Chronic intracortical microelectrode arrays induce non-uniform, depth-related tissue responses.
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Mechanical and Biological Interactions of Implants with the Brain and Their Impact on Implant DesignComprehensive chronic laminar single-unit, multi-unit, and local field potential recording performance with planar single shank electrode arraysNanoporous Gold Biointerfaces: Modifying Nanostructure to Control Neural Cell Coverage and Enhance Electrophysiological Recording Performance.A comparison of neuroinflammation to implanted microelectrodes in rat and mouse models.Mechanically-compliant intracortical implants reduce the neuroinflammatory response.Glial cells, but not neurons, exhibit a controllable response to a localized inflammatory microenvironment in vitro.Mechanical failure modes of chronically implanted planar silicon-based neural probes for laminar recording.Chronic tissue response to untethered microelectrode implants in the rat brain and spinal cord.Nanoporous gold as a neural interface coating: effects of topography, surface chemistry, and feature size.In vivo Characterization of Amorphous Silicon Carbide As a Biomaterial for Chronic Neural InterfacesMaterials approaches for modulating neural tissue responses to implanted microelectrodes through mechanical and biochemical means.Brain Neuromodulation Techniques: A Review.The Effect of Residual Endotoxin Contamination on the Neuroinflammatory Response to Sterilized Intracortical Microelectrodes.Mechanisms of Reduced Astrocyte Surface Coverage in Cortical Neuron-Glia Co-cultures on Nanoporous Gold Surfaces.Foreign Body Response to Intracortical Microelectrodes Is Not Altered with Dip-Coating of Polyethylene Glycol (PEG).Wavelet methodology to improve single unit isolation in primary motor cortex cellsDevelopment of Superoxide Dismutase Mimetic Surfaces to Reduce Accumulation of Reactive Oxygen Species for Neural Interfacing Applications.In vivo characterization of the electrophysiological and astrocytic responses to a silicon neuroprobe implanted in the mouse neocortex.Multifunctional fibers for simultaneous optical, electrical and chemical interrogation of neural circuits in vivo.Unique electrophysiological and impedance signatures between encapsulation types: An analysis of biological Utah array failure and benefit of a biomimetic coating in a rat model.PrismPlus: a mouse line expressing distinct fluorophores in four different brain cell types.Multifunctional Neural Interfaces for Closed-Loop Control of Neural ActivityCharacterization of the Neuroinflammatory Response to Thiol-ene Shape Memory Polymer Coated Intracortical Microelectrodes
P2860
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P2860
Chronic intracortical microelectrode arrays induce non-uniform, depth-related tissue responses.
description
2013 nî lūn-bûn
@nan
2013 թուականի Փետրուարին հրատարակուած գիտական յօդուած
@hyw
2013 թվականի փետրվարին հրատարակված գիտական հոդված
@hy
2013年の論文
@ja
2013年論文
@yue
2013年論文
@zh-hant
2013年論文
@zh-hk
2013年論文
@zh-mo
2013年論文
@zh-tw
2013年论文
@wuu
name
Chronic intracortical microele ...... epth-related tissue responses.
@ast
Chronic intracortical microele ...... epth-related tissue responses.
@en
type
label
Chronic intracortical microele ...... epth-related tissue responses.
@ast
Chronic intracortical microele ...... epth-related tissue responses.
@en
prefLabel
Chronic intracortical microele ...... epth-related tissue responses.
@ast
Chronic intracortical microele ...... epth-related tissue responses.
@en
P2860
P356
P1476
Chronic intracortical microele ...... depth-related tissue responses
@en
P2093
Himanshi A Desai
P2860
P304
P356
10.1088/1741-2560/10/2/026007
P577
2013-02-21T00:00:00Z