Leistner Stefanie, Scheer Hans-Juergen, Sander Tilmann, Burghoff Martin, Trahms Lutz, Curio Gabriel, Mackert Bruno-Marcel
Neurophysics Group, Department of Neurology, Campus Benjamin Franklin, Charité- University Medicine Berlin, Berlin, Germany.
Biomed Tech (Berl). 2007 Feb;52(1):102-5. doi: 10.1515/BMT.2007.019.
A non-invasive DC electroencephalographic (DC-EEG) method was developed to record and analyze focal low-frequency (<0.1 Hz) DC changes in the human cerebral cortex. A simple repetitive finger-movement task was used as a physiological activation paradigm. DC-EEG amplitudes were recorded using a custom-made DC amplifier with automatic offset correction. A total of 16 standard Ag/AgCl electrodes covered the left primary motor cortex. In three of six subjects, reliable focal motor-related DC-EEG shifts over the hand cortex were monitored. This study demonstrates that refined DC-EEG recording and data analysis procedures allow non-invasive recording of low-frequency and low-amplitude focal cortical changes in humans. An important clinical perspective of this technology is the detection of stroke-associated cortical DC activity.
一种无创性直流脑电图(DC-EEG)方法被开发出来,用于记录和分析人类大脑皮层局灶性低频(<0.1Hz)直流变化。一个简单的重复性手指运动任务被用作生理激活范式。使用具有自动偏移校正功能的定制直流放大器记录DC-EEG振幅。总共16个标准Ag/AgCl电极覆盖左初级运动皮层。在六名受试者中的三名中,监测到了手部皮层上可靠的与运动相关的局灶性DC-EEG变化。这项研究表明,精细的DC-EEG记录和数据分析程序能够无创记录人类低频和低振幅的局灶性皮层变化。这项技术的一个重要临床应用前景是检测与中风相关的皮层DC活动。