Department of Clinical and Experimental Epilepsy, UCL Institute of Neurology, University College London, London WC1N 3BG, UK.
J Neurosci Methods. 2011 Sep 30;201(1):106-15. doi: 10.1016/j.jneumeth.2011.07.018. Epub 2011 Jul 26.
It has become increasingly evident that continuous EEG monitoring is necessary to observe the development of epilepsy in animals, and to determine the effect of drugs on spontaneous seizures. Telemetric recording systems have been increasingly used to monitor EEG in freely moving animals. One challenge faced by such systems is to monitor frequencies above 80Hz continuously for weeks. We present an implantable, 2.4-ml, telemetric sensor that can monitor EEG at 512 samples per second for eight weeks in a freely moving animal. With minor modifications, the same transmitter can operate at higher sample rates with a proportional decrease in operating life. Signal transmission is through bursts of 915-MHz radio power. The burst transmission and several other novel techniques reduce the transmitter's power consumption by two orders of magnitude while allowing 8 transmitters to share the same recording system. The use of radio-frequency transmission permits digitization within the sensor to sixteen-bit resolution, thus eliminating transmission-generated signal noise. The result is a signal with dynamic range 9mV, bandwidth 160Hz, input noise 12μV, and AC power interference less than 1μV. All circuit diagrams are open-source. Data acquisition takes place over the Internet using open-source software that works on multiple operating systems. The resulting system permits long-term, continuous, monitoring of EEG signals, therefore providing continuous and reliable data upon which to base studies of epilepsy in freely moving animals.
越来越明显的是,连续的脑电图监测对于观察动物癫痫的发展以及确定药物对自发性癫痫发作的影响是必要的。遥测记录系统越来越多地用于监测自由活动动物的脑电图。这些系统面临的一个挑战是连续数周以 80Hz 以上的频率进行监测。我们提出了一种可植入的、2.4ml 的遥测传感器,它可以在自由活动的动物中以每秒 512 个样本的速度连续监测 8 个星期的脑电图。通过较小的修改,相同的发射器可以以更高的采样率工作,而操作寿命成比例缩短。信号传输是通过 915MHz 无线电功率的突发传输。突发传输和其他几种新颖技术将发射器的功耗降低了两个数量级,同时允许 8 个发射器共享同一个记录系统。射频传输的使用允许在传感器内将信号数字化为 16 位分辨率,从而消除传输产生的信号噪声。结果是信号具有 9mV 的动态范围、160Hz 的带宽、12μV 的输入噪声和小于 1μV 的交流电源干扰。所有电路图都是开源的。使用适用于多个操作系统的开源软件通过互联网进行数据采集。由此产生的系统允许对 EEG 信号进行长期、连续的监测,因此可以提供连续可靠的数据,从而为自由活动动物的癫痫研究提供依据。