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BIOINFORMATICS & MOLECULAR DESIGN RES CT

Overview
  • Total Patents
    13
  • GoodIP Patent Rank
    228,209
About

BIOINFORMATICS & MOLECULAR DESIGN RES CT has a total of 13 patent applications. Its first patent ever was published in 2009. It filed its patents most often in Republic of Korea, EPO (European Patent Office) and United States. Its main competitors in its focus markets computer technology, pharmaceuticals and digital networks are DE SHAW RES LLC, PHARMIX CORP and ID BUSINESS SOLUTIONS LTD.

Patent filings in countries

World map showing BIOINFORMATICS & MOLECULAR DESIGN RES CTs patent filings in countries

Patent filings per year

Chart showing BIOINFORMATICS & MOLECULAR DESIGN RES CTs patent filings per year from 1900 to 2020

Top inventors

# Name Total Patents
#1 No Kyoung Tai 13
#2 Nam Ky Youb 8
#3 Oh Won Seok 6
#4 Lee Chang Joon 3
#5 Gang Sin Moon 3
#6 Cho Kwang Hwi 3
#7 Kim Doo Nam 2
#8 Lee Sung Kwang 2
#9 Jung Ji Hoon 2
#10 Shin Jae Min 2

Latest patents

Publication Filing date Title
KR20150145526A The method for manufacturing eco-friendly material by using the silica sands slurge
KR20150075643A The system for manufacturing fertilizer and the method therefor
KR20140041362A Chromen-4-one derivative or pharmaceutically acceptable salts thereof and pharmaceutical composition for stimulating bone-forming
KR20140079520A adsorbent for adsorption treatment of anion in waste water, and method for manufacturing the adsorbent
KR20130107554A Novel n-phenylpyrimidin-4-amine derivatives or pharmaceutically acceptable salts thereof and pharmaceutical composition for prevention or treatment of diseases induced by influenza virus containing the same as an active ingredient
KR20120096691A Method of providing information for predicting metabolic stability
KR20120095133A Method of providing information for predicting caco-2 cell absorption
KR20130020851A Method for predicting the anti-inflammatory effect of drug in the nf-kb signaling pathway using in silico cell system
US2011213558A1 Method for predicting activation energy using an atomic fingerprint descriptor or an atomic descriptor
KR20110051921A Method for activation energy using atomic fingerprint descriptors
KR20100128423A Methods for providing information for an inhibition prediction of herg channel
KR20100123554A Method for detecting rings which consist the closed path of the shortest distance