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An Accurate Flexible and Small Optical Fiber Sensor: A Novel Technological Breakthrough for Real-Time Analysis of Dynamic Blood Flow Data In Vivo

机译:精确灵活小型的光纤传感器:实时分析体内动态血流数据的新技术突破

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摘要

Because of the limitations of existing methods and techniques for directly obtaining real-time blood data, no accurate microflow in vivo real-time analysis method exists. To establish a novel technical platform for real-time in vivo detection and to analyze average blood pressure and other blood flow parameters, a small, accurate, flexible, and nontoxic Fabry-Perot fiber sensor was designed. The carotid sheath was implanted through intubation of the rabbit carotid artery (n = 8), and the blood pressure and other detection data were determined directly through the veins. The fiber detection results were compared with test results obtained using color Doppler ultrasound and a physiological pressure sensor recorder. Pairwise comparisons among the blood pressure results obtained using the three methods indicated that real-time blood pressure information obtained through the fiber sensor technique exhibited better correlation than the data obtained with the other techniques. The highest correlation (correlation coefficient of 0.86) was obtained between the fiber sensor and pressure sensor. The blood pressure values were positively related to the total cholesterol level, low-density lipoprotein level, number of red blood cells, and hemoglobin level, with correlation coefficients of 0.033, 0.129, 0.358, and 0.373, respectively. The blood pressure values had no obvious relationship with the number of white blood cells and high-density lipoprotein and had a negative relationship with triglyceride levels, with a correlation coefficient of –0.031. The average ambulatory blood pressure measured by the fiber sensor exhibited a negative correlation with the quantity of blood platelets (correlation coefficient of −0.839, P<0.05). The novel fiber sensor can thus obtain in vivo blood pressure data accurately, stably, and in real time; the sensor can also determine the content and status of the blood flow to some extent. Therefore, the fiber sensor can obtain partially real-time vascular rheology information and may thus enable the early diagnosis of blood rheology disorders and diseases.
机译:由于直接获取实时血液数据的现有方法和技术的局限性,因此不存在准确的体内微流实时分析方法。为了建立用于实时体内检测的新颖技术平台并分析平均血压和其他血流参数,设计了一种小型,准确,灵活且无毒的Fabry-Perot光纤传感器。通过兔颈动脉插管(n = 8)植入颈动脉鞘,直接通过静脉测定血压和其他检测数据。将纤维检测结果与使用彩色多普勒超声和生理压力传感器记录仪获得的测试结果进行比较。使用这三种方法获得的血压结果之间的成对比较表明,通过纤维传感器技术获得的实时血压信息显示出比其他技术获得的数据更好的相关性。在光纤传感器和压力传感器之间获得最高的相关性(相关系数为0.86)。血压值与总胆固醇水平,低密度脂蛋白水平,红细胞数量和血红蛋白水平呈正相关,相关系数分别为0.033、0.129、0.358和0.373。血压值与白细胞数量和高密度脂蛋白无明显关系,与甘油三酸酯水平呈负相关,相关系数为–0.031。纤维传感器测得的平均动态血压与血小板数量呈负相关(相关系数为-0.839,P <0.05)。因此,新型光纤传感器可以准确,稳定,实时地获得体内血压数据。传感器还可以在一定程度上确定血流的含量和状态。因此,纤维传感器可以获取部分实时的血管流变学信息,从而可以早期诊断血液流变学疾病。

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