دورية أكاديمية

jULIEs: nanostructured polytrodes for low traumatic extracellular recordings and stimulation in the mammalian brain

التفاصيل البيبلوغرافية
العنوان: jULIEs: nanostructured polytrodes for low traumatic extracellular recordings and stimulation in the mammalian brain
المؤلفون: Racz, Romeo R, Kollo, Mihaly, Racz, Gabriella, Bulz, Ciprian, Ackels, Tobias, Warner, Tom, Wray, William, Kiskin, Nikolai, Chen, Chi, Ye, Zhiwen, de Hoz, Livia, Rancz, Ede, Schaefer, Andreas T
المصدر: Journal of Neural Engineering , 19 (1) , Article 016041. (2022)
بيانات النشر: IOP Publishing
سنة النشر: 2022
المجموعة: University College London: UCL Discovery
مصطلحات موضوعية: extracellular, in vivo, minimally perturbing, nanostructured, polytrodes, scalable, Animals, Brain, Electric Impedance, Electrodes, Implanted, Mice, Microelectrodes, Neurons, Silicon Dioxide
الوصف: Objective.Extracellular microelectrode techniques are the most widely used approach to interrogate neuronal populations. However, regardless of the manufacturing method used, damage to the vasculature and circuit function during probe insertion remains a concern. This issue can be mitigated by minimising the footprint of the probe used. Reducing the size of probes typically requires either a reduction in the number of channels present in the probe, or a reduction in the individual channel area. Both lead to less effective coupling between the probe and extracellular signals of interest.Approach.Here, we show that continuously drawn SiO2-insulated ultra-microelectrode fibres offer an attractive substrate to address these challenges. Individual fibres can be fabricated to >10 m continuous stretches and a selection of diameters below 30µm with low resistance (<100 Ω mm-1) continuously conductive metal core of <10µm and atomically flat smooth shank surfaces. To optimize the properties of the miniaturised electrode-tissue interface, we electrodeposit rough Au structures followed by ∼20 nm IrOx film resulting in the reduction of the interfacial impedance to <500 kΩ at 1 kHz.Main results. We demonstrate that these ultra-low impedance electrodes can record and stimulate both single and multi-unit activity with minimal tissue disturbance and exceptional signal-to-noise ratio in both superficial (∼40µm) and deep (∼6 mm) structures of the mouse brain. Further, we show that sensor modifications are stable and probe manufacturing is reproducible.Significance.Minimally perturbing bidirectional neural interfacing can reveal circuit function in the mammalian brainin vivo.
نوع الوثيقة: article in journal/newspaper
وصف الملف: text
اللغة: English
العلاقة: https://discovery.ucl.ac.uk/id/eprint/10144929/1/Racz_2022_J._Neural_Eng._19_016041.pdfTest; https://discovery.ucl.ac.uk/id/eprint/10144929Test/
الإتاحة: https://discovery.ucl.ac.uk/id/eprint/10144929/1/Racz_2022_J._Neural_Eng._19_016041.pdfTest
https://discovery.ucl.ac.uk/id/eprint/10144929Test/
حقوق: open
رقم الانضمام: edsbas.AB58B430
قاعدة البيانات: BASE