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Smart Bandage Technologies

Smart Bandage Technologies
Author: James Davis
Publisher: Academic Press
Total Pages: 276
Release: 2016-06-29
Genre: Technology & Engineering
ISBN: 0128038462

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Smart Bandage Technology: Design and Application is a guide to the integration of sensors and electronic systems into bandages for the application of wound management. Davis provides a comprehensive guide to the design and development of functional material for wound management for engineers of all levels possessing core knowledge in chemistry, biochemistry, and materials science. Includes an introduction to the design of advanced wound care technologies for undergraduate engineers, as well as a coherent exploration of competing technologies suitable for postgraduate and postdoctoral researchers. Each section provides a high level overview of the concepts and techniques involved in developing smart bandages, including their manufacturing, operation, and implementation, and also exposes and explores the most recent approaches to wound care in more detail. This book incorporates contextual boxes to provide a greater degree of detail to examples given and also includes an extensive bibliography for those seeking to research further on the various topics discussed. Combines physiological aspects of wound healing with sensor engineering aspects of smart bandages Provides an up-to-date overview of research initiatives in this field which are building the foundation for the next generation of medical textiles Learn how to design, develop, and integrate ‘smart systems’ with materials for wound management incorporates contextual boxes to provide a greater degree of detail to examples given and also includes an extensive bibliography for those seeking to research further on the various topics discussed


Innovations and Emerging Technologies in Wound Care

Innovations and Emerging Technologies in Wound Care
Author: Amit Gefen
Publisher: Academic Press
Total Pages: 406
Release: 2019-11-05
Genre: Science
ISBN: 0128150289

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Innovations and Emerging Technologies in Wound Care is a pivotal book on the prevention and management of chronic and non-healing wounds. The book clearly presents the research and evidence that should be considered when planning care interventions to improve health related outcomes for patients. New and emerging technologies are discussed and identified, along with tactics on how they can be integrated into clinical practice. This book offers readers a bridge between biomedical engineering and medicine, with an emphasis on technological innovations. It includes contributions from engineers, scientists, clinicians and industry professionals. Users will find this resource to be a complete picture of the latest knowledge on the tolerance of human tissues to sustained mechanical and thermal loads that also provides a deeper understanding of the risk for onset and development of chronic wounds. Describes the state-of-knowledge in wound research, including tissue damage cascades and healing processes Covers all state-of-the-art technology in wound prevention, diagnosis, prognosis and treatment Discusses emerging research directions and future technology trends in the field of wound prevention and care Offers a bench-to-bedside exploration of the key issues that affect the practice of prevention and management of non-healing wounds


A Smart Bandage Equipped with Miniaturized Needle Arrays and Wirelessly-controlled Drug Delivery System for the Treatment of Chronic Wounds

A Smart Bandage Equipped with Miniaturized Needle Arrays and Wirelessly-controlled Drug Delivery System for the Treatment of Chronic Wounds
Author: Hossein Derakhshandeh
Publisher:
Total Pages: 110
Release: 2019
Genre:
ISBN:

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Chronic wounds are one of the most challenging complications of diabetes and are the leading cause of non-traumatic limb amputation. Despite the progress in identifying factors and promising in vitro results for the treatment of chronic wounds, their clinical translation has been limited. Given the range of disruptive processes necessary for wound healing, different pharmacological agents are needed at different stages of tissue regeneration. This requires the capability of wearable devices to deliver agents to critical layers of the epidermis with minimum invasiveness. Here, for the first time, I have engineered a programmable platform which is capable of actively delivering a variety of drugs with independent temporal profiles through miniaturized needle arrays (MNAs) into deeper layers of the wound bed. The delivery of vascular endothelial growth factor (VEGF) through the MNAs demonstrated that, in addition to the selection of suitable therapeutics, the delivery method and their spatial distribution within the wound bed is equally important. Administration of VEGF to chronic dermal wounds of diabetic mice using the programmable platform showed a significant increase in wound closure, re-epithelialization, angiogenesis, and hair growth when compared to standard topical delivery of therapeutics.


New AI-Enhanced Bandages Confident to Transform Wound Healing.

New AI-Enhanced Bandages Confident to Transform Wound Healing.
Author: DR. HAKIM. K.SABOOWALA
Publisher: Dr.Hakim Saboowala
Total Pages: 42
Release: 2023-09-27
Genre: Medical
ISBN:

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New AI-Enhanced Bandages Confident to Transform Wound Healing. Chronic non-healing wounds are major healthcare challenges that affect a significant number of people; they exert a severe financial burden and are the leading cause of limb amputation. Although chronic wounds are locked in a persisting inflamed state, they are dynamic and proper therapy requires identifying abnormalities, administering proper drugs and growth factors, and modulating the conditions of the environment. An attempt has been made in this Booklet to briefly describe the prospect of “Smart Bandages” and their use for promoting the Healing of Chronic Battle wounds/Blast wounds to mitigate the risk of Sepsis Also attempted to highlight precisely drug delivery tool that have been integrated with bandages. …Dr. H. K. Saboowala M.B.(Bom) .M.R.S.H.(London)


2020 IEEE International Conference on Flexible and Printable Sensors and Systems (FLEPS)

2020 IEEE International Conference on Flexible and Printable Sensors and Systems (FLEPS)
Author: IEEE Staff
Publisher:
Total Pages:
Release: 2020-08-16
Genre:
ISBN: 9781728152790

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Given the exponential growth seen in the flexible, printed and disposable sensor technology, the development of novel printable and solution processable nanomaterials, and the development of novel printing techniques that have brought about a new wave of novel printed sensor technologies and applications, the IEEE FLEPS offers an excellent forum to discuss latest developments in the field as well as understand the future roadmap


A Smart Bandage for the Automatic Detection and Treatment of P. Aeruginosa Infections in Burns

A Smart Bandage for the Automatic Detection and Treatment of P. Aeruginosa Infections in Burns
Author: David Hamdi
Publisher:
Total Pages:
Release: 2020
Genre:
ISBN:

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Infection of thermal injuries by bacteria is a growing concern in the healthcare community, leading to increased rates of morbidity and mortality. P. aeruginosa, a rod-shaped, Gram-negative bacteria is one of the bacterial species most commonly found in infected burns. Detecting infections in burns is still a somewhat archaic process involving visual inspection, in which dressings have to be removed (also causing more pain and discomfort to patients) before samples are sent to a laboratory for analysis. Timely in situ detection systems, which limit disturbances to the wound area, could drastically improve patient comfort and healing outcomes. While established infections, with fully developed biofilms, are difficult to treat, loose bacteria early on in an infection and biofilm formation are more likely to fall easy prey to antibiotics, if the appropriate drugs are administered in a timely manner. In this thesis a smart wound management system, geared towards detecting and eliminating P. aeruginosa infections in burns is presented. Both non-functionalized general purpose electrodes, paired with an affordable open source potentiostat, for electrochemical analysis, and on demand drug releasing elements were developed by layering conductive materials onto everyday cotton threads. The sensing elements were thoroughly characterized with the detection of a P. aeruginosa biomarker over a range of physiologically relevant concentrations and conditions. The ability of the thread based sensors to detect live bacteria and be integrated in textile wound dressings was demonstrated. Controlled drug release was also demonstrated through the development of several drug release profiles. The presented technology has the potential to greatly improve patient outcomes in burn wards and provides a platform for tackling other infectious organisms with the further development of more thread based tools.