Development Methodologies of Wearable Biosensors for Personalized Health Monitoring

Development Methodologies of Wearable Biosensors for Personalized Health Monitoring
Author: Xuanbing Cheng
Publisher:
Total Pages: 0
Release: 2023
Genre:
ISBN:

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Wearable biomarker sensors have made significant strides in the realm of personalized healthcare, permitting the seamless acquisition of physiological data from non-invasively sourced biofluids. This research delves deeper into this frontier, investigating the potential of these sensors to monitor specific molecular biomarkers that provide granular insights into an individual's physiological and psychological states. In this thesis, three principal domains were particularly addressed: native electroactive biomarker detection, electroenzymatic detection of metabolites, and aptamer detection of xenobiotics and hormones.In chapter 2, we addressed the inherent challenges of employing voltammetry for the analysis of native electroactive biomarkers like uric acid. By introducing a fouling-resistant sensing interface that combines a boron-doped diamond electrode with a hydrophilic chitosan membrane, we provided an effective solution to the biofouling challenges that typically plague the analysis of untreated biofluids. In chapter 3 and chapter 4, our research tapped into the capabilities of oxidoreductase enzymes for indirectly reactive biomarker electroenzymatic detection. In chapter 3, we revealed the inherent limitations of the traditionally used mediator-free sensing interface for wearable applications, and devised an alternative that incorporates a permselective membrane and a platinum/carbon-nanotube-based electroanalysis layer. This approach is adaptable to measure a wide range of vital metabolites like glucose, lactate, and choline. Furthermore, in chapter 4, our design of a unique cofactor-integrated biosensing framework, utilizing cofactor immobilized single-wall carbon nanotubes, laid the foundation for broad in vivo enzymatic sensing, specifically capitalizing on nicotinamide adenine dinucleotide-based enzymatic reactions. In chapter 5 and chapter 6, we shifted the focus to the aptamer detection of xenobiotics and hormones. In chapter 5, by integrating an aptamer functionalized field-effect-transistor sensing system, our research demonstrated continuous wearable sweat cortisol monitoring. In chapter 6, our innovative microneedle-based electrochemical aptamer biosensor patch offers real-time insights into the pharmacokinetics of drugs in interstitial fluid circulation. Demonstrated through in vivo tests on specific antibiotics such as tobramycin and vancomycin, our advancements in wearable biosensors stand to revolutionize potential applications in healthcare, furnishing users with accurate, prompt, and insightful data about their health metrics.

Machine Learning Methods for Personalized Health Monitoring Using Wearable Sensors

Machine Learning Methods for Personalized Health Monitoring Using Wearable Sensors
Author: Annamalai Natarajan
Publisher:
Total Pages:
Release: 2019
Genre:
ISBN:

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Mobile health is an emerging field that allows for real-time monitoring of individuals between routine clinical visits. Among others it makes it possible to remotely gather health signals, track disease progression and provide just-in-time interventions. Consumer grade wearable sensors can remotely gather health signals and other time series data. While wearable sensors can be readily deployed on individuals, there are significant challenges in converting raw sensor data into actionable insights. In this dissertation, we develop machine learning methods and models for personalized health monitoring using wearables. Specifically, we address three challenges that arise in these settings. First, data gathered from wearable sensors is noisy making it challenging to extract relevant but nuanced features. We develop probabilistic graphical models to effectively encode domain knowledge when extracting features from noisy wearable sensor data. Second, prediction models developed on one population in lab settings may not generalize to other populations in field settings. We develop domain adaptation techniques to improve lab-to-field generalizability. Third, collecting ground truth labels for health monitoring applications is expensive and burdensome. We develop active learning methods to minimize the effort involved in collecting ground truth labels. We evaluate these methods and models on two case studies: cocaine use detection and human activity recognition.

Wearable Sensors

Wearable Sensors
Author: Edward Sazonov
Publisher: Elsevier
Total Pages: 649
Release: 2014-08-14
Genre: Technology & Engineering
ISBN: 0124186661

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Written by industry experts, this book aims to provide you with an understanding of how to design and work with wearable sensors. Together these insights provide the first single source of information on wearable sensors that would be a valuable addition to the library of any engineer interested in this field. Wearable Sensors covers a wide variety of topics associated with the development and application of various wearable sensors. It also provides an overview and coherent summary of many aspects of current wearable sensor technology. Both industry professionals and academic researchers will benefit from this comprehensive reference which contains the most up-to-date information on the advancement of lightweight hardware, energy harvesting, signal processing, and wireless communications and networks. Practical problems with smart fabrics, biomonitoring and health informatics are all addressed, plus end user centric design, ethical and safety issues. Provides the first comprehensive resource of all currently used wearable devices in an accessible and structured manner Helps engineers manufacture wearable devices with information on current technologies, with a focus on end user needs and recycling requirements Combines the expertise of professionals and academics in one practical and applied source

