2022
Brain-wide electrical dynamics encode individual appetitive social behavior
Mague SD, Talbot A, Blount C, Walder-Christensen KK, Duffney LJ, Adamson E, Bey AL, Ndubuizu N, Thomas GE, Hughes DN, Grossman Y, Hultman R, Sinha S, Fink AM, Gallagher NM, Fisher RL, Jiang YH, Carlson DE, Dzirasa K. Brain-wide electrical dynamics encode individual appetitive social behavior. Neuron 2022, 110: 1728-1741.e7. PMID: 35294900, PMCID: PMC9126093, DOI: 10.1016/j.neuron.2022.02.016.Peer-Reviewed Original Research
2020
Magnetic resonance spectroscopy in the rodent brain: Experts' consensus recommendations
Lanz B, Abaei A, Braissant O, Choi I, Cudalbu C, Henry P, Gruetter R, Kara F, Kantarci K, Lee P, Lutz N, Marjańska M, Mlynárik V, Rasche V, Xin L, Valette J, Behar K, Boumezbeur F, Deelchand D, Dreher W, Klaunberg B, Ligneul C, Lindquist D, Öz G, Tkáč I, Williams S. Magnetic resonance spectroscopy in the rodent brain: Experts' consensus recommendations. NMR In Biomedicine 2020, 34: e4325. PMID: 33565219, PMCID: PMC9429976, DOI: 10.1002/nbm.4325.Peer-Reviewed Original ResearchConsensus recommendationsExpert consensus recommendationsAnimal modelsMetabolite concentrationsClinical MRS studiesBrain metabolismRodent modelsMRS studiesRodent brainTissue changesHealthy animalsDisease modelsAdditional biochemical informationMRSC MRSVivo MRSMetabolic rateMagnetic resonance spectroscopyMetabolic flux measurementsRelated disturbancesSymptomsBrainConverging evidence that short-active photoperiod increases acetylcholine signaling in the hippocampus
Cope ZA, Lavadia ML, Joosen AJM, van de Cappelle CJA, Lara JC, Huval A, Kwiatkowski MK, Picciotto MR, Mineur YS, Dulcis D, Young JW. Converging evidence that short-active photoperiod increases acetylcholine signaling in the hippocampus. Cognitive, Affective, & Behavioral Neuroscience 2020, 20: 1173-1183. PMID: 32794101, PMCID: PMC7718303, DOI: 10.3758/s13415-020-00824-2.Peer-Reviewed Original ResearchConceptsSeasonal affective disorderFST immobilityBipolar disorderReduced dopamine transporter expressionHippocampal cholinergic mechanismsNicotinic receptor blockadeDopamine transporter expressionAcetylcholinesterase inhibitor physostigmineSwim test immobilityCholinergic treatmentReceptor blockadeCholinergic mechanismsAcetylcholine neurotransmissionInhibitor physostigmineViral administrationHippocampal expressionACh levelsTest immobilityAffective disordersDepression symptomsSubsequent deficitsHealthy animalsTransporter expressionAcetylcholinePhysostigmine
2016
PEGylated squalenoyl-gemcitabine nanoparticles for the treatment of glioblastoma
Gaudin A, Song E, King AR, Saucier-Sawyer JK, Bindra R, Desmaële D, Couvreur P, Saltzman WM. PEGylated squalenoyl-gemcitabine nanoparticles for the treatment of glioblastoma. Biomaterials 2016, 105: 136-144. PMID: 27521616, PMCID: PMC5072177, DOI: 10.1016/j.biomaterials.2016.07.037.Peer-Reviewed Original ResearchConceptsConvection-enhanced deliveryGlioblastoma multiformeChemotherapeutic drugsFirst-line treatmentExtracranial solid tumorTumor-bearing animalsSurvival of animalsBrain extracellular spaceLine treatmentTumor bedIntracranial tumorsOrthotopic modelTreatment resistanceSolid tumorsGBM treatmentTherapeutic efficacyNew treatmentsTumor tissueHealthy animalsGBM prognosisFree gemcitabineMR contrast agentsNucleoside analoguesDrugsGemcitabine
1998
Endoscopic Sclerotherapy in Porcine Esophagus Changes Luminal Cross-Sectional Area and Wall Distensibility Dose- and Time-Dependently
Aage J, Petersen K, Djurhuus C, Koff J, Vinter-Jensen L, Gregersen H. Endoscopic Sclerotherapy in Porcine Esophagus Changes Luminal Cross-Sectional Area and Wall Distensibility Dose- and Time-Dependently. Digestive Diseases And Sciences 1998, 43: 521-528. PMID: 9539646, DOI: 10.1023/a:1018802922374.Peer-Reviewed Original Research
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