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Methods for assessing the impact of the energy fields of implantable wireless charging device and biotelemetric system on experimental animals

机译:用于评估植入无线充电装置的能量场和生物速度系统对实验动物的影响的方法

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The article describes the influence of electromagnetic fields during testing on experimental animals(rats)of a developed experimental prototype of a device for providing wireless charging of implant batteries.The invention relates to medical implantable devices that receive transdermal energy transfer and is aimed at solving the problem of optimizing this type of energy transfer.A magnetic field of any origin affects individual organs and the biological organism as a whole.The article presents the main indicators affecting biological objects,namely:the relative magnetic permeability of the environment,the magnitude of the wave,the power that is distributed in the dielectric material with losses,the penetration depth of the electromagnetic wave and the magnitude of the wave resistance.The integration scheme of prototypes of a wireless charger and an implantable biotelemetric system is considered.The testing of the performance of a wireless charger while integrating with an implantable biotelemetric system is considered in details.The test results confirmed the compliance of these parameters with theoretical ratios and the requirements of technical specifications.
机译:该物品描述了在用于提供植入电池的无线充电的装置的实验动物(大鼠)测试期间的影响。本发明涉及接收透皮能量转移的医疗可植入装置,并旨在解决优化这种类型的能量转移的问题。任何原产地的磁场都会影响单个器官和整体的生物生物。本文呈现了影响生物物体的主要指标,即:环境的相对磁导率,尺寸波浪,具有损耗的介电材料中的电力,电磁波的穿透深度和波阻力的大小。考虑了无线充电器的原型的集成方案和可植入的生物速度系统。测试无线充电器的性能,同时与植入B集成细节考虑了IoTeleMetric系统。测试结果证实了这些参数的符合性,理论比率和技术规范的要求。

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