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Konstantin Nikolic

Researcher at Imperial College London

Publications -  109
Citations -  2371

Konstantin Nikolic is an academic researcher from Imperial College London. The author has contributed to research in topics: Light intensity & CMOS. The author has an hindex of 20, co-authored 105 publications receiving 2095 citations. Previous affiliations of Konstantin Nikolic include University of Belgrade & University of West London.

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Multi-site optical excitation using ChR2 and micro-LED array

TL;DR: In this article, an array of high-power micro light-emitting diodes (micro-LEDs) is used to generate arbitrary optical excitation patterns on a neuronal sample with micrometre and millisecond resolution.
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Photocycles of Channelrhodopsin‐2

TL;DR: The crucial insight provided by the analysis of the new model is that it reveals an adaptation mechanism of the ChR2 molecule, which means very simple organisms expressing ChR1 can use this form of light adaptation.
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Fault-tolerant techniques for nanocomputers

TL;DR: In this article, the authors examine and compare four fault-tolerant techniques: R-fold multiple redundancy, cascaded triple modular redundancy, von Neumann's multiplexing method, and a reconfigurable computer technique.
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Micro-LED arrays: a tool for two-dimensional neuron stimulation

TL;DR: A GaN based micro-light emitting diode (LED) array that can open the way to multi- site photostimulation of neuron cells and a complete system that combines the micro-LED array with multi-site electrophysiological recording based on microelectrode array technology and/or fluorescence imaging is presented.
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Optobionic vision-a new genetically enhanced light on retinal prosthesis

TL;DR: It is shown that typically 100 mW cm(-2) in instantaneous light intensity on the neuron in order to stimulate action potentials is needed, and how this can be reduced down to safe levels to negate thermal and photochromic damage to the eye.