arXiv:2501.06049physics.med-pheess.IV2025-01

用TSE序列实现金属植入物附近磁场不均匀性精准测量

B1+ mapping near metallic implants using turbo spin echo pulse sequences

  • 通过多组翻转角TSE图像匹配仿真数据库反推B1+值
  • 金属附近仍能准确获取B1+,误差范围小于传统方法
  • 适合需高精度射频场校准的金属植入患者成像

目的:提出一种基于涡轮自旋回波(TSE)脉冲序列的体部金属器械附近B1+映射技术。方法:采集多组(2至4组)不同激发与重聚焦翻转角的TSE图像,将实测信号强度与基于精确序列参数求解布洛赫方程生成的仿真信号数据库进行匹配,以反演B1+值。在无金属和含金属的凝胶模型及人体受试者中,与梯度回波和自旋回波双角度法、厂商提供的turboFLASH映射序列进行验证。结果:无金属时,三组或四组翻转角方案与参考双角度法一致性极佳;人体无金属时,与自旋回波双角度法高度相关。有金属存在时,参考方法仅在狭窄范围内可估测B1+,而本方法成功解析了金属附近的B1+分布。部分案例中结合多光谱金属伪影抑制序列,实现B1+动态优化。结论:该方法克服了传统映射技术在金属附近因敏感性及范围受限的问题,可有效解析金属周边的B1+值。

原文摘要 · Abstract (English)

Purpose: To propose a B1+ mapping technique for imaging of body parts containing metal hardware, based on magnitude images acquired with turbo spin echo (TSE) pulse sequences. Theory and Methods: To encode the underlying B1+, multiple (two to four) TSE image sets with various excitation and refocusing flip angles were acquired. To this end, the acquired signal intensities were matched to a database of simulated signals which was generated by solving the Bloch equations taking into account the exact sequence parameters. The retrieved B1+ values were validated against gradient-recalled and spin echo dual angle methods, as well as a vendor-provided turboFLASH-based mapping sequence, in gel phantoms and human subjects without and with metal implants. Results: In the absence of metal, phantom experiments demonstrated excellent agreement between the proposed technique using three or four flip angle sets and reference dual angle methods. In human subjects without metal implants, the proposed technique with three or four flip angle sets showed excellent correlation with the spin echo dual angle method. In the presence of metal, both phantoms and human subjects revealed a narrow range of B1+ estimation with the reference techniques, whereas the proposed technique successfully resolved B1+ near the metal. In select cases, the technique was implemented in conjunction with multispectral metal artifact reduction sequences and successfully applied for B1+ shimming. Conclusion: The proposed technique enables resolution of B1+ values in regions near metal hardware, overcoming susceptibility-related and narrow-range limitations of standard mapping techniques.

MRI金属伪影B1+映射

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