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Design and Construction Method of an Open-Type Magnetically Shielded Room for MRI Composed of Magnetic Square Cylinders

机译:磁方形圆柱体磁共振成像的敞开式电磁屏蔽室的设计与施工方法

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摘要

To shield the leakage flux densities of 3 T magnetic resonance imaging (MRI) higher than 1.5 T MRI and to reduce the degradation of magnetic properties during construction, the design of an open-type magnetically shielded room (MSR) combined with square cylinders made of magnetic and conductive materials should be improved. This paper reports on an optimal design for magnetic cylinders to improve the shielding effect, while also considering ease of construction with a view to practical use. Firstly, the structure of the magnetic cylinders, such as their opening width and the slit width were optimized using a 3D linear magnetic-field analysis. Using optimal magnetic cylinders, when the relative permeability (μ_r) of the magnetic material is larger than 10 000, the reluctance of gaps between the cylinders is the main contributor to the leakage flux. So, the required (μ_r) of the magnetic material is 10 000 and oriented silicon steel is adopted instead of the non-oriented type. Secondly, as an optimal construction method, it was determined by experiment that oriented silicon steel sheets, annealed after bending, should be laminated so that the effect of gaps on butt joints between steel sheets on the magnetic property of the cylinder becomes smaller. This enables the relative permeability of 10 000 when the maximum flux density of the material in the cylinder is less than 1.7 T. Finally, the minimum thickness of oriented silicon steel sheet of cylinders depending on the distance from a 3 T MRI is obtained using linear magnetic analysis under the condition that the maximum flux density of the material of the cylinder is less than 1.7 T. In the case of the thickness of 3.8 mm, the leakage flux density of 3 T MRI is decreased to less than a guideline (0.5 mT) when the distance between the cylinders and the center of MRI is larger than 2 750 mm. This indicates that the optimal design and construction method of an open-type MSR for 3 T MRI composed of magnetic square cylinders are realized.
机译:为了屏蔽高于1.5 T MRI的3 T磁共振成像(MRI)的漏磁通密度并减少施工过程中的磁性能下降,设计了一种开放式磁屏蔽室(MSR)并结合方形圆柱体制成磁性和导电材料应加以改进。本文报告了一种优化的磁圆柱设计,以提高屏蔽效果,同时还考虑了易于构造的实际应用。首先,使用3D线性磁场分析优化磁缸的结构,例如其开口宽度和狭缝宽度。使用最佳磁柱,当磁性材料的相对磁导率(μ_r)大于10000时,磁柱之间的间隙磁阻是导致漏磁通的主要因素。因此,磁性材料的要求(μ_r)为10000,采用取向硅钢代替无取向硅钢。其次,作为一种最佳的构造方法,通过实验确定了应该对弯曲后退火的取向硅钢板进行层压,以使间隙对钢板之间的对接接头对圆柱体磁性能的影响变小。当圆柱体中材料的最大通量密度小于1.7 T时,这使得相对磁导率达到10000。最后,使用线性方法获得圆柱体取向硅钢片的最小厚度,取决于与3 T MRI的距离在圆柱体材料的最大磁通密度小于1.7 T的条件下进行磁分析。在厚度为3.8 mm的情况下,3 T MRI的漏磁通密度减小到小于指导值(0.5 mT )当圆柱体与MRI中心之间的距离大于2750 mm时。这表明实现了由磁性方形圆柱体构成的3T MRI开放式MSR的最佳设计和构造方法。

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