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Design and Development of Pulse Electromagnetic Fields (PEMF) as Adjuvant Therapy for Fracture Healing: a preliminary study on rats

机译:脉冲电磁场​​(PEMF)作为骨折愈合辅助治疗的设计与发展:大鼠初步研究

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This study aims to design and develop the pulsed electromagnetic fields (PEMF) device which can be utilized as an adjuvant therapy in delayed union fracture. In the first stage, Arduino-based PEMF device has been built with four main modules: pulse generator, user interface, Helmholtz coil and data acquisition system. Pulse generator allowing user to operate the physical parameters: frequency, duty cycle, burst duration and exposure duration. The Helmholtz coil could produce 1.6 mT of homogenous magnetic field. In the next stage, preliminary study was done to evaluate the effect of static magnetic field (SMF) and PEMF exposure on the healing of delayed union fracture model on Spraque Dawley (SD) rats. Six SD rats were fracturized at the femoral shaft by non-union model, then they were grouped into 2 groups, 1 (n=3, SMFexposure, Bmax =1.6 mT) and 2 (n=3, PEMF exposure, Bmax =1.6 mT frequency = 50 Hz, duty cycle = 90%, burst cycle = 50%). Both groups had received the exposure for 4 hours per day and 7 hours per week. The evaluations of fracture healing were conducted by the histomorphometry analysis at 14,21, and 28 days fracturization. PEMF group signal a better healing process through higher osseous tissue area.
机译:本研究旨在设计和开发脉冲电磁场​​(PEMF)装置,其可以用作延迟联合骨折的佐剂治疗。在第一阶段,基于Arduino的PEMF器件已采用四个主模块构建:脉冲发生器,用户界面,亥姆霍兹线圈和数据采集系统。脉冲发生器允许用户操作物理参数:频率,占空比,突发持续时间和曝光持续时间。 Helmholtz线圈可以产生1.6吨的均匀磁场。在下一阶段,进行了初步研究以评估静态磁场(SMF)和PEMF暴露对Spraque Dawley(SD)大鼠延迟联合骨折模型的愈合的影响。通过非联合模型在股骨轴上在股骨轴下进行六只SD大鼠,然后将它们分为2组,1(n = 3,Smfexmosure,Bmax = 1.6mt)和2(n = 3,Pemf曝光,Bmax = 1.6 mt频率= 50Hz,占空比= 90%,突发周期= 50%)。两组均每天收到4小时的暴露,每周7小时。通过在14,21和28天的裂缝中分析进行裂缝愈合的评估。 PEMF组通过更高的骨组织区域发出更好的愈合过程。

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