首页> 外文会议>Conference on Functional Monitoring and Drug-Tissue Interaction Jan 21-24, 2002 San Jose, USA >Extraction of fast neuronal changes from multichannel, functional near infrared spectroscopy signals using independent component analysis
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Extraction of fast neuronal changes from multichannel, functional near infrared spectroscopy signals using independent component analysis

机译:使用独立分量分析从多通道功能性近红外光谱信号中提取快速神经元变化

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Fast changes in the range of milliseconds in the optical properties of cerebral tissue, which are associated with brain activity, can be detected using non-invasive near-infrared spectroscopy (NIRS). These changes in light scattering are due to an alteration in the refractive index at neuronal membranes. The aim of this study was to develop highly sensitive data analysis algorithms to detect this fast signal, which is small compared to other physiological signals. A frequency-domain tissue oximeter, whose laser diodes were modulated at 110MHz was used. The amplitude, mean intensity and phase of the modulated optical signal was measured at 96Hz sample rate. The probe consisting of 4 crossed source detector pairs was placed above the motor cortex, contralateral to the hand performing a tapping exercise consisting of alternating rest- and tapping periods of 20s each. The tapping frequency, which was set to 3.55Hz or 2.5 times the heart rate of the subject to avoid the influence of harmonics on the signal, could not be observed in any of the individual signals measured by the detectors. An adaptive filter was used to remove the arterial pulsatility from the optical signals. Independent Component Analysis allowed to separate signal components in which the tapping frequency was clearly visible.
机译:可以使用非侵入式近红外光谱(NIRS)检测与大脑活动相关的大脑组织光学特性的毫秒范围内的快速变化。光散射的这些变化是由于神经元膜的折射率改变所致。这项研究的目的是开发高度敏感的数据分析算法来检测这种快速信号,与其他生理信号相比,该信号很小。使用频域组织血氧仪,其激光二极管在110MHz调制。以96Hz采样率测量调制光信号的幅度,平均强度和相位。由四对交叉源探测器对组成的探头放置在运动皮层上方,与手对侧进行敲击练习,该敲击练习由交替的静息时间和敲击时间各20s组成。在检测器测量的任何单个信号中均未观察到敲击频率,该敲击频率设置为3.55Hz或受试者心率的2.5倍,以避免谐波对信号的影响。使用自适应滤波器从光信号中去除动脉搏动。独立分量分析允许分离出分接头频率清晰可见的信号分量。

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