首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Potential for high‐permittivity materials to reduce local SAR at a pacemaker lead tip during MRI of the head with a body transmit coil at 3?T
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Potential for high‐permittivity materials to reduce local SAR at a pacemaker lead tip during MRI of the head with a body transmit coil at 3?T

机译:高介电常数材料的潜力,以在头部MRI期间减少起搏器引线尖端的局部SAR,主体在3℃发射线圈

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Purpose To illustrate the potential for high permittivity materials to be used in decreasing peak local SAR associated with implants when the imaging region is far from the implant. Methods We performed numerical simulations of a human subject with a pacemaker in a body‐sized birdcage coil driven at 128 MHz with and without a thin (5?mm) shell of material of high electric permittivity around the head. Results For a shell with relative permittivity of 600, the maximum specific energy absorption rate averaged over any 1?g of tissue near the pacemaker was reduced by 73.5% for a given B 1 field strength at the center of the brain. Conclusion Although further study is required, initial simulations indicate that strategic use of high permittivity materials may broaden the conditions under which patients with certain implants can be imaged safely. Magn Reson Med 78:383–386, 2017. ? 2016 International Society for Magnetic Resonance in Medicine
机译:目的,为了说明当成像区域远离植入物时,用于在成像区域远离植入物时用于减少与植入物相关的峰局部SAR的高介电常数材料的可能性。 方法采用在128MHz的体型鸟笼线圈中进行有起搏器的人类受试者的数值模拟,在128MHz,无薄(5Ωmm)围绕头部的高电渗透材料。 结果对于具有600的相对介电常数的壳,在脑中心的给定B 1场强度下,在起搏器附近的任何1·G的组织中平均的最大特定能量吸收率降低了73.5%。 结论虽然需要进一步研究,但初始模拟表明,高介电常数材料的战略使用可能会扩大某些植入物可以安全成像的病症。 Magn Reson Med 78:383-386,2017。 2016国际医学磁共振学会

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