scholarly article | Q13442814 |
P8978 | DBLP publication ID | journals/biomedsem/ZhangTJNSCL14 |
P6179 | Dimensions Publication ID | 1006129289 |
P356 | DOI | 10.1186/2041-1480-5-33 |
P932 | PMC publication ID | 4137727 |
P698 | PubMed publication ID | 25170419 |
P5875 | ResearchGate publication ID | 259181022 |
P50 | author | Christopher G. Chute | Q5112376 |
Guoqian Jiang | Q58893503 | ||
P2093 | author name string | Cui Tao | |
Guoqian Jiang | |||
Yuji Zhang | |||
Hongfang Liu | |||
Jian Su | |||
Asha A Nair | |||
P2860 | cites work | Gene-disease network analysis reveals functional modules in mendelian, complex and environmental diseases | Q21135363 |
A human protein-protein interaction network: a resource for annotating the proteome | Q24324450 | ||
DrugBank 3.0: a comprehensive resource for 'omics' research on drugs | Q24612505 | ||
The human disease network | Q24678240 | ||
Aggregation of topological motifs in the Escherichia coli transcriptional regulatory network | Q24799473 | ||
Network biology: understanding the cell's functional organization | Q27861027 | ||
Network-based elucidation of human disease similarities reveals common functional modules enriched for pluripotent drug targets | Q28472755 | ||
DEGAS: de novo discovery of dysregulated pathways in human diseases | Q28475850 | ||
Human disease-drug network based on genomic expression profiles | Q28475892 | ||
Network motifs: simple building blocks of complex networks | Q29547340 | ||
STRING v9.1: protein-protein interaction networks, with increased coverage and integration | Q29614691 | ||
Network motifs: theory and experimental approaches | Q29615325 | ||
Network motif-based identification of transcription factor-target gene relationships by integrating multi-source biological data | Q30000991 | ||
Superfamilies of evolved and designed networks. | Q30339061 | ||
Prevention of high-dose chemotherapy-induced cardiotoxicity in high-risk patients by angiotensin-converting enzyme inhibition | Q33263478 | ||
Disease candidate gene identification and prioritization using protein interaction networks | Q33412922 | ||
Reverse engineering module networks by PSO-RNN hybrid modeling | Q33481221 | ||
Reconstruction of gene regulatory modules in cancer cell cycle by multi-source data integration | Q33565567 | ||
Network systems biology for drug discovery | Q33592795 | ||
Drug repositioning through incomplete bi-cliques in an integrated drug–target–disease network | Q34271192 | ||
Exploiting drug-disease relationships for computational drug repositioning | Q35109885 | ||
SemMedDB: a PubMed-scale repository of biomedical semantic predications | Q36432186 | ||
Protein networks in disease | Q37125547 | ||
Skin problems in chronic kidney disease | Q37384692 | ||
Network motifs in integrated cellular networks of transcription-regulation and protein-protein interaction | Q37645904 | ||
Human Protein Reference Database and Human Proteinpedia as resources for phosphoproteome analysis. | Q37967156 | ||
Computational approaches to disease-gene prediction: rationale, classification and successes. | Q37973492 | ||
Building blocks of biological networks: a review on major network motif discovery algorithms | Q38055832 | ||
Walking the interactome for prioritization of candidate disease genes | Q39140568 | ||
Network motif-based identification of breast cancer susceptibility genes | Q44579851 | ||
FANMOD: a tool for fast network motif detection | Q48602055 | ||
Pathological changes in olfactory neurons in patients with Alzheimer's disease | Q53186690 | ||
[Acute kidney failure during psoriasis therapy with fumaric acid derivatives] | Q68833351 | ||
Evolutionary conservation of motif constituents in the yeast protein interaction network | Q73939709 | ||
P921 | main subject | MEDLINE | Q1540899 |
P304 | page(s) | 33 | |
P577 | publication date | 2014-08-06 | |
P1433 | published in | Journal of Biomedical Semantics | Q6294854 |
P1476 | title | Network-based analysis reveals distinct association patterns in a semantic MEDLINE-based drug-disease-gene network | |
P478 | volume | 5 |
Q28818655 | A physarum-inspired prize-collecting steiner tree approach to identify subnetworks for drug repositioning |
Q26746941 | Computational approaches in target identification and drug discovery |
Q64075306 | Discovering associations between problem list and practice setting |
Q58791495 | EAPB: entropy-aware path-based metric for ontology quality |
Q64124319 | Predicting drug-disease associations and their therapeutic function based on the drug-disease association bipartite network |
Search more.