Infrared Sensor Detection and Actuator Treatment Applied during Hemodialysis

Infrared thermography can be applied in different medical systems, for example it can be used to catch the images of living blood vessels. Far infrared rays can be used in a heating machine, which can be applied in the clinical hemodialysis patients. Infrared electronically sensitized images, which...

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Main Authors: Jian-Chiun Liou, Yu-Cheng Hsiao, Cheng-Fu Yang
Format: Article
Language:English
Published: MDPI AG 2020-04-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/20/9/2521
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spelling doaj-420b87f6c13c4007b2f90cf8fb3677092020-11-25T03:03:16ZengMDPI AGSensors1424-82202020-04-01202521252110.3390/s20092521Infrared Sensor Detection and Actuator Treatment Applied during HemodialysisJian-Chiun Liou0Yu-Cheng Hsiao1Cheng-Fu Yang2School of Biomedical Engineering, Taipei Medical University, Taipei 11031, TaiwanGraduate Institute of Biomedical Optomechatronics, Taipei Medical University, Taipei 11031, TaiwanDepartment of Chemical and materials Engineering, National University of Kaohsiung, Kaohsiung 811, TaiwanInfrared thermography can be applied in different medical systems, for example it can be used to catch the images of living blood vessels. Far infrared rays can be used in a heating machine, which can be applied in the clinical hemodialysis patients. Infrared electronically sensitized images, which are generated by near-infrared Charge-coupled Device (CCD), are used to detect blood vessels, and used as a long-wavelength external stimulating therapeutic tissue repair system. When an infrared sensor detection and actuator treatment is applied during hemodialysis, a missing needle can be detected, and far infrared rays have a therapeutic effect on blood vessels. Because a far-infrared actuated light source can improve blood circulation, it is currently used to prevent fistula embolism in hemodialysis (HD) patients and reduce vascular occlusion after hemodialysis. Sensors used for sudden changes in heart rate variability (HRV) are used as predictive and evaluation indicators for our new method. Far-infrared actuated radiation can increase sympathetic nerve activity and regulation of parasympathetic and sympathetic nerves. We performed baseline measurements of the low-frequency/high-frequency ratio of autonomic nerve activity before hemodialysis (low frequency (LF), high frequency (HF), LF/HF, before HD) and after hemodialysis (LF/HF, after-HD). Based on data from the HRV continuity tracking report, 35 patients with autonomic nerve activation were treated and evaluated. We have demonstrated that the resulting near-infrared (NIR) sensor imaging and far-infrared actuator illumination can be used for the detection and treatment of hemodialysis patients.https://www.mdpi.com/1424-8220/20/9/2521near-infrared lightsensorfar-infrared radiationactuatorphysiologically
collection DOAJ
language English
format Article
sources DOAJ
author Jian-Chiun Liou
Yu-Cheng Hsiao
Cheng-Fu Yang
spellingShingle Jian-Chiun Liou
Yu-Cheng Hsiao
Cheng-Fu Yang
Infrared Sensor Detection and Actuator Treatment Applied during Hemodialysis
Sensors
near-infrared light
sensor
far-infrared radiation
actuator
physiologically
author_facet Jian-Chiun Liou
Yu-Cheng Hsiao
Cheng-Fu Yang
author_sort Jian-Chiun Liou
title Infrared Sensor Detection and Actuator Treatment Applied during Hemodialysis
title_short Infrared Sensor Detection and Actuator Treatment Applied during Hemodialysis
title_full Infrared Sensor Detection and Actuator Treatment Applied during Hemodialysis
title_fullStr Infrared Sensor Detection and Actuator Treatment Applied during Hemodialysis
title_full_unstemmed Infrared Sensor Detection and Actuator Treatment Applied during Hemodialysis
title_sort infrared sensor detection and actuator treatment applied during hemodialysis
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-04-01
description Infrared thermography can be applied in different medical systems, for example it can be used to catch the images of living blood vessels. Far infrared rays can be used in a heating machine, which can be applied in the clinical hemodialysis patients. Infrared electronically sensitized images, which are generated by near-infrared Charge-coupled Device (CCD), are used to detect blood vessels, and used as a long-wavelength external stimulating therapeutic tissue repair system. When an infrared sensor detection and actuator treatment is applied during hemodialysis, a missing needle can be detected, and far infrared rays have a therapeutic effect on blood vessels. Because a far-infrared actuated light source can improve blood circulation, it is currently used to prevent fistula embolism in hemodialysis (HD) patients and reduce vascular occlusion after hemodialysis. Sensors used for sudden changes in heart rate variability (HRV) are used as predictive and evaluation indicators for our new method. Far-infrared actuated radiation can increase sympathetic nerve activity and regulation of parasympathetic and sympathetic nerves. We performed baseline measurements of the low-frequency/high-frequency ratio of autonomic nerve activity before hemodialysis (low frequency (LF), high frequency (HF), LF/HF, before HD) and after hemodialysis (LF/HF, after-HD). Based on data from the HRV continuity tracking report, 35 patients with autonomic nerve activation were treated and evaluated. We have demonstrated that the resulting near-infrared (NIR) sensor imaging and far-infrared actuator illumination can be used for the detection and treatment of hemodialysis patients.
topic near-infrared light
sensor
far-infrared radiation
actuator
physiologically
url https://www.mdpi.com/1424-8220/20/9/2521
work_keys_str_mv AT jianchiunliou infraredsensordetectionandactuatortreatmentappliedduringhemodialysis
AT yuchenghsiao infraredsensordetectionandactuatortreatmentappliedduringhemodialysis
AT chengfuyang infraredsensordetectionandactuatortreatmentappliedduringhemodialysis
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