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1.
Expert Rev Med Devices ; 11(6): 617-35, 2014 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-25234709

RESUMO

This paper reviews instrumented hip joint replacements, instrumented femoral replacements and instrumented femoral fracture stabilizers. Examination of the evolution of such implants was carried out, including the detailed analysis of 16 architectures, designed by 8 research teams and implanted in 32 patients. Their power supply, measurement, communication, processing and actuation systems were reviewed, as were the tests carried out to evaluate their performance and safety. These instrumented implants were only designed to measure biomechanical and thermodynamic quantities in vivo, in order to use such data to conduct research projects and optimize rehabilitation processes. The most promising trend is to minimize aseptic loosening and/or infection following hip or femoral replacements or femoral stabilization procedures by using therapeutic actuators inside instrumented implants to apply controlled stimuli in the bone-implant interface.


Assuntos
Fraturas do Fêmur/diagnóstico , Fraturas do Fêmur/cirurgia , Fêmur/cirurgia , Prótese de Quadril , Fixadores Internos , Monitorização Ambulatorial/instrumentação , Tecnologia sem Fio/instrumentação , Eletrônica Médica/instrumentação , Desenho de Equipamento , Análise de Falha de Equipamento , Humanos , Avaliação da Tecnologia Biomédica
2.
J Biomech ; 46(15): 2561-71, 2013 Oct 18.
Artigo em Inglês | MEDLINE | ID: mdl-24050511

RESUMO

Instrumented hip implants were proposed as a method to monitor and predict the biomechanical and thermal environment surrounding such implants. Nowadays, they are being developed as active implants with the ability to prevent failures by loosening. The generation of electric energy to power active mechanisms of instrumented hip implants remains a question. Instrumented implants cannot be implemented without effective electric power systems. This paper surveys the power supply systems of seventeen implant architectures already implanted in-vivo, namely from instrumented hip joint replacements and instrumented fracture stabilizers. Only inductive power links and batteries were used in-vivo to power the implants. The energy harvesting systems, which were already designed to power instrumented hip implants, were also analyzed focusing their potential to overcome the disadvantages of both inductive-based and battery-based power supply systems. From comparative and critical analyses of the methods to power instrumented implants, one can conclude that: inductive powering and batteries constrain the full operation of instrumented implants; motion-driven electromagnetic energy harvesting is a promising method to power instrumented passive and active hip implants.


Assuntos
Fontes de Energia Elétrica , Prótese de Quadril , Humanos , Falha de Prótese
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