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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Sensitivity analysis of magnetic field measurements for magnetic resonance electrical impedance tomography (MREIT)
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Sensitivity analysis of magnetic field measurements for magnetic resonance electrical impedance tomography (MREIT)

机译:磁共振电阻断层扫描磁场测量的灵敏度分析(MREIT)

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摘要

Purpose Clinical use of magnetic resonance electrical impedance tomography (MREIT) still requires significant sensitivity improvements. Here, the measurement of the current‐induced magnetic field (ΔB z,c ) is improved using systematic efficiency analyses and optimization of multi‐echo spin echo (MESE) and steady‐state free precession free induction decay (SSFP‐FID) sequences. Theory and Methods Considering T 1 , T 2 , and T 2 * relaxation in the signal‐to‐noise ratios (SNRs) of the MR magnitude images, the efficiency of MESE and SSFP‐FID MREIT experiments, and its dependence on the sequence parameters, are analytically analyzed and simulated. The theoretical results are experimentally validated in a saline‐filled homogenous spherical phantom with relaxation parameters similar to brain tissue. Measurement of ΔB z,c is also performed in a cylindrical phantom with saline and chicken meat. Results The efficiency simulations and experimental results are in good agreement. When using optimal parameters, ΔB z,c can be reliably measured in the phantom even at injected current strengths of 1 mA or lower for both sequence types. The importance of using proper crusher gradient selection on the phase evolution in a MESE experiment is also demonstrated. Conclusion The efficiencies observed with the optimized sequence parameters will likely render in‐vivo human brain MREIT feasible. Magn Reson Med 79:748–760, 2018. ? 2017 International Society for Magnetic Resonance in Medicine.
机译:目的临床使用磁共振电阻断层扫描(MREIT)仍需要显着的敏感性改进。这里,利用系统效率分析和优化多相旋转回声(MESE)和稳态自由进样游离衰减(SSFP-FID)序列,改善了电流诱导的磁场(ΔBZ,C)的测量。考虑T 1,T 2和T 2 *在MR级图像的信噪比(SNR)中的弛豫的理论和方法,MESE和SSFP-FID MREIT实验的效率及其对序列参数的依赖性,经过分析分析和模拟。理论结果在良好的均质均质球形模型中实验验证,其弛豫参数类似于脑组织。 ΔBZ,C的测量也在圆柱形虚拟体与盐水和鸡肉进行。结果效率模拟和实验结果非常一致。当使用最佳参数时,即使在两个序列类型的喷射电流强度为1 mA或更低的喷射电流强度下,ΔBZ,C也可以在幻像中可靠地测量。还证明了在MESE实验中使用适当的破碎机梯度选择的重要性。结论使用优化的序列参数观察到的效率可能是可行的体内人脑MREIT。 MANG REAN MED 79:748-760,2018。 2017年医学磁共振的国际社会。

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