Matsuzawa Koki, Abe Mitsushi, Kose Katsumi, Terada Yasuhiko
Institute of Applied Physics, University of Tsukuba, Tsukuba, Ibaraki 305-8573, Japan.
Applied Energy Systems Research Department Center for Technology Innovation, Hitachi, Ltd., Hitachi, Japan.
J Magn Reson. 2017 May;278:51-59. doi: 10.1016/j.jmr.2017.03.009. Epub 2017 Mar 20.
Existing open magnetic resonance imaging (MRI) systems use biplanar gradient coils for the spatial encoding of signals. We propose using novel oval gradient coils for an open vertical-field MRI. We designed oval gradients for a 0.3T open MRI system and showed that such a system could outperform a traditional biplanar gradient system while maintaining adequate gradient homogeneity and subject accessibility. Such oval gradient coils would exhibit high efficiency, low inductance and resistance, and high switching capability. Although the designed oval Y and Z coils showed more heat dissipation and less cooling capability than biplanar coils with the same gap, they showed an efficient heat-dissipation path to the surrounding air, which would alleviate the heat problem. The performance of the designed oval-coil system was demonstrated experimentally by imaging a human hand.
现有的开放式磁共振成像(MRI)系统使用双平面梯度线圈进行信号的空间编码。我们建议在开放式垂直场MRI中使用新型椭圆形梯度线圈。我们为0.3T开放式MRI系统设计了椭圆形梯度线圈,并表明这样的系统在保持足够的梯度均匀性和受试者可达性的同时,可以优于传统的双平面梯度系统。这种椭圆形梯度线圈将具有高效率、低电感和电阻以及高开关能力。尽管设计的椭圆形Y和Z线圈与具有相同间隙的双平面线圈相比显示出更多的热耗散和更低的冷却能力,但它们向周围空气显示出有效的散热路径,这将缓解热问题。通过对人手成像,实验证明了所设计的椭圆形线圈系统的性能。