跳轉至內容
Merck
  • Ultra-small carbon fiber electrode recording site optimization and improved in vivo chronic recording yield.

Ultra-small carbon fiber electrode recording site optimization and improved in vivo chronic recording yield.

Journal of neural engineering (2020-03-27)
Elissa J Welle, Paras R Patel, Joshua E Woods, Artin Petrossians, Elena Della Valle, Alexis Vega-Medina, Julianna M Richie, Dawen Cai, James D Weiland, Cynthia A Chestek
摘要

Carbon fiber electrodes may enable better long-term brain implants, minimizing the tissue response commonly seen with silicon-based electrodes. The small diameter fiber may enable high-channel count brain-machine interfaces capable of reproducing dexterous movements. Past carbon fiber electrodes exhibited both high fidelity single unit recordings and a healthy neuronal population immediately adjacent to the recording site. However, the recording yield of our carbon fiber arrays chronically implanted in the brain typically hovered around 30%, for previously unknown reasons. In this paper we investigated fabrication process modifications aimed at increasing recording yield and longevity. We tested a new cutting method using a 532nm laser against traditional scissor methods for the creation of the electrode recording site. We verified the efficacy of improved recording sites with impedance measurements and in vivo array recording yield. Additionally, we tested potentially longer-lasting coating alternatives to PEDOT:pTS, including PtIr and oxygen plasma etching. New coatings were evaluated with accelerated soak testing and acute recording. We found that the laser created a consistent, sustainable 257 ± 13.8 µm2 electrode with low 1 kHz impedance (19 ± 4 kΩ with PEDOT:pTS) and low fiber-to-fiber variability. The PEDOT:pTS coated laser cut fibers were found to have high recording yield in acute (97% > 100 µV pp , N = 34 fibers) and chronic (84% > 100 µV pp , day 7; 71% > 100 µV pp , day 63, N = 45 fibers) settings. The laser cut recording sites were good platforms for the PtIr coating and oxygen plasma etching, slowing the increase in 1 kHz impedance compared to PEDOT:pTS in an accelerated soak test. We have found that laser cut carbon fibers have a high recording yield that can be maintained for over two months in vivo and that alternative coatings perform better than PEDOT:pTS in accelerated aging tests. This work provides evidence to support carbon fiber arrays as a viable approach to high-density, clinically-feasible brain-machine interfaces.

材料
產品編號
品牌
產品描述

Sigma-Aldrich
Triton X-100, for molecular biology
暫時無法取得訂價和供貨情況
Sigma-Aldrich
矿物油, light oil, (neat)
暫時無法取得訂價和供貨情況
Sigma-Aldrich
抗NeuN抗体,克隆A60, clone A60, Chemicon®, from mouse
暫時無法取得訂價和供貨情況
Sigma-Aldrich
3,4-乙烯二氧噻吩, 97%
暫時無法取得訂價和供貨情況
Sigma-Aldrich
Triton X-100, laboratory grade
暫時無法取得訂價和供貨情況
Sigma-Aldrich
对甲苯磺酸钠, 95%
暫時無法取得訂價和供貨情況
Sigma-Aldrich
聚(乙二醇), average Mn 2,050, chips
暫時無法取得訂價和供貨情況
Sigma-Aldrich
多聚甲醛, reagent grade, crystalline
暫時無法取得訂價和供貨情況