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MRI MRI ‐based transfer function determination for the assessment of implant safety

机译:MRI MRI基于植入物安全评估的转移函数确定

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Purpose We introduce a new MR‐based method to determine the transfer function (TF) for radiofrequency (RF) safety assessment of active implantable medical devices. Transfer functions are implant‐specific measures that relate the incident tangential electric field on an (elongated) implant to a scattered electric field at its tip. The proposed method allows for TF determination with a high spatial resolution in relatively fast measurements without requiring dedicated bench setups from MRI images. Theory and Methods The principle of reciprocity is used in conjunction with the potential to measure currents with MRI to determine TF. Low‐flip angle 3D dual gradient echo MRI data are acquired with an implant as transceive antenna, which requires minimal hardware adaptations. The implant‐specific TF is determined from the acquired MRI data, with two different postprocessing methods for comparison. Results TFs of linear and helical implants can be determined accurately (with a Pearson correlation coefficient R?≥?0.7 between measurements and simulations, and a difference in field at the tip ΔEtip?≤?19%) from relatively quick (t??20?minutes) MRI acquisitions with (several) millimeter spatial resolution. Conclusion Transfer function determination with MRI for RF safety assessment of implantable medical devices is possible. The proposed MR‐based method allows for TF determination in more realistic exposure scenarios and solid media. Magn Reson Med 78:2449–2459, 2017. ? 2017 International Society for Magnetic Resonance in Medicine
机译:目的,我们介绍了一种新的基于MR的方法来确定有源可植入医疗设备的射频(RF)安全评估的传递函数(TF)。传递函数是植入物的措施,将入射切向电场与其尖端的散射电场相关联。所提出的方法允许在相对快速测量中具有高空间分辨率的TF确定,而不需要来自MRI图像的专用替补设置。理论和方法互惠原理与测量MRI电流的可能性来确定TF。使用植入物作为收发天线获取低翻转角度3D双梯度回波MRI数据,这需要最小的硬件适应性。特定于植入式TF是由所获取的MRI数据确定,两种不同的后处理方法进行比较。结果可以准确地确定线性和螺旋植入物的TFS(Pearson相关系数R?≥≤0.7的测量和模拟之间,并且尖端ΔTip的差异Δt≤≤19%)从相对较快(t≤19%)。 ?20?分钟)MRI采集(几毫米)空间分辨率。结论可植入医疗装置的RF安全评估MRI的转移函数测定是可能的。所提出的基于MR的方法允许在更现实的曝光场景和实体介质中进行TF确定。 Magn Reson Med 78:2449-2459,2017 2017年医学磁共振的国际社会

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