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首页> 外文期刊>Magma: Magnetic resonance materials in physics, biology, and medicine >Fast MR thermometry using an echo-shifted sequence with simultaneous multi-slice imaging
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Fast MR thermometry using an echo-shifted sequence with simultaneous multi-slice imaging

机译:使用具有同时多切片成像的回波移位序列快速MR温度测量

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摘要

Purpose Real-time monitoring is important for the safety and effectiveness of high-intensity focused ultrasound (HIFU) therapy. Magnetic resonance imaging is the preferred imaging modality for HIFU monitoring, with its unique capability of temperature imaging. For real-time temperature imaging, higher temporal resolution and larger spatial coverage are needed. In this study, a sequence based on the echo-shifted RF-spoiled gradient echo (GRE) with simultaneous multi-slice (SMS) imaging was designed for fast temperature imaging. Methods A phantom experiment was conducted to evaluate the accuracy of the echo-shifted sequence using a fluorescent fiber thermometer as reference. The temperature uncertainty of the echo-shifted sequence was compared with the traditional GRE sequence at room temperature through the ex vivo porcine muscle. Finally, the ex vivo porcine liver tissue experiment using HIFU heating was performed to demonstrate that the spatial coverage was increased without decreasing temporal resolution. Results The echo-shifted sequence had a better temperature uncertainty performance compared with the traditional GRE sequence with the same temporal resolution. The ex vivo heating experiment confirmed that by combining the SMS technique and echo-shifted sequence, the spatial coverage was increased without decreasing the temporal resolution while maintaining high temperature measurement precision. Conclusion The proposed technique was validated as an effective real-time method for monitoring HIFU therapy.
机译:目的实时监测对于高强度聚焦超声(HIFU)疗法的安全性和有效性是重要的。磁共振成像是HIFU监测的优选成像模型,具有其温度成像的独特能力。对于实时温度成像,需要更高的时间分辨率和更大的空间覆盖范围。在该研究中,设计了一种基于回波移位的RF破坏梯度回波(GRE)的序列,具有同时多切片(SMS)成像,用于快速温度成像。方法采用荧光纤维温度计作为参考评价荧光纤维温度计的回波移位序列的精度。通过前体内猪肌肉在室温下与传统的GRE序列进行了相应的转移序列的温度不确定性。最后,进行使用HIFU加热的前体内猪肝组织实验表明,在不降低时间分辨率的情况下增加了空间覆盖率。结果与具有相同时间分辨率的传统GRE序列相比,回波移位序列具有更好的温度不确定性性能。前体内加热实验证实,通过组合SMS技术和回波偏移序列,在保持高温测量精度的同时增加空间覆盖而不降低时间分辨率。结论提出的技术被验证为监测HIFU治疗的有效实时方法。

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  • 作者单位

    State Key Laboratory of Ultrasound Engineering in Medicine Chongqing Key Laboratory of Biomedical Engineering Co-Founded by Chongqing and the Ministry of Science and Technology College of Biomedical Engineering Chongqing Medical University 153 Box 1;

    Paul C Lauterbur Research Center for Biomedical Imaging Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences 1068 Xueyuan Blvd Nanshan District Shenzhen 518055 Guangdong China;

    Paul C Lauterbur Research Center for Biomedical Imaging Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences 1068 Xueyuan Blvd Nanshan District Shenzhen 518055 Guangdong China;

    Paul C Lauterbur Research Center for Biomedical Imaging Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences 1068 Xueyuan Blvd Nanshan District Shenzhen 518055 Guangdong China;

    Paul C Lauterbur Research Center for Biomedical Imaging Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences 1068 Xueyuan Blvd Nanshan District Shenzhen 518055 Guangdong China;

    Paul C Lauterbur Research Center for Biomedical Imaging Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences 1068 Xueyuan Blvd Nanshan District Shenzhen 518055 Guangdong China;

    Paul C Lauterbur Research Center for Biomedical Imaging Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences 1068 Xueyuan Blvd Nanshan District Shenzhen 518055 Guangdong China;

    Paul C Lauterbur Research Center for Biomedical Imaging Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences 1068 Xueyuan Blvd Nanshan District Shenzhen 518055 Guangdong China;

    Paul C Lauterbur Research Center for Biomedical Imaging Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences 1068 Xueyuan Blvd Nanshan District Shenzhen 518055 Guangdong China;

    State Key Laboratory of Ultrasound Engineering in Medicine Chongqing Key Laboratory of Biomedical Engineering Co-Founded by Chongqing and the Ministry of Science and Technology College of Biomedical Engineering Chongqing Medical University 153 Box 1;

    Paul C Lauterbur Research Center for Biomedical Imaging Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences 1068 Xueyuan Blvd Nanshan District Shenzhen 518055 Guangdong China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 磁化学分析法;
  • 关键词

    Magnetic resonance imaging; Thermometry; Simultaneous multi-slice imaging; Echo-shifted sequence;

    机译:磁共振成像;温度计;同时多切片成像;回声移位序列;

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