Modern Technologies in Industrial Engineering 2015 | |
Electromagnetic pulses bone healing booster | |
Sintea, S.R.^1 ; Pomazan, V.M.^2 ; Bica, D.^3 ; Grebenisan, D.^4 ; Bordea, N.^1 | |
Constanta Maritime University, Faculty of Naval Electro-Mechanics, 104 Mircea cel Batran Street, Constanta | |
900663, Romania^1 | |
Ovidius University, Faculty of Mechanical Engineering, 124 Mamaia Blvd., Constanta | |
900527, Romania^2 | |
C.M.I Daniela Bica, 10 Industriala, Constanta, Romania^3 | |
DG Engineering, 7 Headlands Crescent Witby, ON | |
L1R1Z9, Canada^4 | |
关键词: Current monitoring; Digital electronics; Electromagnetic field control; Electromagnetic parameters; Electromagnetic stimulation; Number of components; Surface mounting devices; Surface mounting technologies; | |
Others : https://iopscience.iop.org/article/10.1088/1757-899X/95/1/012061/pdf DOI : 10.1088/1757-899X/95/1/012061 |
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来源: IOP | |
【 摘 要 】
Posttraumatic bone restoration triggered by the need to assist and stimulate compensatory bone growth in periodontal condition. Recent studies state that specific electromagnetic stimulation can boost the bone restoration, reaching up to 30% decrease in recovery time. Based on the existing data on the electromagnetic parameters, a digital electronic device is proposed for intra oral mounting and bone restoration stimulation in periodontal condition. The electrical signal is applied to an inductive mark that will create and impregnate magnetic field in diseased tissue. The device also monitors the status of the electromagnetic field. Controlled wave forms and pulse frequency signal at programmable intervals are obtained with optimized number of components and miniaturized using surface mounting devices (SMD) circuits and surface mounting technology (SMT), with enhanced protection against abnormal current growth, given the intra-oral environment. The system is powered by an autonomous power supply (battery), to limit the problems caused by powering medical equipment from the main power supply. Currently the device is used in clinical testing, in cycles of six up to twelve months. Basic principles for the electrical scheme and algorithms for pulse generation, pulse control, electromagnetic field control and automation of current monitoring are presented, together with the friendly user interface, suitable for medical data and patient monitoring..
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