A two-stage amplified PZT sensor for monitoring lung and heart sounds in discharged pneumonia patients
Abstract Assessment of lung and heart states is of critical importance for patients with pneumonia. In this study, we present a small-sized and ultrasensitive accelerometer for continuous monitoring of lung and heart sounds to evaluate the lung and heart states of patients. Based on two-stage amplif...
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2021-07-01
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Series: | Microsystems & Nanoengineering |
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doaj-311d76d60f334e8e975d63cc113286882021-07-25T11:08:40ZengNature Publishing GroupMicrosystems & Nanoengineering2055-74342021-07-017111110.1038/s41378-021-00274-xA two-stage amplified PZT sensor for monitoring lung and heart sounds in discharged pneumonia patientsHongbin Chen0Shuai Yu1Haiyang Liu2Jie Liu3Yongguang Xiao4Dandan Wu5Xiaoyu Pan6Cuihong Zhou7Yifeng Lei8Sheng Liu9Department of Pulmonary and Critical Care Medicine, Renmin Hospital of Wuhan UniversitySchool of Mechanical Science and Engineering, Huazhong University of Science and TechnologySchool of Power and Mechanical Engineering & the Institute of Technological Science, Wuhan UniversitySchool of Power and Mechanical Engineering & the Institute of Technological Science, Wuhan UniversityDepartment of Thoracic, Renmin Hospital of Wuhan UniversityDepartment of Pulmonary and Critical Care Medicine, Renmin Hospital of Wuhan UniversityDepartment of Pulmonary and Critical Care Medicine, the Ninth Hospital of WuhanDepartment of Pulmonary and Critical Care Medicine, the Ninth Hospital of WuhanSchool of Power and Mechanical Engineering & the Institute of Technological Science, Wuhan UniversitySchool of Power and Mechanical Engineering & the Institute of Technological Science, Wuhan UniversityAbstract Assessment of lung and heart states is of critical importance for patients with pneumonia. In this study, we present a small-sized and ultrasensitive accelerometer for continuous monitoring of lung and heart sounds to evaluate the lung and heart states of patients. Based on two-stage amplification, which consists of an asymmetric gapped cantilever and a charge amplifier, our accelerometer exhibited an extremely high ratio of sensitivity to noise compared with conventional structures. Our sensor achieves a high sensitivity of 9.2 V/g at frequencies less than 1000 Hz, making it suitable to use to monitor weak physiological signals, including heart and lung sounds. For the first time, lung injury, heart injury, and both lung and heart injuries in discharged pneumonia patients were revealed by our sensor device. Our sound sensor also successfully tracked the recovery course of the discharged pneumonia patients. Over time, the lung and heart states of the patients gradually improved after discharge. Our observations were in good agreement with clinical reports. Compared with conventional medical instruments, our sensor device provides rapid and highly sensitive detection of lung and heart sounds, which greatly helps in the evaluation of lung and heart states of pneumonia patients. This sensor provides a cost-effective alternative approach to the diagnosis and prognosis of pneumonia and has the potential for clinical and home-use health monitoring.https://doi.org/10.1038/s41378-021-00274-x |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hongbin Chen Shuai Yu Haiyang Liu Jie Liu Yongguang Xiao Dandan Wu Xiaoyu Pan Cuihong Zhou Yifeng Lei Sheng Liu |
spellingShingle |
Hongbin Chen Shuai Yu Haiyang Liu Jie Liu Yongguang Xiao Dandan Wu Xiaoyu Pan Cuihong Zhou Yifeng Lei Sheng Liu A two-stage amplified PZT sensor for monitoring lung and heart sounds in discharged pneumonia patients Microsystems & Nanoengineering |
author_facet |
Hongbin Chen Shuai Yu Haiyang Liu Jie Liu Yongguang Xiao Dandan Wu Xiaoyu Pan Cuihong Zhou Yifeng Lei Sheng Liu |
author_sort |
Hongbin Chen |
title |
A two-stage amplified PZT sensor for monitoring lung and heart sounds in discharged pneumonia patients |
title_short |
A two-stage amplified PZT sensor for monitoring lung and heart sounds in discharged pneumonia patients |
title_full |
A two-stage amplified PZT sensor for monitoring lung and heart sounds in discharged pneumonia patients |
title_fullStr |
A two-stage amplified PZT sensor for monitoring lung and heart sounds in discharged pneumonia patients |
title_full_unstemmed |
A two-stage amplified PZT sensor for monitoring lung and heart sounds in discharged pneumonia patients |
title_sort |
two-stage amplified pzt sensor for monitoring lung and heart sounds in discharged pneumonia patients |
publisher |
Nature Publishing Group |
series |
Microsystems & Nanoengineering |
issn |
2055-7434 |
publishDate |
2021-07-01 |
description |
Abstract Assessment of lung and heart states is of critical importance for patients with pneumonia. In this study, we present a small-sized and ultrasensitive accelerometer for continuous monitoring of lung and heart sounds to evaluate the lung and heart states of patients. Based on two-stage amplification, which consists of an asymmetric gapped cantilever and a charge amplifier, our accelerometer exhibited an extremely high ratio of sensitivity to noise compared with conventional structures. Our sensor achieves a high sensitivity of 9.2 V/g at frequencies less than 1000 Hz, making it suitable to use to monitor weak physiological signals, including heart and lung sounds. For the first time, lung injury, heart injury, and both lung and heart injuries in discharged pneumonia patients were revealed by our sensor device. Our sound sensor also successfully tracked the recovery course of the discharged pneumonia patients. Over time, the lung and heart states of the patients gradually improved after discharge. Our observations were in good agreement with clinical reports. Compared with conventional medical instruments, our sensor device provides rapid and highly sensitive detection of lung and heart sounds, which greatly helps in the evaluation of lung and heart states of pneumonia patients. This sensor provides a cost-effective alternative approach to the diagnosis and prognosis of pneumonia and has the potential for clinical and home-use health monitoring. |
url |
https://doi.org/10.1038/s41378-021-00274-x |
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