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首页> 外文期刊>Journal of magnetic resonance >Implanted, inductively-coupled, radiofrequency coils fabricated on flexible polymeric material: Application to in vivo rat brain MRI at 7 T
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Implanted, inductively-coupled, radiofrequency coils fabricated on flexible polymeric material: Application to in vivo rat brain MRI at 7 T

机译:在柔性聚合材料上制成的植入式感应耦合射频线圈:在7 T时在体内大鼠脑MRI中的应用

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摘要

Combined with high-field MRI scanners, small implanted coils allow for high resolution imaging with locally improved SNR, as compared to external coils. Small flexible implantable coils dedicated to in vivo MRI of the rat brain at 7 T were developed. Based on the Multi-turn Transmission Line Resonator design, they were fabricated with a Teflon substrate using copper micromolding process and a specific metal-polymer adhesion treatment. The implanted coils were made biocompatible by PolyDimethylSiloxane (PDMS) encapsulation. The use of low loss tangent material achieves low dielectric losses within the substrate and the use of the PDMS layer reduces the parasitic coupling with the surrounding media. An implanted coil was implemented in a 7 T MRI system using inductive coupling and a dedicated external pick-up coil for signal transmission. In vivo images of the rat brain acquired with in plane resolution of (150 μm) ~2 thanks to the implanted coil revealed high SNR near the coil, allowing for the visualization of fine cerebral structures.
机译:与外部线圈相比,与高场MRI扫描仪结合使用的小型植入线圈可实现具有局部改善SNR的高分辨率成像。开发了专用于大鼠脑在7 T体内MRI的小型柔性可植入线圈。基于多匝传输线谐振器设计,它们是使用聚四氟乙烯基板通过铜微成型工艺和特定的金属-聚合物粘合处理制成的。通过聚二甲基硅氧烷(PDMS)封装使植入的线圈具有生物相容性。低损耗正切材料的使用在基板内实现了低介电损耗,而PDMS层的使用减少了与周围介质的寄生耦合。在7 T MRI系统中使用感应耦合和专用外部拾波线圈实现了植入线圈的信号传输。由于植入了线圈,在平面分辨率为(150μm)〜2时获得的大鼠大脑的体内图像显示出线圈附近的高SNR,从而可以观察到精细的大脑结构。

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