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首页> 外文期刊>Investigative radiology >Phantom standards with temperature- and field-independent relaxation rates for magnetic resonance imaging.
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Phantom standards with temperature- and field-independent relaxation rates for magnetic resonance imaging.

机译:幻影标准品具有与温度和场无关的弛豫速率,用于磁共振成像。

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RATIONALE AND OBJECTIVES: For use as magnetic resonance imaging reference standards, the optimal set of phantoms should cover a wide range of T1 values, with each phantom having a T1 that is stable over time and is independent of temperature and magnetic field strength. To date, no set of phantoms fulfilling these four requirements has been prepared. In the current work, the construction of such optimal phantom standards is attempted. METHODS: Two linear gadolinium DTPA polymers are used: the first with relaxivities that are independent of temperature and magnetic field strength, and the second with relaxivities that are independent of magnetic field strength, but have an opposite temperature dependence from that of the 1/T1 of the diamagnetic matrix (agarose gel or water). Depending on the desired T1, either one or a combination of the two agents is used. RESULTS: Phantom standards were constructed with 1/T1 values that are independent of temperature (20-35 degrees C) and magnetic field strength (0.47-1.2 T) over a wide range of 1/T1 values (> or = 0.95 s-1). Phantom standards prepared in water were found to be stable with respect to 1/T1 for at least 18 months. CONCLUSIONS: Stable phantoms standards have been constructed covering a wide range of T1 values, where the T1 of any particular phantom is independent of temperature and magnetic field strength for magnetic resonance imaging conditions.
机译:理由和目的:作为磁共振成像参考标准,最佳的体模应涵盖广泛的T1值,每个体模的T1随时间稳定,并且与温度和磁场强度无关。迄今为止,还没有准备满足这四个要求的幻像。在当前的工作中,试图构造这种最佳幻影标准。方法:使用两种线性adoDTPA聚合物:第一种具有与温度和磁场强度无关的弛豫度,第二种具有与磁场强度无关的弛豫度,但与1 / T1的温度依赖性相反抗磁性基质(琼脂糖凝胶或水)。根据所需的T1,可以使用两种试剂中的一种或两种。结果:幻影标准品的1 / T1值在广泛的1 / T1值(>或= 0.95 s-1)范围内与温度(20-35摄氏度)和磁场强度(0.47-1.2 T)无关)。发现在水中制备的幻影标准品对1 / T1稳定至少18个月。结论:已经建立了涵盖广泛T1值范围的稳定体模标准,其中任何特定体模的T1与磁共振成像条件下的温度和磁场强度无关。

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