Nanotechnology Applications in Livestock Farming and Animal Health DOI
Mukul Machhindra Barwant,

Arshad Rasool,

Vishnu Kiran Mannam

et al.

Advances in environmental engineering and green technologies book series, Journal Year: 2024, Volume and Issue: unknown, P. 413 - 442

Published: May 1, 2024

As the global demand for high-quality animal products continues to rise, livestock industry faces unprecedented challenges in ensuring health, productivity, and sustainability of farming. Nanotechnology, with its ability manipulate materials at nanoscale, presents a promising frontier innovative solutions health husbandry. These applications nanotechnology farming, focusing on disease prevention, nutritional enhancement, environmental sustainability. The first section research delves into nanomaterials as novel tools prevention control livestock. second segment highlights use address Nanoscale nutrient delivery systems are investigated their capacity enhance bioavailability essential nutrients, such vitamins minerals, thereby improving growth, reproduction, overall health. Nanosensors used real-time monitoring parameters, feeding strategies nutrition.

Language: Английский

A multifunctional conductive organohydrogel as a flexible sensor for synchronous real-time monitoring of traumatic wounds and pro-healing process DOI
Ranran Si, Yifan Wang,

Yuchun Yang

et al.

Chemical Engineering Journal, Journal Year: 2024, Volume and Issue: 489, P. 151419 - 151419

Published: April 17, 2024

Language: Английский

Citations

29

Integrated surface microstructure and enhanced dielectric constant for constructing simple, low-cost, and high-performance flexible capacitive pressure sensor DOI
Teng Li, Zaihua Duan, Qi Huang

et al.

Sensors and Actuators A Physical, Journal Year: 2024, Volume and Issue: 376, P. 115629 - 115629

Published: June 24, 2024

Language: Английский

Citations

24

Enhancing Self-induced Polarization of PVDF-based Triboelectric Film by P-doped g-C3N4 for Ultrasensitive Triboelectric Pressure Sensors DOI

Yen-Shou Chiu,

Mia Rinawati, Yu‐Hsin Chang

et al.

Nano Energy, Journal Year: 2024, Volume and Issue: 131, P. 110207 - 110207

Published: Sept. 6, 2024

Language: Английский

Citations

16

Electromechanical performance of flexible sensor based on 3D printed biomimetic all-PDMS-coated multistage structure: Toward kinesiology monitoring and human-machine interaction DOI
Xiaohui Guo, Chengchao Jin, Xianghui Li

et al.

Sensors and Actuators A Physical, Journal Year: 2024, Volume and Issue: 369, P. 115193 - 115193

Published: Feb. 17, 2024

Language: Английский

Citations

12

Innovative Fabrication of Ultrasensitive and Durable Graphene Fiber Aerogel for Flexible Pressure Sensors DOI
Tingting Yang, Cheng Ma, Changyu Lin

et al.

Carbon, Journal Year: 2024, Volume and Issue: 229, P. 119484 - 119484

Published: July 22, 2024

Language: Английский

Citations

9

Flexible tactile sensors with biomimetic microstructures: Mechanisms, fabrication, and applications DOI

Zhuoqing Zhang,

Guodong Liu, Zhijian Li

et al.

Advances in Colloid and Interface Science, Journal Year: 2023, Volume and Issue: 320, P. 102988 - 102988

Published: Aug. 28, 2023

Language: Английский

Citations

22

The Role of 3D Printing Technologies in Soft Grippers DOI Creative Commons
Yangyang Xin, Xinran Zhou, Hyunwoo Bark

et al.

Advanced Materials, Journal Year: 2023, Volume and Issue: 36(34)

Published: Nov. 16, 2023

Soft grippers are essential for precise and gentle handling of delicate, fragile, easy-to-break objects, such as glassware, electronic components, food items, biological samples, without causing any damage or deformation. This is especially important in industries healthcare, manufacturing, agriculture, handling, biomedical, where accuracy, safety, preservation the objects being handled critical. article reviews use 3D printing technologies soft grippers, including those made functional materials, nonfunctional with sensors. processes that can be used to fabricate each class discussed. Available often primarily extrusion-based (fused deposition modeling direct ink writing), jet-based (polymer jet), immersion (stereolithography digital light processing). The materials selected fabricating include thermoplastic polymers, UV-curable polymer gels, conductive composites, hydrogels. It conclude revolutionize way fabricated, expanding their application domains reducing difficulties customization, fabrication, production.

Language: Английский

Citations

22

Flexible and Stretchable Pressure Sensors: From Basic Principles to State-of-the-Art Applications DOI Creative Commons
Thara Seesaard, Chatchawal Wongchoosuk

Micromachines, Journal Year: 2023, Volume and Issue: 14(8), P. 1638 - 1638

Published: Aug. 20, 2023

Flexible and stretchable electronics have emerged as highly promising technologies for the next generation of electronic devices. These advancements offer numerous advantages, such flexibility, biocompatibility, bio-integrated circuits, light weight, enabling new possibilities in diverse applications, including e-textiles, smart lenses, healthcare technologies, manufacturing, consumer electronics, wearable In recent years, significant attention has been devoted to flexible pressure sensors due their potential integration with medical devices monitoring human activity biological signals, heartbeat, respiratory rate, blood pressure, oxygen saturation, muscle activity. This review comprehensively covers all aspects developments sensors. It encompasses fundamental principles, force/pressure-sensitive materials, fabrication techniques low-cost high-performance sensors, investigations sensing mechanisms (piezoresistivity, capacitance, piezoelectricity), state-of-the-art applications.

Language: Английский

Citations

20

Recent development of piezoelectric biosensors for physiological signal detection and machine learning assisted cardiovascular disease diagnosis DOI Creative Commons

Shunyao Huang,

Yujia Gao,

Yian Hu

et al.

RSC Advances, Journal Year: 2023, Volume and Issue: 13(42), P. 29174 - 29194

Published: Jan. 1, 2023

This review provides the recent development of wearable piezoelectric biosensors assisted by machine learning for continuous and real-time health monitoring.

Language: Английский

Citations

19

A breathable and sweat-absorbing pressure sensor based on PDMS gradient foam to achieve high sensitivity and wide detection range DOI
Long Chen, Ye Han, Ping Yu

et al.

Composites Science and Technology, Journal Year: 2024, Volume and Issue: 253, P. 110628 - 110628

Published: April 25, 2024

Language: Английский

Citations

8