首页> 外文会议>Annual Conference of Japanese Society for Medical and Biological Engineering;Annual International Conference of the IEEE Engineering in Medicine and Biology Society >High-resolution MR imaging of gastrointestinal tissue by intracavitary RF coil with remote tuning and matching technique for integrated MR-endoscope system
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High-resolution MR imaging of gastrointestinal tissue by intracavitary RF coil with remote tuning and matching technique for integrated MR-endoscope system

机译:腔内射频线圈结合远程调谐和匹配技术对胃肠组织进行高分辨率MR成像,以用于集成MR-内窥镜系统

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The goal of this study is to establish novel medical technologies by combining magnetic resonance imaging (MRI) with endoscopy to improve diagnostic precision and the safety of endoscopic surgeries. One of the key components of the integrated magnetic resonance (MR) endoscope system is a radio-frequency (RF) coil; this detects the MR signal from tissue and should be placed inside the body. Resonance characteristics such as the resonant frequency and the impedance of the RF coil, which affect the quality of MR images, change depending on the electric properties of the surrounding tissue and the coil deformation. Therefore, the technique of remote tuning and matching of the RF coil was developed, and its feasibility was investigated using a developed intracavitary RF coil, 1.5 tesla MR scanner, and models of phantom and resected porcine stomach. As a result, the frequency tuning and impedance matching was remotely adjusted in both models. In addition, the signal-to-noise ratio (SNR) of MR images was improved up to 134%. The developed remote tuning and matching technique was able to adjust the resonant characteristics of RF coil and can contribute the improvement of MR image quality, which would facilitate safe and precise endoscopy and endoscopic surgeries.
机译:这项研究的目的是通过将磁共振成像(MRI)与内窥镜检查相结合来建立新颖的医疗技术,以提高诊断精度和内窥镜手术的安全性。集成磁共振(MR)内窥镜系统的关键组件之一是射频(RF)线圈。这可以检测到来自组织的MR信号,应将其放置在体内。影响MR图像质量的共振特性(例如,共振频率和RF线圈的阻抗)会根据周围组织的电特性和线圈变形而变化。因此,开发了远程调谐和匹配射频线圈的技术,并使用研制的腔内射频线圈,1.5 tesla MR扫描仪以及幻影和切除的猪胃模型研究了其可行性。结果,在这两个模型中远程调整了频率调谐和阻抗匹配。此外,MR图像的信噪比(SNR)提高了134%。先进的远程调谐和匹配技术能够调节射频线圈的谐振特性,并有助于改善MR图像质量,从而有助于安全,精确的内窥镜检查和内窥镜手术。

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