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用于监测骨骼健康的传感技术进展。

Advances in Sensing Technologies for Monitoring of Bone Health.

机构信息

Engineered Biomedical Materials Research and Innovation Centre (EnBioMatRIC), School of Automobile, Mechanical and Mechatronics Engineering (SAMM), Manipal University Jaipur, Rajasthan 303007, India.

Graduate School of Biomedical Engineering, Faculty of Engineering, The University of New South Wales, Sydney, NSW 2052, Australia.

出版信息

Biosensors (Basel). 2020 Apr 21;10(4):42. doi: 10.3390/bios10040042.

Abstract

Changing lifestyle and food habits are responsible for health problems, especially those related to bone in an aging population. Poor bone health has now become a serious matter of concern for many of us. In order to avoid serious consequences, the early prediction of symptoms and diagnosis of bone diseases have become the need of the hour. From this inspiration, the evolution of different bone health monitoring techniques and measurement methods practiced by researchers and healthcare companies has been discussed. This paper focuses on various types of bone diseases along with the modeling and remodeling phenomena of bones. The evolution of various diagnosis tests for bone health monitoring has been also discussed. Various types of bone turnover markers, their assessment techniques, and recent developments for the monitoring of biochemical markers to diagnose the bone conditions are highlighted. Then, the paper focuses on the potential assessment of the recent sensing techniques (physical sensors and biosensors) that are currently available for bone health monitoring. Considering the importance of electrochemical biosensors in terms of high sensitivity and reliability, specific attention has been given to the recent development of electrochemical biosensors and significance in real-time monitoring of bone health.

摘要

生活方式和饮食习惯的改变是导致健康问题的原因,尤其是在老龄化人口中与骨骼相关的问题。骨骼健康状况不佳现在已经成为我们许多人严重关切的问题。为了避免严重的后果,对骨骼疾病症状的早期预测和诊断已成为当务之急。基于这一灵感,本文探讨了研究人员和医疗保健公司所采用的不同骨骼健康监测技术和测量方法的发展。本文重点介绍了各种类型的骨骼疾病以及骨骼的建模和重塑现象。还讨论了各种骨骼健康监测诊断测试的发展。强调了各种类型的骨转换标志物、它们的评估技术以及用于诊断骨骼状况的生物化学标志物监测的最新进展。然后,本文重点介绍了当前可用于骨骼健康监测的新型传感技术(物理传感器和生物传感器)的潜在评估。鉴于电化学生物传感器在灵敏度和可靠性方面的重要性,本文特别关注了电化学生物传感器的最新发展及其在骨骼健康实时监测中的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/009a/7235906/834112fea5c6/biosensors-10-00042-g001.jpg

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