Rapid Detection of Staphylococcus aureus Using Paper-Derived Electrochemical Biosensors DOI
Lucas B. Ayres,

Jordan Brooks,

Kristi J. Whitehead

et al.

Analytical Chemistry, Journal Year: 2022, Volume and Issue: 94(48), P. 16847 - 16854

Published: Nov. 16, 2022

Several groups have recently explored the idea of developing electrochemical paper-based wearable devices, specifically targeting metabolites in sweat. While these sensors potential to provide a breadth analytical information, there are several key challenges address before can be widely adopted for clinical interventions. Toward this goal, we describe development sensor detection Staphylococcus aureus. Enabling application, report describes use paper-derived carbon electrodes, which were modified with thin layer sputtered gold (that minimizes lateral resistivity and significantly improves electron transfer process) chitosan (used as binder, offer flexibility). The resulting material was laser-patterned applied an biosensor controlled (via wireless connection) by custom-built, portable potentiostat. As no interference observed when exposed other bacteria or common metabolites, system (paper-derived electrodes + potentiostat) has detect presence S. aureus skin, commonly misdiagnosed mistreated infection.

Language: Английский

Significance of sensors for industry 4.0: Roles, capabilities, and applications DOI Creative Commons
Mohd Javaid, Abid Haleem, Ravi Pratap Singh

et al.

Sensors International, Journal Year: 2021, Volume and Issue: 2, P. 100110 - 100110

Published: Jan. 1, 2021

Sensors play a crucial role in factory automation making the system intellectual. Different types of sensors are available as per suitability and applications; some them produced mass market at affordable costs. The standard sensor position sensors, pressure flow temperature force sensors. They used many sectors, such motorsport, medical, industry, aerospace, agriculture, daily life. objective Industry 4.0 is to increase efficiency through automation. vital components 4.0, allowing several transitions changes positions, length, height, external dislocations industrial production facilities be detected, measured, analysed, processed. Smart factories will also enhance sustainability by tracking real-time output, automated control systems minimise potential maintenance It can seen that digitalisation improve mobility, which gives advanced manufacturing firms competitive advantage. This paper discusses their various types, along with significant capabilities for manufacturing. step-by-step working Blocks Quality Services during implementation elaborated diagrammatically. Finally, we identified thirteen applications 4.0. provides an excellent opportunity development across globe. In enjoy higher acceptance rates benefit from fully enabled connecting data exchange logistics integration. coming years, installations may grow process management, lines, digital supply chains.

Language: Английский

Citations

234

Machine Learning for Healthcare Wearable Devices: The Big Picture DOI Creative Commons
Farida Sabry, Tamer Eltaras, Wadha Labda

et al.

Journal of Healthcare Engineering, Journal Year: 2022, Volume and Issue: 2022, P. 1 - 25

Published: April 18, 2022

Using artificial intelligence and machine learning techniques in healthcare applications has been actively researched over the last few years. It holds promising opportunities as it is used to track human activities vital signs using wearable devices assist diseases’ diagnosis, can play a great role elderly care patient’s health monitoring diagnostics. With technological advances medical sensors miniaturization of electronic chips recent five years, more are being developed for devices. Despite remarkable growth smart watches other devices, these massive research efforts have found their way market. In this study, review different areas presented. Different challenges facing on discussed. Potential solutions from literature presented, open improvement further highlighted.

Language: Английский

Citations

184

Wearable and Mobile Sensors for Personalized Nutrition DOI
Juliane R. Sempionatto, Víctor Ruiz‐Valdepeñas Montiel,

Eva Vargas

et al.

ACS Sensors, Journal Year: 2021, Volume and Issue: 6(5), P. 1745 - 1760

Published: May 19, 2021

While wearable and mobile chemical sensors have experienced tremendous growth over the past decade, their potential for tracking guiding nutrition has emerged only three years. Currently, guidelines from doctors dietitians represent most common approach maintaining optimal status. However, such recommendations rely on population averages do not take into account individual variability in responding to nutrients. Precision recently address large heterogeneity individuals' responses diet, by tailoring based specific requirements of each person. It aims at preventing managing diseases formulating personalized dietary interventions individuals basis metabolic profile, background, environmental exposure. Recent advances digital technology, including calories-counting apps motion devices, lack ability monitoring molecular level. The realization effective precision requires synergy different sensor modalities order make timely reliable predictions efficient feedback. This work reviews key opportunities challenges toward successful platforms. Non-invasive electrochemical sensors, capable temporal variations upon intake food supplements, are excellent candidates bridge gap between biochemical analyses a approach. By providing (previously unavailable) information, offer guidance necessary supporting behavior change managed nutritional balance. Coupling rapidly emerging sensing devices—generating enormous dynamic analytical data—with data-fusion data-mining methods that identify patterns is expected revolutionize decision-making nutrition.

Language: Английский

Citations

163

Materials with Tunable Optical Properties for Wearable Epidermal Sensing in Health Monitoring DOI
Fei Han, Tiansong Wang, Guozhen Liu

et al.

Advanced Materials, Journal Year: 2022, Volume and Issue: 34(26)

Published: March 8, 2022

Advances in wearable epidermal sensors have revolutionized the way that physiological signals are captured and measured for health monitoring. One major challenge is to convert easily readable a convenient way. possibility based on visible readouts. There range of materials whose optical properties can be tuned by parameters such as temperature, pH, light, electric fields. Herein, this review covers highlights set with tunable their integration into Specifically, recent progress, fabrication, applications these summarized discussed. Finally, challenges perspectives next generation devices proposed.

