Journal Article RDF
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- Carbonate facies-specific stable isotope data record climate, hydrology, and microbial communities in Great Salt Lake, UT
- CarbonWatchNZ: Regional to National Scale Inverse Modelling of New Zealand’s Carbon Balance
- Carbonyl and thiocarbonyl stabilized 1,4-dihydropyrazines: synthesis and characterization
- CARBONYL COORDINATION IN OS3(CO)10(ALKYNE) SERIES - CRYSTAL AND MOLECULAR-STRUCTURE OF OS3(CO)10(PHC2PH)
- Carbonyl sulfide as an inverse tracer for biogenic organic carbon in gas and aerosol phases
- Carbonyl sulfide in the planetary boundary layer: Coastal and continental influences
- Carbothermal nitridation synthesis of alpha-Si3N4 powder from pyrolysed rice hulls
- Carboxyl-terminal domain III of the delta' subunit of DNA polymerase III holoenzyme binds DnaX and supports cooperative DnaX complex assembly.
- Carboxyl-terminal domain III of the delta' subunit of the DNA polymerase III holoenzyme binds delta.
- Carboxylesterase-2 is a highly sensitive target of the antiobesity agent orlistat with profound implications in the activation of anticancer prodrugs
- CARDIAC ADAPTATIONS TO CHRONIC EXERCISE IN MICE
- Cardiac adaptations to chronic exercise in mice.
- CARDIAC ADAPTATIONS TO ENDURANCE TRAINING IN RATS WITH A CHRONIC MYOCARDIAL-INFARCTION
- CARDIAC ALPHA-MYOSIN HEAVY-CHAINS DIFFER IN THEIR INDUCTION OF MYOCARDITIS - IDENTIFICATION OF PATHOGENIC EPITOPES
- CARDIAC AND METABOLIC-ACTIVITY IN MILD HYPERTENSIVE AND NORMOTENSIVE SUBJECTS
- Cardiac and skeletal muscle adaptations to voluntary wheel running in the mouse
- Cardiac cardiolipin alterations in heart failure: Mechanisms and modulation
- Cardiac contraction velocity has evolved to match heart rate with body size through variation in β-cardiac myosin sequence
- Cardiac Fibroblasts Mediate a Sexually Dimorphic Fibrotic Response to β-Adrenergic Stimulation
- CARDIAC GROWTH IN AORTIC CONSTRICTED C-MYC TRANSGENIC MICE
- Cardiac HDAC6 catalytic activity is induced in response to chronic hypertension
- Cardiac myosin heavy chains lacking the light chain binding domain cause hypertrophic cardiomyopathy in mice
- Cardiac myosin heavy chains lacking the light chain binding domain cause hypertrophic cardiomyopathy in mice.
- CARDIAC MYOSIN HEAVY-CHAIN OVER-EXPRESSED IN NONMUSCLE CELLS FORMS ORDERED STRUCTURES
- CARDIAC REACTIVITY, TEMPORAL CONSISTENCY AND INTERTASK RELIABILITY - A TWIN STUDY
- Cardiac splicing as a diagnostic and therapeutic target
- Cardiac troponin T mutations result in allele-specific phenotypes in a mouse model for hypertrophic cardiomyopathy
- Cardiac vagal modulation of heart rate during prolonged submaximal exercise in animals with healed myocardial infarctions: effects of training
- Cardiac valve cells and their microenvironment-insights from in vitro studies
- CARDIAC-HYPERTROPHY ALTERS EXPRESSION OF NA+,K+-ATPASE SUBUNIT ISOFORMS AT MESSENGER-RNA AND PROTEIN-LEVELS IN RAT MYOCARDIUM