Softening neural implants that change their elastic modulus under physiological conditions are promising candidates to mitigate neuroinflammatory response due to the reduced mechanical mismatch between the artificial interface and the brain tissue. Intracortical neural probes have been used to demonstrate the viability of this material engineering approach. In our paper, we present a robust technology of softening neural microelectrode and demonstrate its recording performance in the hippocampus of rat subjects. The 5âmm long, single shank, multi-channel probes are composed of a custom thiol-ene/acrylate thermoset polymer substrate, and were micromachined by standard MEMS processes. A special packaging technique is also developed, which guarantees the stable functionality and longevity of the device, which were tested under in vitro conditions prior to animal studies. The 60 micron thick device was successfully implanted to 4.5âmm deep in the hippocampus without the aid of any insertion shuttle. Spike amplitudes of 84âµV peak-to-peak and signal-to-noise ratio of 6.24 were achieved in acute experiments. Our study demonstrates that softening neural probes may be used to investigate deep layers of the rat brain.
A softening laminar electrode for recording single unit activity from the rat hippocampus.
一种用于记录大鼠海马单细胞活动的软化层状电极
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作者:Zátonyi A, Orbán G, Modi R, Márton G, Meszéna D, Ulbert I, Pongrácz A, Ecker M, Voit W E, Joshi-Imre A, Fekete Z
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2019 | 起止号: | 2019 Feb 20; 9(1):2321 |
| doi: | 10.1038/s41598-019-39835-6 | 种属: | Rat |
| 研究方向: | 细胞生物学 | ||
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