IF 4.7 2区 医学 Q1 NEUROIMAGING NeuroImage Pub Date : 2025-02-25 DOI:10.1016/j.neuroimage.2025.121078
Shengjie Qi , Xinda Song , Le Jia , Zhaoxin Duan , Yan Dai , Jing Zhang , Xiaolin Ning
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引用次数: 0

摘要

在脑磁图(MEG)测量中,光泵磁强计(OPM)的使用为超导探测器提供了一种可行、可移动和可穿戴的替代品。最近,广泛使用的波束成形器成像技术大大提高了脑磁图在神经成像源重建领域的空间精度。本研究探讨了利用波束成形器成像技术重建信号源的空间分辨率。波束成形器重建的空间精度取决于对数据协方差矩阵和前导场的准确估计。在实际测量中,许多传感器校准误差,包括增益误差、串扰和 OPM 敏感轴的角度误差(例如,低频磁场漂移造成的误差),都会扭曲测量数据和前向模型,从而降低空间分辨率。首先根据布洛赫方程提供了 OPM 校准误差理论。然后使用自主开发的 OPM 阵列对校准误差进行量化。并推导出协方差矩阵误差的弗罗贝尼斯准则与增益误差、串扰之间的分析关系。分析了敏感轴角度误差引起的点扩散函数(PSF)和前向模型误差之间的关系。最后,利用基于现实头部模型的两个偶极子模拟,研究了校准误差对 OPM-MEG 空间分辨率的影响。我们发现,校准误差的存在会降低波束成形器重建的空间分辨率。而且随着信噪比的增加,这种降低会变得更加严重。
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Investigating the effects of calibration errors on the spatial resolution of OPM-MEG beamformer imaging
The use of optically pumped magnetometers (OPMs) has provided a feasible, moveable and wearable alternative to superconducting detectors for magnetoencephalography (MEG) measurements. Recently, the widely used beamformer imaging technique has greatly improved spatial accuracy of MEG in the field of source reconstruction of neuroimaging. The spatial resolution of the source reconstruction using beamformer imaging technique was explored in the present study. The spatial accuracy of a beamformer reconstruction depends on accurate estimation of the data covariance matrix and lead field. In practical measurements, many sensor calibration errors including the gain error, crosstalk and angular error of the sensitive axis of OPMs due to for example, the low frequency magnetic field drift will distort the measured data as well as the forward model and thus reduce spatial resolution. The theory of OPM calibration errors was first provided based on the Bloch equations. The calibration errors are then quantified using the self-developed OPM array. And an analytical relationship between the Frobenius norm of the covariance matrix error and gain error, crosstalk was derived. The relationship between point-spread function (PSF) and the forward model error caused by the angular error of sensitive axis was analyzed. Finally, the effects of calibration errors on spatial resolution of OPM-MEG were investigated using simulations of two dipoles with orthogonal signals at the source level based on realistic head models. We find the presence of calibration errors will decrease the spatial resolution of beamformer reconstruction. And this decrease will become more severe as the signal-to-noise ratio increases.
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来源期刊
NeuroImage
NeuroImage 医学-核医学
CiteScore
11.30
自引率
10.50%
发文量
809
审稿时长
63 days
期刊介绍: NeuroImage, a Journal of Brain Function provides a vehicle for communicating important advances in acquiring, analyzing, and modelling neuroimaging data and in applying these techniques to the study of structure-function and brain-behavior relationships. Though the emphasis is on the macroscopic level of human brain organization, meso-and microscopic neuroimaging across all species will be considered if informative for understanding the aforementioned relationships.
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