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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Simultaneous proton resonance frequency shift thermometry and T T 1 1 measurements using a single reference variable flip angle T T 1 1 method
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Simultaneous proton resonance frequency shift thermometry and T T 1 1 measurements using a single reference variable flip angle T T 1 1 method

机译:同时质子共振频率移位温度和T T 1 1使用单个参考可变翻转角T T T T T T T T T T 1 1测量

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摘要

Purpose Implement simultaneous proton resonance frequency (PRF) shift and T 1 measurements with equivalent temporal resolution using a single reference variable flip angle method. This novel method allows for simultaneous thermometry in both aqueous and fatty tissue. Methods This method acquires a single reference image at the lower flip angle and all dynamic images at the higher angle. T 1 is calculated using a single reference variable flip angle method, which accounts for the reference image temperature remaining constant. Monte Carlo simulations determined the optimal dynamic flip angle for combined PRF and T 1 measurements. This method was evaluated in MR‐guided focused ultrasound heating experiments using a gelatin phantom and human cadaver breasts. In vivo measurement precision was demonstrated in healthy female volunteers under nonheating conditions. Results Temperature rise during MR‐guided focused ultrasound heating was measured in aqueous tissue with both PRF and T 1 . Both measures show good qualitative agreement in both space and time in aqueous tissue. The T 1 change due to temperature increase was measured in fat, demonstrating the expected temporal response. The dynamic flip angle that produces optimal SNR for PRF measurements is lower than the optimal angle for T 1 measurements, necessitating the selection of a compromise angle. Conclusion The single reference variable flip angle method provides a reliable way to simultaneously measure PRF temperature and T 1 change and overcomes PRF’s inability to simultaneously monitor temperature in aqueous and adipose tissues. Future work will calibrate T 1 change to temperature, enabling real‐time temperature in fat and increasing patient safety and treatment efficacy during thermal interventional treatments.
机译:目的,使用单个参考可变翻转角法实现同时的质子共振频率(PRF)换档和T 1测量,具有等效时间分辨率。这种新方法允许在含水和脂肪组织中同时进行热量。方法该方法在较低角度和较高角度的较低翻转角和所有动态图像处获取单个参考图像。使用单个参考可变翻转角法计算T 1,其考虑了参考图像温度剩余常数。 Monte Carlo仿真确定了PRF和T 1测量组合的最佳动态翻转角度。使用明胶幻影和人尸体乳房在MR-Guided Foced Heatsion加热实验中评估该方法。在非热法条件下,在健康的女性志愿者中证明了体内测量精度。结果MR引导聚焦超声加热期间的温度升高在含水组织中测量PRF和T1。两种措施在水组织中的空间和时间都显示出良好的定性协议。在脂肪中测量由于温度升高引起的T 1变化,展示了预期的时间响应。对于PRF测量产生最佳SNR的动态翻转角度低于T 1测量的最佳角度,所以需要选择折衷角度。结论单个参考可变翻转角法提供可靠的方式来同时测量PRF温度和T 1变化,克服PRF无法在水性和脂肪组织中同时监测温度。未来的工作将校准T 1变化为温度,从而使脂肪的实时温度和热介入治疗期间提高患者安全性和治疗效果。

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