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An electromagnetic-induction approach for screw-hole targeting in interlocking-nail surgery

机译:互锁式指甲手术中的螺孔瞄准的电磁感应方法

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We report a novel approach for targeting screw-holes of an intramedullary nail in a long-bone fracture surgery. The approach utilizes the electromagnetic induction to avoid over exposure of radioactivity which is the critical issue in conventional X-ray-imaging targeting method. Based on the approach, we fabricate a targeting system. The targeting system consists of a c-shaped electromagnet, detecting-coil, guiding-mechanism, and measurement electronics. When a voltage is applied to the electromagnet, magnetic flux is generated in the air gap of the electromagnet and subsequently detected by the coil. When the flux is detected by the coil, a voltage response is induced in the coil. When a nail in a bone is scanned through the air gap of the electromagnet, the flux is influenced due to a discrepancy of the permeability between the location with and without the hole of the nail. The influenced flux induces different voltage response in the coil. Through analyzing the voltage response, we establish a criterion for targeting the holes. By the criterion, the experimental result shows the maximum error of targeting a hole with a diameter of 5 mm is less than 2.5 mm.
机译:我们报告了一种针对长骨骨折手术中针对髓内钉螺丝孔的新型方法。该方法利用电磁感应来避免放射性的过度暴露,这是常规X射线成像瞄准方法中的关键问题。基于此方法,我们构建了一个定位系统。瞄准系统由一个C形电磁铁,检测线圈,导向机构和测量电子设备组成。当向电磁体施加电压时,在电磁体的气隙中会产生磁通量,并随后被线圈检测到。当线圈检测到磁通量时,会在线圈中感应出电压响应。当穿过电磁体的气隙扫描骨骼中的指甲时,由于有和没有指甲孔的位置之间的磁导率差异,磁通量受到影响。受影响的磁通量会在线圈中引起不同的电压响应。通过分析电压响应,我们建立了针对孔的标准。根据标准,实验结果表明,瞄准直径为5 mm的孔的最大误差小于2.5 mm。

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