Department of Electrical Engineering, City University of Hong Kong, Hong Kong, China.
Center for Biosystems, Neuroscience, and Nanotechnology, City University of Hong Kong, Hong Kong, China.
PLoS One. 2019 Jul 24;14(7):e0220258. doi: 10.1371/journal.pone.0220258. eCollection 2019.
Implantable neural probes are widely used to record and stimulate neural activities. These probes should be stiff enough for insertion. However, it should also be flexible to minimize tissue damage after insertion. Therefore, having dynamic control of the neural probe shank flexibility will be useful. For the first time, we have successfully fabricated flexible neural probes with embedded microfluidic channels for dynamic control of neural probe stiffness by controlling fluidic pressure in the channels. The present hybrid neural probes consisted of polydimethylsiloxane (PDMS) and polyimide (PI) layers could provide the required stiffness for insertion and flexibility during operation. The PDMS channels were fabricated by reversal imprint using a silicon mold and bonded to a PI layer to form the embedded channels in the neural probe. The probe shape was patterned using an oxygen plasma generated by an inductively coupled plasma etching system. The critical buckling force of PDMS/PI neural probes could be tuned from 0.25-1.25 mN depending on the applied fluidic pressure in the microchannels and these probes were successfully inserted into a 0.6% agarose gel that mimicked the stiffness of the brain tissue. Polymer-based neural probes are typically more flexible than conventional metal wire-based probes, and they could potentially provide less tissue damage after implantation.
植入式神经探针被广泛用于记录和刺激神经活动。这些探针应该足够坚硬,以便插入。然而,在插入后,它也应该具有足够的柔韧性,以尽量减少组织损伤。因此,对神经探针柄部柔韧性进行动态控制将是有用的。我们首次成功地制造了带有嵌入式微流道的柔性神经探针,通过控制通道中的流体压力来动态控制神经探针的刚度。这种混合式神经探针由聚二甲基硅氧烷 (PDMS) 和聚酰亚胺 (PI) 层组成,可以提供插入所需的刚度和操作时的柔韧性。通过使用硅模具进行反转压印制造了 PDMS 通道,并将其与 PI 层结合,在神经探针中形成嵌入式通道。使用感应耦合等离子体蚀刻系统产生的氧气等离子体对探针形状进行了图案化处理。PDMS/PI 神经探针的临界屈曲力可以根据微通道中施加的流体压力从 0.25-1.25 mN 进行调节,这些探针成功地插入了模拟脑组织刚度的 0.6%琼脂糖凝胶中。基于聚合物的神经探针通常比传统的金属丝基探针更灵活,并且在植入后可能会造成较小的组织损伤。