David Garrett

David Garrett

RMIT University

H-index: 29

Oceania-Australia

About David Garrett

David Garrett, With an exceptional h-index of 29 and a recent h-index of 21 (since 2020), a distinguished researcher at RMIT University, specializes in the field of Electrochemistry, Bionics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Optogenetic stimulation for spatially precise stimulation of cochlear neurons

Control of Neuronal Survival and Development Using Conductive Diamond

Spread of activation and interaction between channels with multi-channel optogenetic stimulation in the mouse cochlea

Effective removal of metal-carbide contamination from diamond circuit boards by reactive ion etching

A method of forming a diamond coating on a carbon material

Advances in carbon-based microfiber electrodes for neural interfacing

Method of fabricating an electrode structure

Highly uniform polycrystalline diamond coatings of three-dimensional structures

David Garrett Information

University

Position

___

Citations(all)

2480

Citations(since 2020)

1370

Cited By

1691

hIndex(all)

29

hIndex(since 2020)

21

i10Index(all)

53

i10Index(since 2020)

43

Email

University Profile Page

Google Scholar

David Garrett Skills & Research Interests

Electrochemistry

Bionics

Top articles of David Garrett

Optogenetic stimulation for spatially precise stimulation of cochlear neurons

2024/3/13

Control of Neuronal Survival and Development Using Conductive Diamond

ACS Applied Materials & Interfaces

2024/1/17

Spread of activation and interaction between channels with multi-channel optogenetic stimulation in the mouse cochlea

Hearing Research

2023/12/1

Effective removal of metal-carbide contamination from diamond circuit boards by reactive ion etching

Diamond and Related Materials

2023/11/1

A method of forming a diamond coating on a carbon material

2022/4/28

Advances in carbon-based microfiber electrodes for neural interfacing

2021/4/12

Method of fabricating an electrode structure

2021/4/8

Highly uniform polycrystalline diamond coatings of three-dimensional structures

Surface and Coatings Technology

2021

Laminin coated diamond electrodes for neural stimulation

Materials Science and Engineering: C

2021/1/1

In vivo feasibility of epiretinal stimulation using ultrananocrystalline diamond electrodes

Journal of Neural Engineering

2020/8/3

Minimizing axon bundle activation of retinal ganglion cells with oriented rectangular electrodes

Journal of neural engineering

2020/6/17

Stimulation strategies for improving the resolution of retinal prostheses

2020/3/26

Analysis of the capacitance of minimally insulated parallel wires implanted in biological tissue

Biomedical Microdevices

2020/3

Near-infrared excitation of nitrogen-doped ultrananocrystalline diamond photoelectrodes in saline solution

Diamond and Related Materials

2020/3/1

3D diamond electrode array for high-acuity stimulation in neural tissue

ACS Applied Bio Materials

2020/2/10

Hybrid diamond/carbon fiber microelectrodes enable multimodal electrical/chemical neural interfacing

Biomaterials

2020/2/1

Wide dipole antennas for wireless powering of miniaturised bioelectronic devices

Sensing and Bio-Sensing Research

2020/2/1

Method of forming an enclosure

2020/1/28

High Fidelity Bidirectional Neural Interfacing with Carbon Fiber Microelectrodes Coated with Boron‐Doped Carbon Nanowalls: An Acute Study

Advanced Functional Materials

2020/12

Improved wetting of gold active braze alloy on diamond for use in medical implants

Diamond and Related Materials

2020/11/1

See List of Professors in David Garrett University(RMIT University)

Co-Authors

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