The Experts below are selected from a list of 191025 Experts worldwide ranked by ideXlab platform
Adrian Porch - One of the best experts on this subject based on the ideXlab platform.
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microwave noninvasive blood glucose Monitoring Sensor human clinical trial results
2017Co-Authors: Heungjae Choi, Steve Luzio, Jan Beutler, Adrian PorchAbstract:In this paper, a microwave non-invasive blood glucose Monitoring system operating at around 1.4 GHz is designed and its performance in terms of accuracy and repeatability is evaluated by a clinical trial involving 24 human subjects, with and without diabetes. Direct comparison with the most accurate benchtop glucose analyzer shows the exceptional accuracy and repeatability of the proposed system.
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design and in vitro interference test of microwave noninvasive blood glucose Monitoring Sensor
2015Co-Authors: Heungjae Choi, Steve Luzio, Jan Beutler, Jack A Naylon, James Caradoc Birchall, Christopher Martin, Adrian PorchAbstract:A design of a microwave noninvasive continuous blood glucose Monitoring Sensor and its interference test results are presented. The novelty of the proposed Sensor is that it comprises two spatially separated split-ring resonators, where one interacts with the change in glucose level of a sample under test while the other ring is used as a reference. The reference ring has a slightly different resonant frequency and is desensitized to the sample owing to its location, thus allowing changes in temperature to be calibrated out. From an oral glucose tolerance test with two additional commercially available Sensors (blood strip and continuous glucose monitor) in parallel, we obtained encouraging performance for our Sensor comparable with those of the commercial Sensors. The effects of endogenous interferents common to all subjects, i.e., common sugars, vitamins (ascorbic acid), and metabolites (uric acid) have also been investigated by using a large Franz cell assembly. From the interference test, it is shown that the change in Sensor response is dominated by changes in glucose level for concentrations relevant to blood, and the effects of interferents are negligible in comparison.
Heungjae Choi - One of the best experts on this subject based on the ideXlab platform.
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microwave noninvasive blood glucose Monitoring Sensor human clinical trial results
2017Co-Authors: Heungjae Choi, Steve Luzio, Jan Beutler, Adrian PorchAbstract:In this paper, a microwave non-invasive blood glucose Monitoring system operating at around 1.4 GHz is designed and its performance in terms of accuracy and repeatability is evaluated by a clinical trial involving 24 human subjects, with and without diabetes. Direct comparison with the most accurate benchtop glucose analyzer shows the exceptional accuracy and repeatability of the proposed system.
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design and in vitro interference test of microwave noninvasive blood glucose Monitoring Sensor
2015Co-Authors: Heungjae Choi, Steve Luzio, Jan Beutler, Jack A Naylon, James Caradoc Birchall, Christopher Martin, Adrian PorchAbstract:A design of a microwave noninvasive continuous blood glucose Monitoring Sensor and its interference test results are presented. The novelty of the proposed Sensor is that it comprises two spatially separated split-ring resonators, where one interacts with the change in glucose level of a sample under test while the other ring is used as a reference. The reference ring has a slightly different resonant frequency and is desensitized to the sample owing to its location, thus allowing changes in temperature to be calibrated out. From an oral glucose tolerance test with two additional commercially available Sensors (blood strip and continuous glucose monitor) in parallel, we obtained encouraging performance for our Sensor comparable with those of the commercial Sensors. The effects of endogenous interferents common to all subjects, i.e., common sugars, vitamins (ascorbic acid), and metabolites (uric acid) have also been investigated by using a large Franz cell assembly. From the interference test, it is shown that the change in Sensor response is dominated by changes in glucose level for concentrations relevant to blood, and the effects of interferents are negligible in comparison.
Steve Luzio - One of the best experts on this subject based on the ideXlab platform.
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microwave noninvasive blood glucose Monitoring Sensor human clinical trial results
2017Co-Authors: Heungjae Choi, Steve Luzio, Jan Beutler, Adrian PorchAbstract:In this paper, a microwave non-invasive blood glucose Monitoring system operating at around 1.4 GHz is designed and its performance in terms of accuracy and repeatability is evaluated by a clinical trial involving 24 human subjects, with and without diabetes. Direct comparison with the most accurate benchtop glucose analyzer shows the exceptional accuracy and repeatability of the proposed system.
