计算机科学
计算机视觉
编码(内存)
人工智能
实时核磁共振成像
磁共振弥散成像
磁共振成像
医学
放射科
作者
Yueqi Qiu,Ke Dai,Sijie Zhong,Suen Chen,Changyue Wang,Hao Chen,Lucio Frydman,Zhiyong Zhang
摘要
Abstract Purpose Demonstrate the potential of spatiotemporal encoding (SPEN) MRI to deliver largely undistorted 2D, 3D, and diffusion weighted images on a 110 mT portable system. Methods SPEN's quadratic phase modulation was used to subsample the low‐bandwidth dimension of echo planar acquisitions, delivering alias‐free images with an enhanced immunity to image distortions in a laboratory‐built, low‐field, portable MRI system lacking multiple receivers. Results Healthy brain images with different SPEN time‐bandwidth products and subsampling factors were collected. These compared favorably to EPI acquisitions including topup corrections. Robust 3D and diffusion weighted SPEN images of diagnostic value were demonstrated, with 2.5 mm isotropic resolutions achieved in 3 min scans. This performance took advantage of the low specific absorption rate and relative long TEs associated with low‐field MRI. Conclusion SPEN MRI provides a robust and advantageous fast acquisition approach to obtain faithful 3D images and DWI data in low‐cost, portable, low‐field systems without parallel acceleration.
科研通智能强力驱动
Strongly Powered by AbleSci AI