核磁共振成像机圆柱壳振动模态诊断的数值系统综述与元分析。

IF 3.1 Q3 ENGINEERING, BIOMEDICAL
Biomedical Engineering and Computational Biology Pub Date : 2025-07-10 eCollection Date: 2025-01-01 DOI:10.1177/11795972251353069
Hamidreza Mortazavy Beni, Fatemeh Aghaei, Ashkan Heydarian, Fatemeh Yekta Asaei, Hosein Samaram
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引用次数: 0

摘要

磁共振成像(MRI)是一种利用无线电波和磁场的非侵入性成像方法。这项研究的重点是减少患者所在的扫描仪圆柱形外壳内产生的噪声。在梯度磁场的作用下,圆柱形壳体内产生涡流,从而产生振动模式。此外,扫描壁通常与梯度螺旋柱体相连,使振动传递到扫描壁,从而产生额外的声波。本文研究了降低扫描壁噪声和降低螺旋梯度圆柱传输噪声的方法。探讨了降低MRI梯度线圈噪声的数值方法和实际解决方案。20毫米均匀吸收器被证明是一种有效的设计,可以显着降低0到3 kHz频率范围内的噪声。最后,梯度循环的数值分析得出了降低振动和噪声水平的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Numerical Systematic Review and Meta-Analysis of Diagnosing the Vibration Modes of the Cylindrical Shell in the MRI Machine.

A Numerical Systematic Review and Meta-Analysis of Diagnosing the Vibration Modes of the Cylindrical Shell in the MRI Machine.

A Numerical Systematic Review and Meta-Analysis of Diagnosing the Vibration Modes of the Cylindrical Shell in the MRI Machine.

A Numerical Systematic Review and Meta-Analysis of Diagnosing the Vibration Modes of the Cylindrical Shell in the MRI Machine.

Magnetic Resonance Imaging (MRI) is a non-invasive imaging method that utilizes radio waves and magnetic fields. This study focuses on reducing the acoustic noise produced inside the cylindrical shell of the scanner, where the patient is located. Vibration modes are generated by eddy currents in the cylindrical shell induced by gradient magnetic fields. Additionally, the scanner wall is typically joined to the gradient spiral cylinder, causing vibrations to be transmitted to the wall and thereby producing extra sound waves. The present study investigates methods for mitigating noise from the scanner wall and reducing the transmission noise from the spiral gradient cylinder. Numerical methods and practical solutions for lowering acoustic noise in MRI gradient coils are explored. A 20 mm uniform absorber is demonstrated as an effective design for significantly reducing acoustic noise in the frequency range 0 to 3 kHz. Finally, numerical analysis of gradient cycles yields solutions that lower both vibration and noise levels.

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