GE HealthCare Technology & Innovation Center, Niskayuna, NY 12309, USA.
GE HealthCare Technology & Innovation Center, Niskayuna, NY 12309, USA.
Magn Reson Imaging. 2024 Dec;114:110224. doi: 10.1016/j.mri.2024.110224. Epub 2024 Sep 2.
We report use of a dual-density dielectric barrier surrounding a detachable high-pass radiofrequency (RF) birdcage coil to achieve an order-of-magnitude reduction of acoustic noise in a high-performance head gradient system. The barrier consisted of a 4.5 mm-thick mass-loaded vinyl and a 6 mm-thick polyurethane foam. It was inserted into the radial gap between the birdcage coil and the RF shield in a prototype head-only gradient system at 3 T. More than 9 dB reduction of sound pressure level was achieved on the average with representative, high acoustic-noise imaging sequences. Increased acoustic damping was apparent from acoustic impulse response functions. High dielectric constant of the mass-loaded vinyl effectively added distributed capacitance to the birdcage coil, lowering the resonance frequency, but not seriously degrading the RF transmission performance. The barrier occupied the radial space normally used for air cooling of the RF coil and the RF shield. The resulting omission of air cooling was found to be acceptable with efficient gradient thermal management and use of a high-resistivity RF shield for eddy current reduction. The proposed method can improve patient experience while preserving image quality in a high-power head-only gradient system.
我们报告了使用双层介电屏障环绕可分离高通射频(RF)鸟笼线圈,以在高性能头部梯度系统中实现声学噪声降低一个数量级。该屏障由 4.5 毫米厚的质量负载乙烯基和 6 毫米厚的聚氨酯泡沫组成。它被插入原型头部仅梯度系统的鸟笼线圈和 RF 屏蔽层之间的径向间隙中,在 3 T 下工作。使用代表性的高噪声成像序列,平均可降低超过 9 分贝的声压级。从声学脉冲响应函数可以明显看出,声学阻尼增加了。质量负载乙烯基的高介电常数有效地为鸟笼线圈增加了分布式电容,降低了共振频率,但不会严重降低 RF 传输性能。该屏障占据了通常用于 RF 线圈和 RF 屏蔽层空气冷却的径向空间。通过有效的梯度热管理和使用高电阻 RF 屏蔽来减少涡流,发现省略空气冷却是可以接受的。所提出的方法可以在高功率头部仅梯度系统中提高患者体验,同时保持图像质量。