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Detachable ultrasonic enabled inserter for neural probe insertion using biodissolvable Polyethylene Glycol

机译:可拆卸的超声波使能插入器,用于使用可生物溶解的聚乙二醇进行神经探针插入

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We report on a method to reversibly bond and debond silicon neural probes to a silicon ultrasonic horn to enable ultrasonic actuation during neural probe insertion. Neural probes can be attached using Poly-Ethylene Glycol (PEG), a bio-dissolvable polymer, and consequently debonded from the ultrasonic driver by aqueous dissolution. We demonstrate reduced force during probe insertion corresponding to ultrasonically micro-cutting of tissue. Reduced insertion forces can lead to less damage and reduced immune response for longer life neural interfaces. Three different configurations of neural probes were tested demonstrating insertion force reduction significantly by a factor of 4.3. The probes were driven by 30 V at 101.7 kHz. Our approach can potentially help inserting neural probes made in any new technology ultrasonically and increase the lifetime of neural probe recording sites.
机译:我们报告了一种方法,该方法可逆地将硅神经探针绑定和解键到硅超声变幅杆,以使在插入神经探针过程中进行超声驱动。可以使用聚乙二醇(PEG)(一种生物可溶的聚合物)连接神经探针,然后通过水溶解将其从超声驱动器上剥离下来。我们展示了在探头插入过程中相应于组织的超声微切减小的作用力。减小的插入力可以减少损伤,并减少免疫应答,从而延长神经接口的使用寿命。测试了三种不同配置的神经探针,证明插入力显着降低了4.3倍。探针由30 V的101.7 kHz驱动。我们的方法可以潜在地帮助以超声方式插入用任何新技术制成的神经探针,并延长神经探针记录部位的寿命。

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