Language: Английский

Citations

152

Energy Autonomous Sweat‐Based Wearable Systems DOI
Libu Manjakkal, Lu Yin, Arokia Nathan

et al.

Advanced Materials, Journal Year: 2021, Volume and Issue: 33(35)

Published: July 11, 2021

The continuous operation of wearable electronics demands reliable sources energy, currently met through Li-ion batteries and various energy harvesters. These solutions are being used out necessity despite potential safety issues unsustainable environmental impact. Safe sustainable can boost the use wearables systems in diverse applications such as health monitoring, prosthetics, sports. In this regard, sweat- sweat-equivalent-based studies have attracted tremendous attention demonstration energy-generating biofuel cells, promising power densities high 3.5 mW cm

Language: Английский

Citations

127

Soft Wearable Healthcare Materials and Devices DOI
Quanxia Lyu, Shu Gong,

Jialiang Yin

et al.

Advanced Healthcare Materials, Journal Year: 2021, Volume and Issue: 10(17)

Published: May 21, 2021

Abstract In spite of advances in electronics and internet technologies, current healthcare remains hospital‐centred. Disruptive technologies are required to translate state‐of‐art wearable devices into next‐generation patient‐centered diagnosis therapy. this review, recent the emerging field soft materials summarized. A prerequisite for such future is need novel be mechanically compliant, electrically conductive, biologically compatible. It begun with an overview two viable design strategies reported literatures, which followed by description state‐of‐the‐art monitoring physical, electrophysiological, chemical, biological signals. Self‐powered bioenergy also covered sensing systems, as well feedback‐controlled closed‐loop biodiagnostic therapy systems. Finally, it concluded overall summary perspective.

Language: Английский

Citations

126

Surface Wettability for Skin‐Interfaced Sensors and Devices DOI Creative Commons
Xiufeng Wang, Yangchengyi Liu, Huanyu Cheng

et al.

Advanced Functional Materials, Journal Year: 2022, Volume and Issue: 32(27)

Published: April 28, 2022

The practical applications of skin-interfaced sensors and devices in daily life hinge on the rational design surface wettability to maintain device integrity achieve improved sensing performance under complex hydrated conditions. Various bio-inspired strategies have been implemented engineer desired for varying Although bodily fluids can negatively affect performance, they also provide a rich reservoir health-relevant information sustained energy next-generation stretchable self-powered devices. As result, manipulation are critical effectively control liquid behavior enhanced performance. with engineered collect analyze health biomarkers while being minimally affected by or ambient humid environments. harvesters benefit from powering on-body electronics. In this review, we first summarize commonly used approaches tune target toward By considering existing challenges, discuss opportunities as small fraction potential future developments, which lead new class use digital personalized medicine.

Language: Английский

Citations

122

State of Sweat: Emerging Wearable Systems for Real-Time, Noninvasive Sweat Sensing and Analytics DOI
Roozbeh Ghaffari, Da Som Yang, Joohee Kim

et al.

ACS Sensors, Journal Year: 2021, Volume and Issue: 6(8), P. 2787 - 2801

Published: Aug. 5, 2021

Skin-interfaced wearable systems with integrated colorimetric assays, microfluidic channels, and electrochemical sensors offer powerful capabilities for noninvasive, real-time sweat analysis. This Perspective details recent progress in the development translation of novel personalized assessment dynamics biomarkers, precise sampling Sensor accuracy, system ruggedness, large-scale deployment remote environments represent key opportunity areas, enabling broad context field studies, clinical trials, commercialization. On-body measurements these contexts show good agreement compared to conventional laboratory-based analysis approaches. These device demonstrations highlight utility biochemical sensing platforms performance, wellness, health across a range applications.

Language: Английский

Citations

117

Recent Progress in Micro- and Nanotechnology-Enabled Sensors for Biomedical and Environmental Challenges DOI Creative Commons
Francisco J. Tovar‐Lopez

Sensors, Journal Year: 2023, Volume and Issue: 23(12), P. 5406 - 5406

Published: June 7, 2023

Micro- and nanotechnology-enabled sensors have made remarkable advancements in the fields of biomedicine environment, enabling sensitive selective detection quantification diverse analytes. In biomedicine, these facilitated disease diagnosis, drug discovery, point-of-care devices. environmental monitoring, they played a crucial role assessing air, water, soil quality, as well ensured food safety. Despite notable progress, numerous challenges persist. This review article addresses recent developments micro- for biomedical challenges, focusing on enhancing basic sensing techniques through micro/nanotechnology. Additionally, it explores applications addressing current both domains. The concludes by emphasizing need further research to expand capabilities sensors/devices, enhance sensitivity selectivity, integrate wireless communication energy-harvesting technologies, optimize sample preparation, material selection, automated components sensor design, fabrication, characterization.

Language: Английский

Citations

82

Requirements, challenges, and novel ideas for wearables on power supply and energy harvesting DOI

Yuehang Sun,

Yunze Li, Man Yuan

et al.

Nano Energy, Journal Year: 2023, Volume and Issue: 115, P. 108715 - 108715

Published: July 17, 2023

Language: Английский

Citations

55