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Coherent Hemodynamics Spectroscopy: Initial Applications in the Neurocritical Care Unit

机译:相干血液动力学光谱:神经关怀单位的初始应用

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We used coherent hemodynamics spectroscopy (CHS) and near-infrared spectroscopy (NIRS) to measure the absolute cerebral blood flow (CBF) and cerebral autoregulation efficiency of a patient with intraventricular hemorrhage in the neurocritical care unit. Mean arterial pressure oscillations were induced with cyclic thigh cuff inflations at a super-systolic pressure. The oscillations in oxyhemoglobin ([HbO_2]) and deoxyhemoglobin ([Hb]) cerebral concentrations were used to compute CHS amplitude and phase spectra that were fit with the frequency-domain equations of our hemodynamic model. From the fitted parameters, we obtained measures of local autoregulation efficiency (cutoff frequency: 0.07 ± 0.02 Hz) and absolute regional CBF (33 ± 9 ml/100g/min). We introduce a new approach for computing CHS spectra using coherence criteria and time-varying transfer function analysis. We show that with this approach we can maximize the number of frequency points in the CHS spectra for more effective fitting with our hemodynamic model. Finally, we show how absolute measurements of the cerebral concentrations of [HbCh] and [Hb] at baseline can be used to further enhance the fitting procedure.
机译:我们使用相干血液动力学光谱(CHS)和近红外光谱(NIRS)来测量神经诊所护理单元中患有脑内出血的患者的绝对脑血流(CBF)和脑自动调节效率。在超级收缩压下诱导平均动脉压力振荡循环箍沟槽。使用氧杂环蛋白([HbO_2])和脱氧杂环蛋白([Hb])脑浓度的振荡来计算与我们血流动力学模型的频域方程合适的CHS幅度和相谱。从拟合参数中,我们获得了局部自动调节效率的措施(截止频率:0.07±0.02 Hz)和绝对区域CBF(33±9毫升/ 100g / min)。我们使用一致性标准和时变函数分析介绍了用于计算CHS光谱的新方法。我们表明,通过这种方法,我们可以最大化CHS光谱中的频率点数,以便与我们的血液动力学模型更有效地配合。最后,我们显示的[HbCh]脑浓度如何绝对测量和[血红蛋白]在基线可以用来进一步提高拟合过程。

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