Biosensors for Personalized Healthcare

Biosensors for Personalized Healthcare
Author: Kuldeep Mahato
Publisher: Springer
Total Pages: 0
Release: 2024-10-04
Genre: Medical
ISBN: 9789819754724

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This book covers the basic principles and advanced methods used in the advancement of bioelectronics for therapeutic purposes. This book provides a thorough examination of the development and progress in bioelectronics devices and biosensors, emphasizing current improvements in individualized diagnostics using biosensing modules, tools, and approaches. It offers useful insights into the creation of biosensors for individualized healthcare diagnostics by analyzing the underlying principles of sensing methods. This book primarily emphasizes the incorporation of biosensing technologies into wearable, implantable, and biomedical devices. These advancements are transforming healthcare by enabling uninterrupted monitoring and immediate data gathering, ultimately improving patient care. The book also highlights the significance of downsizing biosensor platforms, demonstrating approaches that enhance the compactness and efficiency of these devices while maintaining their performance. The book also discusses point-of-care devices, which are of great importance. These devices are essential in clinical laboratories and care units, such as ICUs and ambulatory settings, since they provide fast, precise, and immediate diagnostic capabilities. The book showcases the most recent breakthroughs in personalized diagnostics via the use of biosensing-based bioelectronics devices, highlighting its capacity to revolutionize the provision of healthcare. This book examines the real-world uses of biosensor technology in customized healthcare throughout various chapters. It explores the customization of these devices to cater to the specific requirements of each patient, enabling accurate and prompt medical treatments. This book is a valuable resource for academics, practitioners, and enthusiasts in the subject of bioelectronics and healthcare. It combines in-depth scientific discussions with practical real-world applications. In essence, this book serves as a foundation for comprehending the profound influence of biosensor technology on personalized health care. This book encourages readers to investigate the promising opportunities that await in the field of bioelectronics, where groundbreaking devices and methods are poised to revolutionize medical diagnostics and patient treatment.

Wearable Monitoring Systems

Wearable Monitoring Systems
Author: Annalisa Bonfiglio
Publisher: Springer Science & Business Media
Total Pages: 301
Release: 2010-12-17
Genre: Technology & Engineering
ISBN: 1441973842

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As diverse as tomorrow’s society constituent groups may be, they will share the common requirements that their life should become safer and healthier, offering higher levels of effectiveness, communication and personal freedom. The key common part to all potential solutions fulfilling these requirements is wearable embedded systems, with longer periods of autonomy, offering wider functionality, more communication possibilities and increased computational power. As electronic and information systems on the human body, their role is to collect relevant physiological information, and to interface between humans and local and/or global information systems. Within this context, there is an increasing need for applications in diverse fields, from health to rescue to sport and even remote activities in space, to have real-time access to vital signs and other behavioral parameters for personalized healthcare, rescue operation planning, etc. This book’s coverage will span all scientific and technological areas that define wearable monitoring systems, including sensors, signal processing, energy, system integration, communications, and user interfaces. Six case studies will be used to illustrate the principles and practices introduced.

Wearable and Nearable Biosensors and Systems for Healthcare

Wearable and Nearable Biosensors and Systems for Healthcare
Author: Marco Di Rienzo
Publisher: MDPI
Total Pages: 226
Release: 2021-09-01
Genre: Technology & Engineering
ISBN: 3036509747

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Biosensors and systems in the form of wearables and “nearables” (i.e., everyday sensorized objects with transmitting capabilities such as smartphones) are rapidly evolving for use in healthcare. Unlike conventional approaches, these technologies can enable seamless or on-demand physiological monitoring, anytime and anywhere. Such monitoring can help transform healthcare from the current reactive, one-size-fits-all, hospital-centered approach into a future proactive, personalized, decentralized structure. Wearable and nearable biosensors and systems have been made possible through integrated innovations in sensor design, electronics, data transmission, power management, and signal processing. Although much progress has been made in this field, many open challenges for the scientific community remain, especially for those applications requiring high accuracy. This book contains the 12 papers that constituted a recent Special Issue of Sensors sharing the same title. The aim of the initiative was to provide a collection of state-of-the-art investigations on wearables and nearables, in order to stimulate technological advances and the use of the technology to benefit healthcare. The topics covered by the book offer both depth and breadth pertaining to wearable and nearable technology. They include new biosensors and data transmission techniques, studies on accelerometers, signal processing, and cardiovascular monitoring, clinical applications, and validation of commercial devices.

