扫描仪
射频线圈
磁共振成像
成像体模
图像质量
电磁线圈
核磁共振
对比度(视觉)
各向同性
无线电频率
失真(音乐)
物理
核医学
生物医学工程
光学
计算机科学
医学
图像(数学)
放射科
人工智能
CMOS芯片
电信
放大器
量子力学
光电子学
作者
Nicholas A. Bock,Brian J. Nieman,Johnathan Bishop,R. Mark Henkelman
摘要
We developed a live high-field multiple-mouse magnetic resonance imaging method to increase the throughput of imaging studies involving large numbers of mice. Phantom experiments were performed in 7 shielded radiofrequency (RF) coils for concurrent imaging on a 7 Tesla MRI scanner outfitted with multiple transmit and receive channels to confirm uniform signal-to-noise ratio and minimal ghost artifacts across images from the different RF coils. Grid phantoms were used to measure image distortion in different positions in the coils. The brains of 7 live mice were imaged in 3D in the RF coil array, and a second array of 16 RF coils was used to 3D image the whole bodies of 16 fixed, contrast agent-perfused mice. The images of the 7 live mouse brains at 156 microm isotropic resolution and the 16 whole fixed mice at 100 microm isotropic resolution were of high quality and free of artifacts. We have thus shown that multiple-mouse MRI increases throughput for live and fixed mouse experiments by a factor equaling the number of RF coils in the scanner.
科研通智能强力驱动
Strongly Powered by AbleSci AI