Commercially available pressure sensors for sport and health applications: A comparative review

Q2 Health Professions Foot Pub Date : 2023-09-01 DOI:10.1016/j.foot.2023.102046
Louise Burnie , Nachiappan Chockalingam , Alex Holder , Tim Claypole , Liam Kilduff , Neil Bezodis
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引用次数: 0

Abstract

Pressure measurement systems have numerous applications in healthcare and sport. The purpose of this review is to: (a) describe the brief history of the development of pressure sensors for clinical and sport applications, (b) discuss the design requirements for pressure measurement systems for different applications, (c) critique the suitability, reliability, and validity of commercial pressure measurement systems, and (d) suggest future directions for the development of pressure measurements systems in this area. Commercial pressure measurement systems generally use capacitive or resistive sensors, and typically capacitive sensors have been reported to be more valid and reliable than resistive sensors for prolonged use. It is important to acknowledge, however, that the selection of sensors is contingent upon the specific application requirements. Recent improvements in sensor and wireless technology and computational power have resulted in systems that have higher sensor density and sampling frequency with improved usability – thinner, lighter platforms, some of which are wireless, and reduced the obtrusiveness of in-shoe systems due to wireless data transmission and smaller data-logger and control units. Future developments of pressure sensors should focus on the design of systems that can measure or accurately predict shear stresses in conjunction with pressure, as it is thought the combination of both contributes to the development of pressure ulcers and diabetic plantar ulcers. The focus for the development of in-shoe pressure measurement systems is to minimise any potential interference to the patient or athlete, and to reduce power consumption of the wireless systems to improve the battery life, so these systems can be used to monitor daily activity. A potential solution to reduce the obtrusiveness of in-shoe systems include thin flexible pressure sensors which can be incorporated into socks. Although some experimental systems are available further work is needed to improve their validity and reliability.

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用于运动和健康应用的商用压力传感器:比较综述。
压力测量系统在医疗保健和体育运动中有许多应用。这篇综述的目的是:(a)描述用于临床和运动应用的压力传感器的发展简史,(b)讨论不同应用的压力测量系统的设计要求,以及(d)为该领域的压力测量系统的发展提出未来方向。商业压力测量系统通常使用电容式或电阻式传感器,并且通常电容式传感器已经被报道为对于长期使用而言比电阻式传感器更有效和可靠。然而,重要的是要承认,传感器的选择取决于具体的应用要求。传感器和无线技术以及计算能力的最新改进使系统具有更高的传感器密度和采样频率,并提高了可用性-更薄、更轻的平台,其中一些是无线的,并且由于无线数据传输和更小的数据记录器和控制单元,减少了鞋内系统的突兀性。压力传感器的未来发展应该集中在能够测量或准确预测剪切应力和压力的系统的设计上,因为人们认为两者的结合会导致压疮和糖尿病足底溃疡的发展。鞋内压力测量系统的开发重点是最大限度地减少对患者或运动员的任何潜在干扰,并减少无线系统的功耗以提高电池寿命,因此这些系统可用于监测日常活动。减少鞋内系统突兀性的一种潜在解决方案包括可以结合到袜子中的薄柔性压力传感器。尽管有一些实验系统可用,但还需要进一步的工作来提高它们的有效性和可靠性。
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来源期刊
Foot
Foot Health Professions-Podiatry
CiteScore
2.00
自引率
0.00%
发文量
37
期刊介绍: The Foot is an international peer-reviewed journal covering all aspects of scientific approaches and medical and surgical treatment of the foot. The Foot aims to provide a multidisciplinary platform for all specialties involved in treating disorders of the foot. At present it is the only journal which provides this inter-disciplinary opportunity. Primary research papers cover a wide range of disorders of the foot and their treatment, including diabetes, vascular disease, neurological, dermatological and infectious conditions, sports injuries, biomechanics, bioengineering, orthoses and prostheses.
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