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Hiroko Kondo

Researcher at Hiroshima City University

Publications -  19
Citations -  289

Hiroko Kondo is an academic researcher from Hiroshima City University. The author has contributed to research in topics: Chemistry & Medicine. The author has an hindex of 5, co-authored 9 publications receiving 140 citations. Previous affiliations of Hiroko Kondo include Kitami Institute of Technology & RIKEN Quantitative Biology Center.

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Development of a real-time endoscopic image diagnosis support system using deep learning technology in colonoscopy.

TL;DR: An artificial intelligence (AI) system that automatically detects early signs of colorectal cancer during colonoscopy and can alert endoscopists in real-time to avoid missing abnormalities such as non-polypoid polyps during Colonoscopy, improving the early detection of this disease.
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Structural basis for the membrane association of ankyrinG via palmitoylation.

TL;DR: The crystal structures of the reduced and oxidized forms of the AnkG s-palmitoylation domain are solved and multiple long-term coarse-grained molecular dynamics simulations are used to analyze their membrane association and suggest that AnkG in the juxtamembrane region is primed to accept lipid modification at Cys and constitutes a rigid structural base upon which a membrane-excitation platform can be assembled.
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Zn2+-Binding to the Voltage-Gated Proton Channel Hv1/VSOP

TL;DR: The voltage-gated proton channel (Hv1/VSOP) is inhibited by Zn2+, of which the binding site is located in the extracellular region and the most probable coordination structure was proposed as a tetrahedral geometry with ligands of carboxylate and imidazole groups in addition to a water molecule
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Statistical and quantum-chemical analysis of the effect of heme porphyrin distortion in heme proteins: Differences between oxidoreductases and oxygen carrier proteins

TL;DR: In this article, the effects of heme distortions on the chemical properties in two protein classes, oxidoreductases and oxygen carrier proteins, were studied by a combination of statistics and quantum chemistry.
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Enhanced exchange algorithm without detailed balance condition for replica exchange method.

TL;DR: An enhanced exchange algorithm for REM not meeting the detailed balance condition (DBC), but satisfying the balance condition in all considered exchanges between two replicas is proposed and is expected to reduce the required number of replicas.