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A 16-channel SQUID-device for biomagnetic investigations of small objects.

机译:16通道SQUID设备,用于小物体的生物磁研究。

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Biomagnetic investigations in basic physiological research using animals require measurement devices different from commercial biomagnetometers used in human investigations. Two major problems have to be tackled in the design of such biomagnetometers. First, the spatial sampling needs to be much higher. Second, the distance between pick-up coils and the sources needs to be much shorter in order to compensate the worse signal-to-noise ratio (SNR) due to the smaller pick-up coils. We designed and built a 16-channel biomagnetic measurement system meeting these design criteria. The pick-up coil diameter of this new biomagnetometer is 6.7 mm, thus allowing 16 channels on an area of 3.2x3.2 cm2. The pick-up coils are located 3 mm above the dewar outer bottom, hence the closest distance to the cortical surface can be a few millimetres. We provide as an example of first measurements performed with the new biomagnetometer investigations of epileptic spikes in adult rabbits by simultaneous magnetoencephalogram (MEG) and electrocorticogram (ECoG) recordings. The high SNR of the recorded MEG and the simultaneously detected electric potentials allow investigations of the spatio-temporal pattern of neuronal processes of epileptiform spikes with signal strengths of about 3.5 pT.
机译:使用动物进行的基本生理研究中的生物磁研究需要与人类研究中使用的商业生物磁强计不同的测量设备。这种生物磁力计的设计必须解决两个主要问题。首先,空间采样需要更高。其次,为了补偿由于较小的拾波线圈而导致的较差的信噪比(SNR),拾波线圈和源之间的距离需要短得多。我们设计并构建了满足这些设计标准的16通道生物磁测量系统。这种新型生物磁力计的拾取线圈直径为6.7 mm,因此在3.2x3.2 cm2的面积上允许16个通道。拾取线圈位于杜瓦瓶外部底部上方3毫米处,因此距皮层表面的最近距离可以是几毫米。我们提供了一个新的生物磁强计,通过同时进行的脑磁图(MEG)和脑电图(ECoG)记录对成年兔的癫痫发作进行首次测量的示例。记录的MEG的高SNR和同时检测到的电势允许研究信号强度约为3.5 pT的癫痫样突触的神经元过程的时空模式。

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