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Evaluation of Continuous Lactate Monitoring Systems within a Heparinized In Vivo Porcine Model Intravenously and Subcutaneously

机译:肝素体内猪模型静脉内和皮下连续乳酸监测系统的评估

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We present an animal model used to evaluate the in vivo performance of electrochemical amperometric continuous lactate sensors compared to blood gas instruments. Electrochemical lactate sensors were fabricated, placed into 5 Fr central venous catheters (CVCs), and paired with wireless potentiostat devices. Following in vivo evaluation and calibration, sensors were placed within the jugular and femoral veins of a porcine subject as a preliminary assessment of in vivo measurement accuracy. The mobile electronic circuit potentiostat devices supplied the operational voltage for the sensors, measured the resultant steady-state current, and recorded the sensor response values in internal memory storages. An in vivo time trace of implanted intravenous (IV) sensors demonstrated lactate values that correlated well with the discrete measurements of blood samples on a benchtop point-of-care sensor-based instrument. Currents measured continuously from the implanted lactate sensors over 10 h were converted into lactate concentration values through use of a two-point in vivo calibration. Study shows that intravenously implanted sensors had more accurate readings, faster peak-reaching rates, and shorter peak-detection times compared to subcutaneously placed sensors. IV implanted and subcutaneously placed sensors closer to the upper body (in this case neck) showed faster response rates and more accurate measurements compared to those implanted in the lower portion of the porcine model. This study represents an important milestone not only towards continuous lactate monitoring for early diagnosis and intervention in neonatal patients with congenital heart disease undergoing cardiopulmonary bypass surgeries, but also in the intervention of critical ill patients in the Intensive Care Units or during complex surgical procedures.
机译:我们提出了一种动物模型,用于评估电化学安培型连续乳酸传感器与血气仪器相比的体内性能。制备了乳酸乳酸传感器,将其放置在5 Fr中央静脉导管(CVC)中,并与无线恒电位仪设备配对。在体内评估和校准后,将传感器放置在猪受试者的颈静脉和股静脉内,作为对体内测量准确性的初步评估。移动电子电路恒电位仪设备为传感器提供了工作电压,测量了产生的稳态电流,并将传感器的响应值记录在内部存储器中。植入的静脉内(IV)传感器的体内时间踪迹显示出乳酸值与基于台式即时护理传感器的血液样本的离散测量具有很好的相关性。通过使用两点体内校准,在10小时内从植入的乳酸传感器连续测量的电流被转换为乳酸浓度值。研究表明,与皮下放置的传感器相比,静脉内植入的传感器具有更准确的读数,更快的峰到达率和更短的峰检测时间。与在猪模型下部植入的传感器相比,静脉内植入并皮下放置的传感器靠近上半身(在这种情况下为脖子)显示出更快的响应速度和更准确的测量结果。这项研究不仅为持续进行乳酸监测以早期诊断和干预先天性心脏病的体外循环手术的新生儿患者,而且在重症监护病房或复杂手术过程中危重病人的干预方面都具有重要的里程碑意义。

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