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design and in vitro interference test of microwave noninvasive blood glucose Monitoring Sensor
2015Co-Authors: Heungjae Choi, Steve Luzio, Jan Beutler, Jack A Naylon, James Caradoc Birchall, Christopher Martin, Adrian PorchAbstract:A design of a microwave noninvasive continuous blood glucose Monitoring Sensor and its interference test results are presented. The novelty of the proposed Sensor is that it comprises two spatially separated split-ring resonators, where one interacts with the change in glucose level of a sample under test while the other ring is used as a reference. The reference ring has a slightly different resonant frequency and is desensitized to the sample owing to its location, thus allowing changes in temperature to be calibrated out. From an oral glucose tolerance test with two additional commercially available Sensors (blood strip and continuous glucose monitor) in parallel, we obtained encouraging performance for our Sensor comparable with those of the commercial Sensors. The effects of endogenous interferents common to all subjects, i.e., common sugars, vitamins (ascorbic acid), and metabolites (uric acid) have also been investigated by using a large Franz cell assembly. From the interference test, it is shown that the change in Sensor response is dominated by changes in glucose level for concentrations relevant to blood, and the effects of interferents are negligible in comparison.
Jan Beutler - One of the best experts on this subject based on the ideXlab platform.
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microwave noninvasive blood glucose Monitoring Sensor human clinical trial results
2017Co-Authors: Heungjae Choi, Steve Luzio, Jan Beutler, Adrian PorchAbstract:In this paper, a microwave non-invasive blood glucose Monitoring system operating at around 1.4 GHz is designed and its performance in terms of accuracy and repeatability is evaluated by a clinical trial involving 24 human subjects, with and without diabetes. Direct comparison with the most accurate benchtop glucose analyzer shows the exceptional accuracy and repeatability of the proposed system.
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design and in vitro interference test of microwave noninvasive blood glucose Monitoring Sensor
2015Co-Authors: Heungjae Choi, Steve Luzio, Jan Beutler, Jack A Naylon, James Caradoc Birchall, Christopher Martin, Adrian PorchAbstract:A design of a microwave noninvasive continuous blood glucose Monitoring Sensor and its interference test results are presented. The novelty of the proposed Sensor is that it comprises two spatially separated split-ring resonators, where one interacts with the change in glucose level of a sample under test while the other ring is used as a reference. The reference ring has a slightly different resonant frequency and is desensitized to the sample owing to its location, thus allowing changes in temperature to be calibrated out. From an oral glucose tolerance test with two additional commercially available Sensors (blood strip and continuous glucose monitor) in parallel, we obtained encouraging performance for our Sensor comparable with those of the commercial Sensors. The effects of endogenous interferents common to all subjects, i.e., common sugars, vitamins (ascorbic acid), and metabolites (uric acid) have also been investigated by using a large Franz cell assembly. From the interference test, it is shown that the change in Sensor response is dominated by changes in glucose level for concentrations relevant to blood, and the effects of interferents are negligible in comparison.
Insoo Kim - One of the best experts on this subject based on the ideXlab platform.
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challenges in design and fabrication of flexible stretchable carbon and textile based wearable Sensors for health Monitoring a critical review
2020Co-Authors: Jae Sang Heo, Faruk Hossain, Insoo KimAbstract:To demonstrate the wearable flexible/stretchable health-Monitoring Sensor, it is necessary to develop advanced functional materials and fabrication technologies. Among the various developed materials and fabrication processes for wearable Sensors, carbon-based materials and textile-based configurations are considered as promising approaches due to their outstanding characteristics such as high conductivity, lightweight, high mechanical properties, wearability, and biocompatibility. Despite these advantages, in order to realize practical wearable applications, electrical and mechanical performances such as sensitivity, stability, and long-term use are still not satisfied. Accordingly, in this review, we describe recent advances in process technologies to fabricate advanced carbon-based materials and textile-based Sensors, followed by their applications such as human activity and electrophysiological Sensors. Furthermore, we discuss the remaining challenges for both carbon- and textile-based wearable Sensors and then suggest effective strategies to realize the wearable Sensors in health Monitoring.