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首页> 外文期刊>Journal of biomedical optics >In vivo precision assessment of a near-infrared spectroscopy-based tissue oximeter (OxyPrem v1.3) in neonates considering systemic hemodynamic fluctuations
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In vivo precision assessment of a near-infrared spectroscopy-based tissue oximeter (OxyPrem v1.3) in neonates considering systemic hemodynamic fluctuations

机译:考虑系统性血流动力学波动的新生儿基于近红外光谱的组织血氧仪(OxyPrem v1.3)的体内精度评估

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摘要

The aim was to determine the precision of a noninvasive near-infrared spectroscopy (NIRS)-based tissue oximeter (OxyPrem v1.3). Using a linear mixed-effects model, we quantified the variability for cerebral tissue oxygenation (StO_2) measurements in 35 preterm neonates to be 2.64%, a value that meets the often-articulated clinicians' demand for a precise tissue oxygenation measurement. We showed that the variability of StO_2 values measured was dominated by spontaneous systemic hemodynamic fluctuations during the measurement, meaning that precision of the instrument was actually even better. Based on simultaneous and continuous measurements of peripheral arterial oxygenation and cerebral StO_2 with a second sensor, we were able to determine and quantify the physiological instability precisely. We presented different methods and analyses aiming at reducing this systematic physiological error of in vivo precision assessments. Using these methods, we estimated the precision of the OxyPrem tissue oximeter to be ≤ 1.85%. With our study, we deliver relevant information to establish highly precise cerebral oxygenation measurements with NIRS-based oximetry, facilitating the further development toward a substantially improved diagnosis and treatment of patients with respect to brain oxygenation.
机译:目的是确定基于非侵入式近红外光谱(NIRS)的组织血氧仪(OxyPrem v1.3)的精度。使用线性混合效应模型,我们将35例早产儿脑组织氧合(StO_2)测量的变异性量化为2.64%,该值满足经常明确表达的临床医生对精确组织氧合测量的需求。我们发现,在测量过程中,自发的系统血流动力学波动决定了StO_2值的变化,这意味着该仪器的精度实际上更高。基于使用第二个传感器同时连续测量周围动脉氧合和脑StO_2,我们能够精确地确定和量化生理不稳定。我们提出了不同的方法和分析,旨在减少体内精确度评估的系统性生理错误。使用这些方法,我们估计OxyPrem组织血氧仪的精度为≤1.85%。通过我们的研究,我们提供相关信息,以基于N​​IRS的血氧饱和度测定法建立高度精确的大脑氧合测量值,从而有助于进一步发展,从而大幅改善有关脑氧合的患者的诊断和治疗。

著录项

  • 来源
    《Journal of biomedical optics》 |2018年第6期|067003.1-067003.10|共10页
  • 作者单位

    University of Zurich, University Hospital Zurich, Biomedical Optics Research Laboratory, Department of Neonatology, Zurich, Switzerland;

    University of Zurich, University Hospital Zurich, Biomedical Optics Research Laboratory, Department of Neonatology, Zurich, Switzerland;

    University of Zurich, University Hospital Zurich, Biomedical Optics Research Laboratory, Department of Neonatology, Zurich, Switzerland,University of Bern, Institute of Complementary Medicine, Bern, Switzerland;

    University of Zurich, University Hospital Zurich, Biomedical Optics Research Laboratory, Department of Neonatology, Zurich, Switzerland;

    University of Zurich, University Hospital Zurich, Biomedical Optics Research Laboratory, Department of Neonatology, Zurich, Switzerland;

    University of Zurich, University Hospital Zurich, Biomedical Optics Research Laboratory, Department of Neonatology, Zurich, Switzerland;

    University of Zurich, University Hospital Zurich, Biomedical Optics Research Laboratory, Department of Neonatology, Zurich, Switzerland;

    University of Zurich, University Hospital Zurich, Biomedical Optics Research Laboratory, Department of Neonatology, Zurich, Switzerland,University of Bern, Institute of Complementary Medicine, Bern, Switzerland;

    University of Zurich, University Hospital Zurich, Biomedical Optics Research Laboratory, Department of Neonatology, Zurich, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    near-infrared spectroscopy; cerebral oximetry; precision; preterm infant;

    机译:近红外光谱脑血氧饱和度精确;早产儿;

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