Sensors for Health Monitoring

Sensors for Health Monitoring
Author: Nilanjan Dey
Publisher: Academic Press
Total Pages: 322
Release: 2019-09-09
Genre: Technology & Engineering
ISBN: 012819362X

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Sensors for Health Monitoring discusses the characteristics of U-Healthcare systems in different domains, providing a foundation for working professionals and undergraduate and postgraduate students. The book provides information and advice on how to choose the best sensors for a U-Healthcare system, advises and guides readers on how to overcome challenges relating to data acquisition and signal processing, and presents comprehensive coverage of up-to-date requirements in hardware, communication and calculation for next-generation uHealth systems. It then compares new technological and technical trends and discusses how they address expected u-Health requirements. In addition, detailed information on system operations is presented and challenges in ubiquitous computing are highlighted. The book not only helps beginners with a holistic approach toward understanding u-Health systems, but also presents researchers with the technological trends and design challenges they may face when designing such systems. Presents an outstanding update on the use of U-Health data analysis and management tools in different applications, highlighting sensor systems Highlights Internet of Things enabled U-Healthcare Covers different data transmission techniques, applications and challenges with extensive case studies for U-Healthcare systems

Wearable Biosensing in Medicine and Healthcare

Wearable Biosensing in Medicine and Healthcare
Author: Kohji Mitsubayashi
Publisher: Springer Nature
Total Pages: 483
Release: 2024-01-03
Genre: Technology & Engineering
ISBN: 9819981220

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This book contains chapters on wearable biomedical sensors and their assistive technologies for promoting behavioral change in medical and health care. Part I reviews several wearable biomedical sensors based on biocompatible materials and nano and micro-electromechanical systems (MEMS) technologies in the medical and dental fields. Part II introduces the latest approaches to wearable biosensing using unique devices for various skin targets such as sweat, interstitial fluid, and transcutaneous gases. Part III presents technologies supporting wearable sensors, including soft and flexible materials, manufacturing methods, skin volatile-marker imaging, and energy harvesting devices. This book is intended for graduate students, academic researchers, and professors that work in medical and healthcare research fields, as well as industry professionals involved in the development of wearable and flexible sensing devices and measurement systems for human bio/chemical sensing, medical monitoring, and healthcare services, and for medical professionals and government officials who are driving behavior change in health care.

Integrated Smart Micro-Systems Towards Personalized Healthcare

Integrated Smart Micro-Systems Towards Personalized Healthcare
Author: Yu Song
Publisher: John Wiley & Sons
Total Pages: 224
Release: 2021-12-09
Genre: Technology & Engineering
ISBN: 352783348X

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Integrated Smart Micro-Systems Towards Personalized Healthcare Presents a thorough summary of recent advances in microelectronic systems and their applications for personalized healthcare Integrated Smart Micro-Systems Towards Personalized Healthcare provides up-to-date coverage of developments in smart microelectronics and their applications in health-related areas such as sports safety, remote diagnosis, and closed-loop health management. Using a comprehensive approach to the rapidly growing field, this one-stop resource examines different methods, designs, materials, and applications of systems such as multi-modal sensing biomedical platforms and non-invasive health monitoring sensors. The book’s five parts detail the core units of micro-systems, self-charging power units, self-driven monitor patches, self-powered sensing platforms, and integrated health monitoring systems. Succinct chapters address topics including multi-functional material optimization, multi-dimensional electrode preparation, multi-scene application display, and the use of multi-modal signal sensing to monitor physical and chemical indicators during exercise. Throughout the text, the authors offer key insights on device performance improvement, reliable fabrication processing, and compatible integration designs. Provides an overview self-powered, wearable micro-systems with emphasis on personalized healthcare Covers the working mechanisms and structural design of different energy-harvesting units, energy storage units, and functional units Introduces an integrated self-charging power unit consisting of triboelectric nanogenerators with supercapacitor Describes a general solution-evaporation method for developing porous CNT-PDMS conductive elastomers Examines a fully-integrated self-powered sweat sensing platform built on a wearable freestanding-mode triboelectric nanogenerator Integrated Smart Micro-Systems Towards Personalized Healthcare is an essential text for researchers, electronic engineers, entrepreneurs, and industry professionals working in material science, electronics, mechanical engineering, bioengineering, and sensor development.

Wearable Bioelectronics

Wearable Bioelectronics
Author: Anthony P.F. Turner
Publisher: Elsevier
Total Pages: 238
Release: 2019-11-26
Genre: Technology & Engineering
ISBN: 0081024088

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Wearable Bioelectronics presents the latest on physical and (bio)chemical sensing for wearable electronics. It covers the miniaturization of bioelectrodes and high-throughput biosensing platforms while also presenting a systemic approach for the development of electrochemical biosensors and bioelectronics for biomedical applications. The book addresses the fundamentals, materials, processes and devices for wearable bioelectronics, showcasing key applications, including device fabrication, manufacturing, and healthcare applications. Topics covered include self-powering wearable bioelectronics, electrochemical transducers, textile-based biosensors, epidermal electronics and other exciting applications. Includes comprehensive and systematic coverage of the most exciting and promising bioelectronics, processes for their fabrication, and their applications in healthcare Reviews innovative applications, such as self-powering wearable bioelectronics, electrochemical transducers, textile-based biosensors and electronic skin Examines and discusses the future of wearable bioelectronics Addresses the wearable electronics market as a development of the healthcare industry