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Non-invasive detecting cerebral hemoglobin concentration of newborns during oxygen inhalation using near-infrared spectroscopy

机译:使用近红外光谱技术无创检测氧气吸入期间新生儿的脑血红蛋白浓度

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Human tissue oxygenation status can be completely described by the absolute values of the tissue hemoglobin concentrations. To detect them non-invasively and conveniently using continuous-wave near infrared spectroscopy (NIRS), the “in vivo calibration” algorithm was adopted. Three newborns were discussed during oxygen inhalation. By comparing the absorption coefficient before and after the change of tissue oxygenation induced by oxygen inhalation, the cerebral reduced scattering coefficient was calculated when the correlation coefficient R was above 0.75. Then the cerebral oxy- and deoxy-hemoglobin concentrations were derived based on the solution of steady-state diffusion equation. The total hemoglobin concentration of brain tissue was 50.1±6.1µM, which was consistent with most of the recent reports. In summary, even though further discussions are needed, the “in vivo calibration” method is effective and relatively accurate to detect human tissue hemoglobin concentrations.
机译:人体组织的氧合状态可以通过组织血红蛋白浓度的绝对值完全描述。为了使用连续波近红外光谱(NIRS)进行无创且方便的检测,采用了“体内校准”算法。在吸氧期间讨论了三个新生儿。通过比较吸氧引起的组织氧合变化前后的吸收系数,当相关系数R大于0.75时,可计算出脑部降低的散射系数。然后根据稳态扩散方程的解导出脑中氧合和脱氧血红蛋白的浓度。脑组织的总血红蛋白浓度为50.1±6.1μM,与最近的大多数报道一致。总而言之,即使需要进行进一步的讨论,“体内校准”方法对于检测人体组织血红​​蛋白浓度也是有效且相对准确的。

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