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首页> 外文期刊>Biomaterials >Electrical stimulation of retinal ganglion cells with diamond and the development of an all diamond retinal prosthesis
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Electrical stimulation of retinal ganglion cells with diamond and the development of an all diamond retinal prosthesis

机译:金刚石电刺激视网膜神经节细胞和全金刚石视网膜假体的发展

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摘要

Electronic retinal implants for the blind are already a market reality. A world wide effort is underway to find the technology that offers the best combination of performance and safety for potential patients. Our approach is to construct an epi-retinally targeted device entirely encapsulated in diamond to maximise longevity and biocompatibility. The stimulating array of our device comprises a monolith of electrically insulating diamond with thousands of hermetic, microscale nitrogen doped ultra-nanocrystalline diamond (N-UNCD) feedthroughs. Here we seek to establish whether the conducting diamond feedthroughs of the array can be used as stimulating electrodes without further modification with a more traditional neural stimulation material. Efficacious stimulation of retinal ganglion cells was established using single N-UNCD microelectrodes in contact with perfused, explanted, rat retina. Evoked rat retinal ganglion cell action potentials were recorded by patch clamp recording from single ganglion cells, adjacent to the N-UNCD stimulating electrode. Separately, excellent electrochemical stability of N-UNCD was established by prolonged pulsing in phosphate buffered saline at increasing charge density up to the measured charge injection limit for the material.
机译:用于盲人的电子视网膜植入物已经是市场现实。正在全球范围内寻找能够为潜在患者提供性能和安全性最佳组合的技术。我们的方法是构建完全封装在钻石中的视网膜外标靶设备,以最大化使用寿命和生物相容性。我们设备的激励阵列包括一块电绝缘金刚石单块,其上有成千上万个气密,微尺度的氮掺杂超纳米晶金刚石(N-UNCD)穿通孔。在这里,我们试图确定是否可以将阵列的导电金刚石穿通线用作刺激电极,而无需使用更传统的神经刺激材料进行进一步修改。使用单个N-UNCD微电极与灌注的,植入的大鼠视网膜接触,可有效刺激视网膜神经节细胞。通过膜片钳记录从邻近N-UNCD刺激电极的单个神经节细胞记录诱发的大鼠视网膜神经节细胞动作电位。另外,通过在磷酸盐缓冲盐水中以增加的电荷密度直至测量的材料注入极限来延长脉冲,可以建立N-UNCD的出色电化学稳定性。

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