首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Simultaneous temperature and magnetization transfer (MT) monitoring during high-intensity focused ultrasound (HIFU) treatment: preliminary investigation on ex vivo porcine muscle.
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Simultaneous temperature and magnetization transfer (MT) monitoring during high-intensity focused ultrasound (HIFU) treatment: preliminary investigation on ex vivo porcine muscle.

机译:在高强度聚焦超声(HIFU)治疗期间同时进行温度和磁化传递(MT)监测:离体猪肌肉的初步研究。

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摘要

PURPOSE: To measure temperature change and magnetization transfer ratio (MTR) simultaneously during high-intensity focused ultrasound (HIFU) treatment. MATERIALS AND METHODS: This study proposed an interleaved dual gradient-echo technique to monitor the heat and tissue damage brought to the heated tissue. The technique was applied to tissue samples to test its efficacy. RESULTS: Ex vivo experiments on the porcine muscle demonstrated that both temperature changes and MTR exhibited high consistency in localizing the heated regions. As the heat dissipated after the treatment, the temperature of the heated regions decreased rapidly but MTR continued to be elevated. Moreover, thermal dose (TD) maps derived from the temperature curves demonstrated a sharp margin in the heated regions, but MTR maps may show a spatial gradient of tissue damage, suggesting complimentary information provided by these two measures. CONCLUSION: In a protocol of spot-by-spot heating over a large volume of tissue, MTR provides additional values to mark the locations of previously heated regions. By continuously recording the locations of heated spots, MTR maps could help plan the next target spots appropriately, potentially improving the efficiency of HIFU treatment and reducing undesirable damage to the normal tissue.
机译:目的:在高强度聚焦超声(HIFU)治疗期间同时测量温度变化和磁化传递比(MTR)。材料与方法:这项研究提出了一种交错的双重梯度回波技术,以监测加热到组织的热量和组织损伤。将该技术应用于组织样品以测试其功效。结果:在猪肌肉上的离体实验表明,温度变化和MTR都在加热区域局部显示出高度一致性。随着处理后的热量消散,加热区域的温度迅速降低,但MTR继续升高。此外,从温度曲线得出的热剂量(TD)图在加热区域显示出明显的余量,但是MTR图可能显示组织损伤的空间梯度,表明这两种方法可提供互补信息。结论:在对大量组织进行逐点加热的协议中,MTR提供了附加值来标记先前加热区域的位置。通过连续记录加热斑的位置,MTR映射可以帮助适当地计划下一个目标斑,从而潜在地提高HIFU治疗的效率并减少对正常组织的不良伤害。

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