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自适应卡尔曼滤波在实时视野映射中的应用。

Adaptive Kalman filtering for real-time mapping of the visual field.

机构信息

Department of Biophysics, 8701 Watertown Plank Road, Medical College of Wisconsin, Milwaukee, WI 53226, USA.

出版信息

Neuroimage. 2012 Feb 15;59(4):3533-47. doi: 10.1016/j.neuroimage.2011.11.003. Epub 2011 Nov 9.

DOI:10.1016/j.neuroimage.2011.11.003
PMID:22100663
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3862081/
Abstract

This paper demonstrates the feasibility of real-time mapping of the visual field for clinical applications. Specifically, three aspects of this problem were considered: (1) experimental design, (2) statistical analysis, and (3) display of results. Proper experimental design is essential to achieving a successful outcome, particularly for real-time applications. A random-block experimental design was shown to have less sensitivity to measurement noise, as well as greater robustness to error in modeling of the hemodynamic impulse response function (IRF) and greater flexibility than common alternatives. In addition, random encoding of the visual field allows for the detection of voxels that are responsive to multiple, not necessarily contiguous, regions of the visual field. Due to its recursive nature, the Kalman filter is ideally suited for real-time statistical analysis of visual field mapping data. An important feature of the Kalman filter is that it can be used for nonstationary time series analysis. The capability of the Kalman filter to adapt, in real time, to abrupt changes in the baseline arising from subject motion inside the scanner and other external system disturbances is important for the success of clinical applications. The clinician needs real-time information to evaluate the success or failure of the imaging run and to decide whether to extend, modify, or terminate the run. Accordingly, the analytical software provides real-time displays of (1) brain activation maps for each stimulus segment, (2) voxel-wise spatial tuning profiles, (3) time plots of the variability of response parameters, and (4) time plots of activated volume.

摘要

本文展示了将视野实时映射用于临床应用的可行性。具体而言,考虑了该问题的三个方面:(1)实验设计,(2)统计分析,和(3)结果展示。适当的实验设计对于获得成功的结果至关重要,特别是对于实时应用。随机块实验设计显示出对测量噪声的敏感性较小,对血流动力学脉冲响应函数(IRF)模型的误差具有更大的稳健性,并且比常见的替代方案更灵活。此外,视野的随机编码允许检测对视野的多个不一定连续的区域有反应的体素。由于其递归性质,卡尔曼滤波器非常适合实时统计分析视野映射数据。卡尔曼滤波器的一个重要特点是它可用于非平稳时间序列分析。卡尔曼滤波器能够实时适应由于受试者在扫描仪内运动以及其他外部系统干扰引起的基线的突然变化,这对于临床应用的成功非常重要。临床医生需要实时信息来评估成像运行的成功或失败,并决定是否扩展、修改或终止运行。因此,分析软件实时显示(1)每个刺激段的大脑激活图,(2)体素级别的空间调谐分布,(3)响应参数变化的时间图,和(4)激活体积的时间图。

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