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方涛

作品数:2 被引量:5H指数:1
供职机构:东南大学生物科学与医学工程学院生物电子学国家重点实验室更多>>
发文基金:国家重点实验室开放基金国家自然科学基金更多>>
相关领域:电子电信更多>>

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Microelectrode array for bioelectrical signal stimulation and recording被引量:1
2011年
A microelectrode array(MEA) is presented, which is composed of 60 independent electrodes with 59 working ones and one reference one, and they are divided into 30 pairs. Except for the reference electrode, each pair consists of one stimulating electrode and one recording electrode. Supported by the peripheral circuits, four electrode states to study the bioelectrical signal of biological tissue or slice cultured in-vitro on the surface of the electrodes can be realized through each pair of electrodes. The four electrode states are stimulation, recording, stimulation and recording simultaneously, and isolation. The state of each pair of working electrodes can be arbitrarily controlled according to actual needs. The MEAs are fabricated in printed circuit board (PCB) technology. The total area of the PCB-based MEA is 49 mm × 49 mm. The impedance measurement of MEA is carried out in 0.9% sodium chloride solution at room temperature by means of 2-point measurements with an Agilent LCR meter, and the test signal for the impedance measurement is sinusoidal (AC voltage 50 mV, sweeping frequency 20 Hz to 10 kHz). The electrode impedance is between 200 and 3 kΩ while the frequency is between 500 and 1 000 Hz. The electrode impedance magnitude is inversely proportional to the frequency. Experiments of toad sciatic nerve in-vitro stimulation and recording and signal regeneration between isolated toad sciatic nerves are carried out on the PCB-based MEA. The results show that the MEA can be used for bioelectrical signal stimulation, recording, stimulation and recording simultaneously, and isolation of biological tissues or slices in-vitro.
潘海仙吕晓迎王志功方涛邱雷黄宗浩
用微电子神经桥实现受控脊蟾蜍运动功能重建的研究被引量:4
2011年
在前期电刺激、机械刺激和化学刺激验证了采用微电子神经桥(MENB)实现神经功能重建的基础上,为了使受控脊蟾蜍重建的动作更加协调,以自由活动的蟾蜍的坐骨神经信号作为信号源,以脊蟾蜍的坐骨神经为受控对象,借助MENB实现了受控脊蟾蜍坐骨神经的功能重建。实验结果表明,受控脊蟾蜍在自由活动蟾蜍坐骨神经信号的控制下可以实现同步的伸缩腿动作。与其它刺激方式相比,这种刺激在动作协调性方面有了明显的改善。该研究工作提供了医疗康复训练的新途径。
沈晓燕王志功吕晓迎黄宗浩李文渊赵鑫泰潘海仙方涛
关键词:神经功能重建康复训练
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