Imaging Research Center, Department of Radiology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.
Quantsight, Austin, TX, USA.
J Neurosci Methods. 2022 Dec 1;382:109728. doi: 10.1016/j.jneumeth.2022.109728. Epub 2022 Oct 13.
A device for moving the head during MR imaging, called a Weighted Head Accelerator Mechanism (WHAM), rotates the head of a supine subject within programmable rotation limits and acceleration profiles. The WHAM can be used with custom MRI sequences to visualize the deformation and recoil of in vivo brain parenchyma with high temporal resolution, allowing element-wise calculation of strain and shear forces in the brain. Unlike previous devices, the WHAM can be configured to provide a wide range of motion and acceleration profiles.
The WHAM was calibrated using a high-speed camera on a laboratory bench and in 1.5 Tesla and 3.0 Tesla MRI scanners using gel phantoms and human subjects. The MR imaging studies employed a spatial spin-saturation tagging sub-sequence, followed by serial image acquisition. In these studies, 256 images were acquired with a temporal resolution of 2.56 ms. Deformation of the brain was quantified by following the spatial tags in the images.
MR imaging showed that the WHAM drove quantifiable brain motions using g forces less than those typically observed in day-to-day activities, with peak accelerations of ∼250 rad/sec.
The peak pre-contact accelerations and velocities achieved by the WHAM device in this study are both higher than devices used in previous studies, while also allowing for modification of these factors.
MR imaging performed with the WHAM provides a direct method to visualize and quantify "brain slosh" in response to rotational acceleration. Consequently, this approach might find utility in evaluating strategies to protect the brain from mild traumatic brain injury (mTBI).
一种用于在磁共振成像(MR)期间移动头部的设备,称为加权头部加速机构(WHAM),可在可编程的旋转限制和加速度轮廓内旋转仰卧位受试者的头部。WHAM 可与定制的 MRI 序列一起使用,以高时间分辨率可视化体内脑实质的变形和回弹,从而可以对大脑中的应变和剪切力进行元素级计算。与以前的设备不同,WHAM 可以配置为提供广泛的运动和加速度轮廓。
WHAM 在实验室台式机和 1.5T 和 3.0T MRI 扫描仪上使用高速相机以及凝胶体模和人体受试者进行了校准。MR 成像研究采用了空间自旋饱和标记子序列,然后进行串行图像采集。在这些研究中,使用 2.56 毫秒的时间分辨率采集了 256 张图像。通过在图像中跟踪空间标记来量化大脑的变形。
MR 成像显示,WHAM 以低于日常活动中通常观察到的 g 力驱动可量化的大脑运动,峰值加速度约为 250 弧度/秒。
在这项研究中,WHAM 设备达到的峰值预接触加速度和速度均高于以前研究中使用的设备,同时还允许修改这些因素。
使用 WHAM 进行的 MR 成像提供了一种直接可视化和量化旋转加速度引起的“脑震荡”的方法。因此,这种方法可能在评估保护大脑免受轻度创伤性脑损伤(mTBI)的策略方面具有实用价值。