首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Initial feasibility testing of limited field of view magnetic resonance thermometry using a local cardiac radiofrequency coil
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Initial feasibility testing of limited field of view magnetic resonance thermometry using a local cardiac radiofrequency coil

机译:使用局部心脏射频线圈的有限视野磁共振测温法的初步可行性测试

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摘要

The visualization of lesion formation in real time is one potential benefit of carrying out radiofrequency ablation under magnetic resonance (MR) guidance in the treatment of atrial fibrillation. MR thermometry has the potential to detect such lesions. However, performing MR thermometry during cardiac radiofrequency ablation requires high temporal and spatial resolution and a high signal-to-noise ratio. In this study, a local MR coil (2-cm diameter) was developed to investigate the feasibility of performing limited field of view MR thermometry with high accuracy and speed. The local MR coil allowed high-resolution (1 × 1 × 3 mm3) image acquisitions in 76.3 ms with a field of view 64 × 32 mm2 during an open-chest animal experiment. This represents a 4-fold image acquisition acceleration and an 18-fold field of view reduction compared to that achieved using external MR coils. The signal sensitivity achieved using the local coil was over 20 times greater than that achievable using external coils with the same scan parameters. The local coil configuration provided fewer artifacts and sharper and more stable images. These results demonstrate that MR thermometry can be performed in the heart wall and that lesion formation can be observed during radiofrequency ablation procedures in a canine model.
机译:实时可视化病变形成是在房颤治疗中在磁共振(MR)指导下进行射频消融的潜在好处之一。 MR测温法具有检测此类病变的潜力。但是,在心脏射频消融期间执行MR测温需要高的时间和空间分辨率以及高的信噪比。在这项研究中,开发了一个局部MR线圈(直径2厘米),以研究以高精度和高速度执行有限视野的MR测温的可行性。在开胸动物实验中,本地MR线圈可以在76.3 ms内以64×32 mm2的视野进行高分辨率(1×1×3 mm3)的图像采集。与使用外部MR线圈相比,这代表4倍的图像采集加速和18倍的视场缩小。使用局部线圈获得的信号灵敏度比使用具有相同扫描参数的外部线圈可获得的信号灵敏度高20倍以上。局部线圈配置可减少伪影,并提供更清晰,更稳定的图像。这些结果表明,可以在心脏壁上进行MR测温,并且可以在犬模型的射频消融过程中观察到病变的形成。

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