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- Bookedited by Hiroshi Mamitsuka, Charles DeLisi, Minoru Kanehisa.Contents:
Dense module enumeration in biological networks / Koji Tsuda and Elisabeth Georgii
Discovering interacting domains and motifs in protein-protein interactions / Willy Hugo, Wing-Kin Sung, and See-Kiong Ng
Global alignment of protein-protein interaction networks / Misael Mongiovì and Roded Sharan
Structure learning for Bayesian networks as models of biological networks / Antti Larjo, Ilya Shmulevich, and Harri Lähdesmäki
Supervised inference of gene regulatory networks from positive and unlabeled examples / Fantine Mordelet and Jean-Philippe Vert
Mining regulatory network connections by ranking transcription factor target genes using time series expression data / Antti Honkela, Magnus Rattray, and Neil D. Lawrence
Identifying pathways of coordinated gene expression / Timothy Hancock, Ichigaku Takigawa, and Hiroshi Mamitsuka
Mining frequent subtrees in glycan data using the rings glycan miner tool / Kiyoko Flora Aoki-Kinoshita
Chemogenomic approaches to infer drug-target interaction networks / Yoshihiro Yamanishi
Localization prediction and structure-based in silico analysis of bacterial proteins : with emphasis on outer membrane proteins / Kenichiro Imai, Sikander Hayat, Noriyuki Sakiyama, Naoya Fujita, Kentaro Tomii, Arne Elofsson, and Paul Horton
Analysis strategy of protein-protein interaction networks / Zhenjun Hu
Data mining in the MetaCyc family of pathway databases / Peter D. Karp, Suzanne Paley, and Tomer Altman
Gene set/pathway enrichment analysis / Jui-Hung Hung
Construction of functional linkage gene networks by data integration / Bolan Linghu, Eric A. Franzosa, and Yu Xia
Genome-wide association studies / Tun-Hsiang Yang, Mark Kon, and Charles DeLisi
Viral genome analysis and knowledge management / Carla Kuiken, Hyejin Yoon, Werner Abfalterer, Brian Gaschen, Chienchi Lo, and Bette Korber
Molecular network analysis of diseases and drugs in KEGG / Minoru Kanehisa.Digital Access Springer 2012 - ArticleGriffin WS, Woodward DJ, Chanda R.Brain Res Bull. 1978 Jul-Aug;3(4):365-7.DNA synthetic ability of neonatal rat cerebellum was studied in two stressful conditions (cooling and excessive handling) which may be inadvertently imposed during the course of certain experiments. A rate study of the ability of animals handled excessively for 10 min to incorporate 14C-thymidine into the DNA tissue fraction (DNAF) from the acid soluble tissue fraction (ASF) of the cerebellum revealed a decreased DNA synthetic ability which lasted for 1 hr. Animals with very low core temperatures incorporated little 14C into the DNAF from the ASF 2 hr after an IP injection of 14C-thymidine. There was a proportional decrease in the ability to synthesize DNA as core temperature decreased.