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Design of antenna-applicator for electromagnetic field applications and excitation model for rat and heat transfer analysis

机译:用于电磁场的天线施加器的设计以及用于大鼠和传热分析的激励模型

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There has been only a few technical progress which contribute to wound healing in the last century. Despite these advances wound healing is very hard issue to study because of its subjectivity, diversity and complexity of the wound healing process and diversity of patients. Molecules are insufficient in the chronic wound and unlike other cells multiplying endothelial cells interrupt the healing process. To restart this process, cells can be excitated by pulsed electromagnetic fields stimulation method. When a suitable frequency and waveform electromagnetic field (EMF) signal is applied to the target tissue with the help of a coil or applicator physiological effects occurs at the cellular size. Low-frequency electromagnetic fields are non-ionizing part of the EM spectrum and they are used as adjunct therapy in soft tissue injuries. In this study, an antenna-applicator design was performed and the effect of non-thermal pulsed radio frequency energy (PRFE) system to the wound created rat skin was examined.
机译:在上个世纪,只有很少的技术进步有助于伤口愈合。尽管取得了这些进展,但是由于伤口的主观性,伤口愈合过程的多样性和复杂性以及患者的多样性,伤口愈合仍然是一个非常难研究的问题。慢性伤口中的分子不足,与其他细胞不同,内皮细胞增殖会中断愈合过程。为了重新开始该过程,可以通过脉冲电磁场​​刺激方法来激发细胞。当借助线圈或施加器将合适的频率和波形电磁场(EMF)信号施加到目标组织时,在细胞大小上会发生生理效应。低频电磁场是EM频谱的非电离部分,它们被用作软组织损伤的辅助治疗。在这项研究中,进行了天线-天线设计,并研究了非热脉冲射频能量(PRFE)系统对创面大鼠皮肤的影响。

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