Wireless and battery-free technologies for neuroengineering

SM Won, L Cai, P Gutruf, JA Rogers - Nature Biomedical Engineering, 2023 - nature.com
Tethered and battery-powered devices that interface with neural tissues can restrict natural
motions and prevent social interactions in animal models, thereby limiting the utility of these …

Retinitis pigmentosa: progress in molecular pathology and biotherapeutical strategies

W Liu, S Liu, P Li, K Yao - International Journal of Molecular Sciences, 2022 - mdpi.com
Retinitis pigmentosa (RP) is genetically heterogeneous retinopathy caused by
photoreceptor cell death and retinal pigment epithelial atrophy that eventually results in …

Implantable, wireless device platforms for neuroscience research

P Gutruf, JA Rogers - Current opinion in neurobiology, 2018 - Elsevier
Recently developed classes of ultraminiaturized wireless devices provide powerful
capabilities in neuroscience research, as implantable light sources for simulation/inhibition …

Recent advances and current trends in brain‐computer interface research and their applications

M Zabcikova, Z Koudelkova, R Jasek… - International Journal …, 2022 - Wiley Online Library
Brain‐computer interface (BCI) provides direct communication between the brain and an
external device. BCI systems have become a trendy field of research in recent years. These …

A low-power current-reuse analog front-end for high-density neural recording implants

M Rezaei, E Maghsoudloo, C Bories… - IEEE transactions on …, 2018 - ieeexplore.ieee.org
Studying brain activity in vivo requires collecting bioelectrical signals from several
microelectrodes simultaneously in order to capture neuron interactions. In this work, we …

Optogenetics and its application in neural degeneration and regeneration

JD Ordaz, W Wu, XM Xu - Neural regeneration research, 2017 - journals.lww.com
Neural degeneration and regeneration are important topics in neurological diseases. There
are limited options for therapeutic interventions in neurological diseases that provide …

A 0.13- CMOS SoC for Simultaneous Multichannel Optogenetics and Neural Recording

G Gagnon-Turcotte, MN Khiarak… - IEEE Journal of Solid …, 2018 - ieeexplore.ieee.org
This paper presents a 0.13-μm CMOS system-onchip (SoC) for simultaneous multichannel
optogenetics and multichannel neural recording in freely moving laboratory animals. This …

Implantable Micro-Light-Emitting Diode (µLED)-based optogenetic interfaces toward human applications

JH Lee, S Lee, D Kim, KJ Lee - Advanced Drug Delivery Reviews, 2022 - Elsevier
Optogenetics has received wide attention in biomedical fields because of its advantages in
temporal precision and spatial resolution. Beyond contributions to important advances in …

A mm-sized free-floating wirelessly powered implantable optical stimulation device

Y Jia, SA Mirbozorgi, B Lee, W Khan… - IEEE transactions on …, 2019 - ieeexplore.ieee.org
This paper presents a mm-sized, free-floating, wirelessly powered, implantable optical
stimulation (FF-WIOS) device for untethered optogenetic neuromodulation. A resonator …

A hardware-efficient scalable spike sorting neural signal processor module for implantable high-channel-count brain machine interfaces

Y Yang, S Boling, AJ Mason - IEEE transactions on biomedical …, 2017 - ieeexplore.ieee.org
Next-generation brain machine interfaces demand a high-channel-count neural recording
system to wirelessly monitor activities of thousands of neurons. A hardware efficient neural …