脏动作和呼吸。在新生儿环境中使用该技术之前,该方法已在成人志愿者(n = 7)上通过使用脉搏血氧仪作为参考将吸入氧气降低至动脉饱和度达到70%进行了验证。 NIRS光电二极管放置在左前额;脉搏血氧仪传感器放置在右额头上。以不同的光电二极管间距重复进行实验。 SaO2和SvO2分别使用心率和呼吸率下振幅谱中的O2Hb和tHb值之比确定。发现通过脉搏血氧饱和度计算得出的SaO2与参考SaO2之间有很好的一致性(偏差范围-3.5%至5.2%,残差的SD为1.3%至3.5%)。与45 mm的光电二极管间距相比,15 mm的光电二极管间距产生负偏压。并非总是可以计算SvO2,因为不能始终检测到呼吸峰。

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