基于无场线电子扫描开放式磁粒子成像系统设计
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TH772

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国家自然科学基金(62001313)、辽宁省自然科学基金(2020-MS-211)、辽宁省教育厅科研项目(LJKZ0133)、沈阳市科技计划公共卫生研发专项(22-321-32-09) 资助


Design of the open-bored magnetic particle imaging system based on field free line electrical scanning
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    摘要:

    磁粒子成像是一种全新的人体内动态靶向影像学方法,但当前磁粒子成像系统以封闭式磁场扫描结构为主,严重限制 了其临床应用范围。 设计了一种开放式电子扫描窄带磁粒子成像系统,在分析了超顺磁粒子谐波磁化响应的基础上,通过对线 圈表面耦合磁场的计算及电流控制利用 8 个梯度线圈形成了基于无场线的开放式空间定位磁场,成像区域 30 mm×30 mm;以 单边激励线圈产生 20. 7 kHz 激励磁场,处于高频激励磁场及定位磁场中的超顺磁纳米粒子示踪剂产生具有丰富谐波成分的可 定位超顺磁磁化信号,使用高信噪比 Gradiometer 线圈检测其 3 次谐波信号形成电压云图图像;通过预测量的系统函数矩阵利 用非负最小二乘法对电压云图进行重建,形成示踪剂浓度分布云图。 成像实验结果表明,系统在开放式成像区域内探测灵敏度 20 μg Fe,图像重建空间分辨率 2 mm,成像速度 1 fps,达到了较好的开放式成像效果,系统也是国内首台全自主研发的开放式 磁粒子成像系统。

    Abstract:

    The magnetic particle imaging (MPI) is a new dynamic targeting imaging method in the human body. However, the current MPI system mainly utilizes a closed magnetic field scanning structure, which severely limits its clinical application. In this article, an open electrical scanning narrowband MPI system is designed. On the basis of analyzing the harmonic magnetization response of superparamagnetic particles, an open spatial positioning magnetic field based on field free line is formed by using eight gradient coils through the calculation of the coupling magnetic field on the coil surface and the current control. The imaging area is 30 mm×30 mm. A single side excitation coil is used to generate a 20. 7 kHz excitation magnetic field. The superparamagnetic nanoparticles tracer in the high-frequency excitation magnetic field and the positioning magnetic field generates a locatable superparamagnetic magnetization signal with rich harmonic components. A high signal to noise ratio Gradiometer coil is used to detect its third harmonic signal to form a voltage cloud image. Furthermore, the non-negative least square method is used to reconstruct the voltage nephogram through the pre-measured system function matrix to form the tracer concentration distribution nephogram. The imaging experiment results show that the detection sensitivity of the system in the open imaging area is 20 μg Fe, the spatial resolution of image reconstruction is 2 mm, and the imaging speed is 1 fps. The good open imaging effectiveness is achieved. This system is also the first open magnetic particle imaging system independently developed in China.

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白 石,杨 辉,邹宇琪,张秦阳,李天舒.基于无场线电子扫描开放式磁粒子成像系统设计[J].仪器仪表学报,2023,44(5):204-213

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  • 在线发布日期: 2023-08-17
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