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A Method for Measuring Orientation within a Magnetic Resonance Imaging Scanner using Gravity and the Static Magnetic Field (VectOrient)

机译:一种利用重力和静磁场(VectOrient)测量磁共振成像扫描仪内方向的方法

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摘要

In MRI brain imaging, subject motion limits obtainable image clarity. Due to the hardware layout of an MRI scanner, gradient excitations can be used to rapidly detect position. Orientation, however, is more difficult to detect and is commonly calculated by comparing the position measurements of multiple spatially constrained points to a reference dataset. The result is increased size of the apparatus the subject must wear, which can influence the imaging workflow. In optical based methods marker attachment sites are limited due to the line of sight requirement between the camera and marker, and an external reference frame is introduced. To address these challenges a method called VectOrient is proposed for orientation measurement that is based on vector observations of gravity and the MRI scanner’s static magnetic field. A prototype device comprising of an accelerometer, magnetometer and angular rate sensor shows good MRI compatibility. Phantom scans of a pineapple with zero scanner specific calibration achieve comparable results to a rigid body registration algorithm with deviations less than 0.8 degrees over 28 degree changes in orientation. Dynamic performance shows potential for prospective motion correction as rapid changes in orientation (peak 20 degrees per second) can be corrected. The pulse sequence implemented achieves orientation updates with a latency estimated to be less than 12.7 ms, of which only a small fraction (<1 ms) is used for computing orientation from the raw sensor signals. The device is capable of quantifying subject respiration and heart rates. The proposed approach for orientation estimation could help address some limitations of existing methods such as orientation measurement range, temporal resolution, ease of use and marker placement.
机译:在MRI脑成像中,对象的运动限制了图像的清晰度。由于MRI扫描仪的硬件布局,可以使用梯度激励来快速检测位置。但是,方向更难检测,通常通过将多个空间约束点的位置测量值与参考数据集进行比较来计算方向。结果是增加了受试者必须穿戴的设备的尺寸,这会影响成像工作流程。在基于光学的方法中,由于摄像机和标记之间的视线要求,标记的附着位置受到限制,并且引入了外部参考框架。为了应对这些挑战,提出了一种称为VectOrient的方法,该方法基于重力和MRI扫描仪的静磁场的矢量观测值进行方向测量。由加速度计,磁力计和角速率传感器组成的原型设备显示出良好的MRI兼容性。通过零扫描仪特定校准对菠萝进行幻影扫描可获得与刚体配准算法相当的结果,其在28度方向变化中的偏差小于0.8度。动态性能显示出可以进行预期的运动校正的潜力,因为可以纠正方向的快速变化(每秒20个峰值)。实施的脉冲序列可实现定向更新,其等待时间估计小于12.7 ms,其中只有一小部分(<1 ms)用于从原始传感器信号中计算定向。该设备能够量化受试者的呼吸和心率。所提出的方向估计方法可以帮助解决现有方法的一些局限性,例如方向测量范围,时间分辨率,易用性和标记放置。

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