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1.
Artigo em Inglês | MEDLINE | ID: mdl-19963629

RESUMO

In the frame of the Flemish Community funded project Bioflex we developed and fabricated an implant for short term (< 7 days) bladder pressure monitoring, and diagnosis of incontinence. This implant is soft and flexible to prevent damaging the bladder's inner wall. It contains a standard flexible electronic circuit connected to a battery, which are embedded in surface treated silicone to enhance the biocompatibility and prevent salt deposition. This article describes the fabrication of the pill and the results of preliminary cytotoxicity tests. The electronic design and its tests, implantation and the result of the in-vivo experimentation will be presented in other articles.


Assuntos
Desenho de Equipamento/instrumentação , Pressão , Próteses e Implantes , Desenho de Prótese/instrumentação , Bexiga Urinária/fisiologia , Desenho de Equipamento/métodos , Humanos , Desenho de Prótese/métodos , Urodinâmica
2.
Artigo em Inglês | MEDLINE | ID: mdl-18003303

RESUMO

In order to fit human body, flexibility, or even better stretchability is requested for biomedical systems like implants or smart clothes. A stretchable electronic technology has been developed. This can provide highly stretchable interconnections fully compatible with PCB technologies. In order to prove the feasibility of complex biomedical systems like inner body implants or wearable systems, a variety of stretchable systems has been designed from sensor to power source systems.


Assuntos
Biotecnologia/instrumentação , Vestuário , Fontes de Energia Elétrica , Eletrônica/instrumentação , Monitorização Ambulatorial/instrumentação , Telemetria/instrumentação , Transdutores , Elasticidade , Desenho de Equipamento , Análise de Falha de Equipamento , Monitorização Ambulatorial/métodos
3.
Artigo em Inglês | MEDLINE | ID: mdl-18003536

RESUMO

For user comfort reasons, electronic circuits for implantation in the human body or for use as smart clothes should ideally be soft, stretchable and elastic. In this contribution the results of an MID (Molded Interconnect Device) technology will be presented, showing the feasibility of functional stretchable electronic circuits. In the developed technology rigid or flexible standard components are interconnected by meander shaped metallic wires and embedded by molding in a stretchable substrate polymer. Several technologies have been developed to this purpose, which combine low cost and good reliability under mechanical strain. In this way reliable stretchability of the circuits above 100% has been demonstrated. Enhanced reliability has been reached using an additional conductive polymer layer.


Assuntos
Materiais Revestidos Biocompatíveis , Eletrônica , Elastômeros de Silicone , Compostos de Vinila , Cobre , Elasticidade , Análise de Elementos Finitos , Ouro , Interações Hidrofóbicas e Hidrofílicas , Níquel , Próteses e Implantes , Estresse Mecânico , Telemetria/instrumentação , Têxteis
4.
Conf Proc IEEE Eng Med Biol Soc ; 2004: 2161-4, 2004.
Artigo em Inglês | MEDLINE | ID: mdl-17272152

RESUMO

Improvement of the quality and efficiency of the quality of health in medicine, at home and in hospital becomes more and more important Designed to be user-friendly, smart clothes and gloves fit well for such a citizen use and health monitoring. Analysis of the autonomic nervous system using non-invasive sensors provides information for the emotional, sensorial, cognitive and physiological analysis. MARSIAN (modular autonomous recorder system for the measurement of autonomic nervous system) is a wrist ambulatory monitoring and recording system with a smart glove with sensors for the detection of the activity of the autonomic nervous system. It is composed of a "smart tee shirt", a "smart glove", a wrist device and PC which records data. The smart glove is one of the key point of MARSIAN. Complex movements, complex geometry, sensation make smart glove designing a challenge. MARSIAN has a large field of applications and researches (vigilance, behaviour, sensorial analysis, thermal environment for human, cognition science, sport, etc...) in various fields like neurophysiology, affective computing and health monitoring.

5.
Stud Health Technol Inform ; 108: 9-35, 2004.
Artigo em Inglês | MEDLINE | ID: mdl-15718626

RESUMO

The world is becoming more and more health conscious. Society, health policy and patients' needs are all changing dramatically. The challenges society is currently facing are related to the increase in the aging population, changes in lifestyle, the need for healthcare cost containment and the need for improvement and monitoring of healthcare quality. The emphasis is put on prevention rather than on treatment. In addition, patients and health consumers are waiting for non-invasive or minimally-invasive diagnosis and treatment methods, for home care, short stays in hospital, enhancement of rehabilitation, information and involvement in their own treatment. Progress in science and technology offers, today, miniaturization, speed, intelligence, sophistication and new materials at lower cost. In this new landscape, microtechnologies, information technologies and telecommunications are key factors. Telemedicine has also evolved. Used initially to exchange patients' files, radiographic data and other information between health providers, today telemedicine contributes to new trends in "hospital extension" through all-day monitoring of vital signs, professional activities, entertainment and home-based activities. The new possibilities for home care and ambulatory monitoring are provided at 4 levels: a) Microsensors. Microtechnologies offer the possibility of small size, but also of intelligent, active devices, working with low energy, wireless and non-invasive or minimally-invasive; b) Wrist devices are particularly user friendly and combine sensors, circuits, supply, display and wireless transmission in a single box, very convenient for common physical activities; c) Health smart clothes make contact with 90 % of the skin and offer many possibilities for the location of sensors. These sensors have to be thin, flexible and compatible with textiles, or made using textile technologies, such as new fibers with specific (mechanical, electrical and optical) properties; d) Health smart homes. The aim of this method is to improve the patient's living conditions and to avoid the cost of long hospitalization. "Exosensors" are used for measurement of the activity and behavior of the patient. The field of applications is very large, e.g. continuous monitoring of elderly populations, professional and military activities, athletes performance and condition, and people with disabilities. This new healthcare approach has to take into account lifestyle for improving prevention. For the patient to be more and more involved in his/her own therapy, new responsibilities and ethics have to be defined. A "societal health education" has to be provided to physicians and to patients to get all the benefits of this new context.


Assuntos
Tecnologia Biomédica/tendências , Serviços de Assistência Domiciliar , Monitorização Ambulatorial/instrumentação , Monitorização Ambulatorial/métodos , Vestuário , Humanos , Aplicações da Informática Médica , Telemedicina/métodos , Têxteis
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