Leader
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WKP|Q57078715
(VIAF cluster)
(Authority/Source Record)
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WKP |
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(WKP)Q57078715
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0000-0002-8509-0927
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orcid
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25958746600
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scopus
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(OCoLC)Q57078715
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100
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Juan Manuel Ramírez-Anguita
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researcher
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en
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375
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1
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iso5218
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400
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Juan Manuel Ramírez-Anguita
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wetenschapper
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nl
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670
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Author's Exploring the Association of Cancer and Depression in Electronic Health Records: Combining Encoded Diagnosis and Mining Free-Text Clinical Notes
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670
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Author's Formation pathways of DMSO
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670
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Author's Formation pathways of DMSO(2) in the addition channel of the OH-initiated DMS oxidation: A theoretical study.
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670
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Author's Formation pathways of DMSO from DMS-OH in the presence of O
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670
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Author's Formation pathways of DMSO from DMS-OH in the presence of O(2) and NO(x): A theoretical study.
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670
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Author's GPCRmd uncovers the dynamics of the 3D-GPCRome
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670
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Author's MEMBPLUGIN: studying membrane complexity in VMD.
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670
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Author's Membrane cholesterol effect on the 5-HT2A receptor: Insights into the lipid-induced modulation of an antipsychotic drug target.
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670
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Author's Molecular tweezers modulate 14-3-3 protein-protein interactions
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670
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Author's Publisher Correction: GPCRmd uncovers the dynamics of the 3D-GPCRome
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670
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Author's Self-assembly of Mutant Huntingtin Exon-1 Fragments into Large Complex Fibrillar Structures Involves Nucleated Branching.
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670
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Author's Simulating G protein-coupled receptors in native-like membranes: from monomers to oligomers
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670
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Author's Stereochemistry rules: a single stereocenter changes the conformation of a cyclic tetrapeptide
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670
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Author's The phenoxyl radical-water complex--a matrix isolation and computational study
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670
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Author's Variational transition-state theory study of the rate constant of the DMS·OH scavenging reaction by O2
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909
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(orcid) 0000000285090927
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1
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909
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(scopus) 25958746600
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1
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919
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simulatinggproteincoupledreceptorsinnativelikemembranesfrommonomerstooligomers
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Simulating G protein-coupled receptors in native-like membranes: from monomers to oligomers
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1
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919
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stereochemistryrulesasinglestereocenterchangestheconformationofacyclictetrapeptide
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Stereochemistry rules: a single stereocenter changes the conformation of a cyclic tetrapeptide
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1
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919
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phenoxylradicalwatercomplexamatrixisolationandcomputationalstudy
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The phenoxyl radical-water complex--a matrix isolation and computational study
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1
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919
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variationaltransitionstatetheorystudyoftherateconstantofthedms5scavengingreactionbyo2
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Variational transition-state theory study of the rate constant of the DMS·OH scavenging reaction by O2
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1
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919
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exploringtheassociationofcanceranddepressioninelectronichealthrecordscombiningencodeddiagnosisandminingfreetextclinicalnotes
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Exploring the Association of Cancer and Depression in Electronic Health Records: Combining Encoded Diagnosis and Mining Free-Text Clinical Notes
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1
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919
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formationpathwaysofdmso
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Formation pathways of DMSO
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1
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919
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formationpathwaysofdmso2intheadditionchannelofthe5initiateddmsoxidationatheoreticalstudy
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Formation pathways of DMSO(2) in the addition channel of the OH-initiated DMS oxidation: A theoretical study.
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formationpathwaysofdmsofromdms5inthepresenceofo
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Formation pathways of DMSO from DMS-OH in the presence of O
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1
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formationpathwaysofdmsofromdms5inthepresenceofo2andno10atheoreticalstudy
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Formation pathways of DMSO from DMS-OH in the presence of O(2) and NO(x): A theoretical study.
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1
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919
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gpcrmduncoversthedynamicsofthe3dgpcrome
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GPCRmd uncovers the dynamics of the 3D-GPCRome
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919
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membpluginstudyingmembranecomplexityinvmd
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MEMBPLUGIN: studying membrane complexity in VMD.
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919
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membranecholesteroleffectonthe5ht2areceptorinsightsintothelipidinducedmodulationofanantipsychoticdrugtarget
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Membrane cholesterol effect on the 5-HT2A receptor: Insights into the lipid-induced modulation of an antipsychotic drug target.
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1
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919
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‡a
moleculartweezersmodulate1433proteinproteininteractions
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Molecular tweezers modulate 14-3-3 protein-protein interactions
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1
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publishercorrectiongpcrmduncoversthedynamicsofthe3dgpcrome
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Publisher Correction: GPCRmd uncovers the dynamics of the 3D-GPCRome
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1
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919
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selfassemblyofmutanthuntingtinexon1fragmentsintolargecomplexfibrillarstructuresinvolvesnucleatedbranching
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Self-assembly of Mutant Huntingtin Exon-1 Fragments into Large Complex Fibrillar Structures Involves Nucleated Branching.
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