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Multi-wavelength pulse plethysmography for real-time drug delivery monitoring

机译:多波长脉搏体积描记术用于实时药物输送监测

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A novel multi-wavelength photoplethysmograph (PPG), previously utilized to quantify optically absorptive circulating gold nanoparticles, has demonstrated the potential to enhance therapeutic treatment predictability as pharmacokinetic metrics are provided throughout the intravenous delivery phase of quinine in real-time. This report demonstrates how the PPG could be used to assess the real-time bioavailability of other types of intravenously delivered optically-absorbing nanoparticles and drugs. The drug currently under investigation is anti-malarial quinine (absorption peak ~350 nm). We describe how the algorithm has been adapted to quantify the concentration of quinine in the pulsatile, circulating blood based on its extinction at three wavelengths (340, 660 and 940 nm). We show an example of the system collecting data representing the baseline, injection, and the clearance phases. An examination of the raw signal suggests that the system is well suited to sense the concentration of quinine in the therapeutic range (10mg/kg).
机译:一种新颖的多波长光电容积脉搏波描记器(PPG),以前用于定量吸收光的循环金纳米颗粒,由于在整个奎宁的静脉内递送阶段实时提供了药代动力学指标,因此显示了增强治疗可预测性的潜力。该报告证明了PPG如何可用于评估其他类型的静脉内递送的光学吸收纳米颗粒和药物的实时生物利用度。目前正在研究的药物是抗疟疾奎宁(吸收峰〜350 nm)。我们将描述该算法如何根据在三个波长(340、660和940 nm)处的消光性,对脉动循环血液中的奎宁浓度进行量化。我们显示了一个示例系统,该系统收集代表基线,进样和清除阶段的数据。对原始信号的检查表明该系统非常适合检测治疗范围内的奎宁浓度(10mg / kg)。

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