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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A hybrid transducer to evaluate stomach emptying by ultrasound and susceptometric measurements: an in vivo feasibility study
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A hybrid transducer to evaluate stomach emptying by ultrasound and susceptometric measurements: an in vivo feasibility study

机译:混合换能器通过超声和​​感受测量法评估胃排空:一项体内可行性研究

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摘要

Gastric emptying reflects a diversity of important physiological functions. Alternating current biosusceptometry (ACB) is an inexpensive, radiation-free, and minimally invasive method to evaluate gastric emptying, but its response depends on the spatial distribution of the magnetized material and does not provide precise anatomical information. The hybrid transducer, which combines ACB and an ultrasound probe, is an alternative to improve susceptometry measurements, namely the spatial localization of the magnetized source. In this study, initial stomach emptying, in rats, was monitored with the aid of the hybrid transducer. Yogurt mixed with ferrite particles was injected into the rat???s stomach. The hybrid transducer was placed on the rat???s abdomen during experiments, and the susceptometry signal and magnetomotive ultrasound (MMUS) images were saved and postprocessed. MMUS highlighted the movement of magnetic particles due to magnetic force from ACB excitation coils, and showed the rat???s stomach location. In this feasibility study, we monitored the stomach emptying of 4 rats for 20 min. The mean relative ACB signal decayed by 4.6 ?? 0.1%, and the mean relative area of MMUS images decreased by 4.5 ?? 0.2%, after 20 min postingestion of the magnetic meal due to stomach emptying. In a second experiment, 3-D MMUS images from axial sequences were obtained by spatially translating the hybrid transducer, providing details of the stomach wall, which may enable minimally invasive detection of abnormalities. In conclusion, the MMUS image increased ACB spatial resolution and furnished additional anatomical information.
机译:胃排空反映出重要的生理功能的多样性。交流电生物感测法(ACB)是一种廉价,无辐射且微创的评估胃排空的方法,但其响应取决于磁化材料的空间分布,不能提供精确的解剖信息。结合了ACB和超声探头的混合换能器是改进磁化率测量(即磁化源的空间定位)的替代方法。在这项研究中,借助于混合换能器监测了大鼠的初始胃排空。混合了铁素体颗粒的酸奶被注入大鼠的胃。在实验过程中将混合换能器放置在大鼠的腹部,并保存磁化法信号和磁动超声(MMUS)图像并进行后处理。 MMUS突出显示了由于ACB励磁线圈产生的磁力引起的磁性粒子运动,并显示了大鼠的胃部位置。在这项可行性研究中,我们监测了4只大鼠的胃排空情况,持续20分钟。平均相对ACB信号衰减4.6 ?? 0.1%,MMUS图像的平均相对面积减少了4.5英寸0.2%,由于胃排空而放出磁性餐后20分钟。在第二个实验中,通过对混合换能器进行空间平移获得了来自轴向序列的3-D MMUS图像,从而提供了胃壁的详细信息,从而可以以最小的侵入性方式检测异常。总之,MMUS图像提高了ACB空间分辨率,并提供了其他解剖信息。

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