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Closed-loop controlled noninvasive ultrasonic glucose sensing and insulin delivery

机译:闭环控制非侵入式超声波葡萄糖感应和胰岛素递送

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To prevent complications in diabetes, the proper management of blood glucose levels is essential. Previously, ultrasonic transdermal methods using a light-weight cymbal transducer array has been studied for noninvasive methods of insulin delivery for Type-1 diabetes and glucose level monitoring. In this study, the ultrasound systems of insulin delivery and glucose sensing have been combined by a feedback controller. This study was designed to show the feasibility of the feedback controlled ultrasound system for the noninvasive glucose control. For perspective human application, in vivo experiments were performed on large animals that have a similar size to humans. Four in vivo experiments were performed using about 200 lbs pigs. The cymbal array of 3x3 pattern has been used for insulin delivery at 30 kHz with the spatial-peak temporal-peak intensity (I_(sptp)) of 100 mW/cm~2. For glucose sensing, a 2x2 array was operated at 20 kHz with I_(sptp) =100 mW/cm~2. Based on the glucose level determined by biosensors after the ultrasound exposure, the ultrasound system for the insulin delivery was automatically operated. The glucose level of 115 mg/dl was set as a reference value for operating the insulin delivery system. For comparison, the glucose levels of blood samples collected from the ear vein were measured by a commercial glucose meter. Using the ultrasound system operated by the close-loop, feed-back controller, the glucose levels of four pigs were determined every 20 minutes and continuously controlled for 120 minutes. In comparison to the commercial glucose meter, the glucose levels determined by the biosensor were slightly higher. The results of in vivo experiments indicate the feasibility of the feedback controlled ultrasound system using the cymbal array for noninvasive glucose sensing and insulin delivery. Further studies on the extension of the glucose control will be continued for the effective method of glucose control.
机译:为了防止糖尿病并发症,血糖水平的适当管理是必不可少的。以前,使用重量轻的钹换能器阵列的超声波经皮方法已经研究了胰岛素递送用于1型糖尿病和血糖水平监测的非侵入性方法。在这项研究中,胰岛素递送和葡萄糖感测的超声系统已被通过反馈控制器相结合。这项研究的目的是要显示的反馈控制的超声系统,为无创血糖控制的可行性。对于人类视角的应用,在体内实验上具有相似的尺寸人类大型动物进行。四体内实验使用约200种的猪进行。 3×3模式的钹阵列已经用于胰岛素递送以100毫瓦/厘米2〜30千赫与空间峰值时间峰值强度(I_(SPTP))。用于葡萄糖感测,2×2阵列在20千赫操作与I_(SPTP)= 100毫瓦/平方厘米〜2。基于由超声波曝光后的生物传感器测定的葡萄糖水平,对于胰岛素递送超声系统是自动操作。 115毫克/分升的葡萄糖水平被设定为用于操作所述胰岛素递送系统的参考值。为了比较,从耳静脉收集血液样品的葡萄糖水平通过商业葡萄糖计测量。使用由闭环,反馈控制装置操作的超声系统中,四头猪的血糖水平测定每20分钟和120分钟连续地控制。相较于商业血糖仪,由生物传感器测定血糖水平略高。的体内实验的结果表明使用用于无创葡萄糖检测和胰岛素递送钹阵列反馈控制超声系统的可行性。在血糖控制的延伸部分还研究将继续进行血糖控制的有效方法。

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