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Clinical and Experimental Pharmacology and Physiology, ISSN 0305-1870, 09/2008, Volume 35, Issue 9, pp. 1116 - 1120
SUMMARY • Members of the transient receptor potential (TRP) channel superfamily are present in vascular smooth muscle cells and play important roles in the... 
vascular Ca2+ regulation | autoregulation | myogenic tone | transient receptor potential (TRP) channels | cation channels | Autoregulation | Cation channels | Vascular Ca | regulation | Myogenic tone | Transient receptor potential (TRP) channels | CA2+-PERMEABLE CATION CHANNEL | CELLS | ACTIVATION | PHYSIOLOGY | MYOCYTES | RAT | INTRAVASCULAR PRESSURE | DEPOLARIZATION | CA2 | ARTERY SMOOTH-MUSCLE | PHARMACOLOGY & PHARMACY | Vasomotor System - metabolism | Cerebrovascular Circulation - physiology | Muscle, Smooth, Vascular - metabolism | Vascular Diseases - etiology | Humans | Mechanotransduction, Cellular - physiology | Vascular Resistance - physiology | Vasoconstriction - physiology | Animals | Models, Biological | Vasomotor System - physiology | Homeostasis - physiology | Transient Receptor Potential Channels - physiology | Transient Receptor Potential Channels - metabolism | Vasodilation - drug effects | Muscle, Smooth, Vascular - physiology | Eicosanoic Acids - pharmacology | Vasodilation, drug effects | Mechanotransduction, Cellular, physiology | Muscle, Smooth, Vascular, metabolism | Vascular Resistance, physiology | Vascular Diseases, etiology | Vasomotor System, metabolism | Vasomotor System, physiology | Eicosanoic Acids, pharmacology | Transient Receptor Potential Channels, metabolism | Vasoconstriction, physiology | Cerebrovascular Circulation, physiology | Homeostasis, physiology | Muscle, Smooth, Vascular, physiology | Transient Receptor Potential Channels, physiology | Blood flow
Journal Article
Journal of the American College of Cardiology, ISSN 0735-1097, 2009, Volume 54, Issue 25, pp. 2396 - 2406
Objectives The aim of this study was to determine the effects of physical activity on systemic blood pressure (BP) and early markers of atherosclerosis in... 
Cardiovascular | Internal Medicine | atherosclerosis | hypertension | obesity | child | physical activity | CARDIAC & CARDIOVASCULAR SYSTEMS | ENDOTHELIAL DYSFUNCTION | YOUNG ADULTHOOD | VASCULAR DYSFUNCTION | VISCERAL ADIPOSITY | BODY-FAT DISTRIBUTION | EXERCISE | INSULIN-RESISTANCE SYNDROME | COMMON CAROTID-ARTERY | CARDIOVASCULAR RISK-FACTORS | Body Height - physiology | Carotid Artery, Common - diagnostic imaging | Humans | Male | Puberty - physiology | Oxygen Consumption - physiology | Endothelium, Vascular - physiology | Insulin Resistance - physiology | Ultrasonography | Female | Tunica Intima - diagnostic imaging | Body Fat Distribution | Hypertension - therapy | Vasodilation - physiology | Child | Body Mass Index | Physical Fitness - physiology | Atherosclerosis - physiopathology | Obesity - physiopathology | Biomarkers - blood | Hypertension - physiopathology | Atherosclerosis - blood | Cross-Over Studies | Tunica Media - diagnostic imaging | Endothelium, Vascular - diagnostic imaging | Exercise Tolerance - physiology | Obesity - therapy | Cholesterol, HDL - blood | Exercise - physiology | Body Weight - physiology | Regional Blood Flow - physiology | Hypertension | Plasticizers | Health | Analysis | Low density lipoproteins | Atherosclerosis | Insulin resistance | Blood pressure | Triglycerides | Obesity in children | Cholesterol | Puberty | Hospitals | Obesity | Weight control | Physical fitness | Teenagers | Exercise | Children & youth
Journal Article
Journal of Applied Physiology, ISSN 8750-7587, 10/2012, Volume 113, Issue 8, pp. 1201 - 1212
We tested the hypothesis that elevated sympathetic tone is responsible for lower peak vasodilation after single muscle contractions in older adults. Young (n =... 
Aging | α-adrenergic receptors | Muscle contraction | Vasodilation | muscle contraction | SPORT SCIENCES | PHYSIOLOGY | alpha-adrenergic receptors | vasodilation | FOREARM BLOOD-FLOW | HUMANS | METABOLIC-RESPONSE | PRESSURE | SYMPATHETIC-NERVE ACTIVITY | NITRIC-OXIDE | aging | EXERCISE HYPEREMIA | DYNAMIC EXERCISE | SEX-DIFFERENCES | MEDIATED VASODILATATION | Sympathetic Nervous System - drug effects | Humans | Lower Body Negative Pressure - methods | Male | Adrenergic alpha-Antagonists - pharmacology | Hemodynamics - physiology | Heart Rate - drug effects | Vasoconstriction - physiology | Regional Blood Flow - drug effects | Sympathetic Nervous System - physiology | Muscle, Skeletal - drug effects | Forearm - blood supply | Heart Rate - physiology | Adult | Female | Blood Pressure - drug effects | Blood Pressure - physiology | Brachial Artery - drug effects | Forearm - physiology | Vasodilation - physiology | Muscle, Skeletal - blood supply | Infusions, Intra-Arterial - methods | Phentolamine - pharmacology | Muscle, Skeletal - physiology | Vasoconstriction - drug effects | Aging - physiology | Muscle Contraction - drug effects | Muscle Contraction - physiology | Aged | Hemodynamics - drug effects | Vasodilation - drug effects | Regional Blood Flow - physiology | Blood Flow Velocity - physiology | Blood Flow Velocity - drug effects | Brachial Artery - physiology
Journal Article
Cellular and molecular life sciences : CMLS, ISSN 1420-9071, 2011, Volume 69, Issue 2, pp. 247 - 266
Vascular smooth muscle tone is controlled by a balance between the cellular signaling pathways that mediate the generation of force (vasoconstriction) and... 
Biochemistry, general | Calcium sensitivity | PKA | Cyclic AMP | Vascular smooth muscle | Vasorelaxation | PKG | Biomedicine general | Cell Biology | Myosin light chain | Life Sciences | Life Sciences, general | Cyclic GMP | PROTEIN-KINASE-A | SENSITIVE POTASSIUM CHANNELS | SHOCK-RELATED PROTEIN | K-ATP CHANNELS | BIOCHEMISTRY & MOLECULAR BIOLOGY | INTRACELLULAR CA2+ STORES | PORCINE CORONARY-ARTERY | INOSITOL 1,4,5-TRISPHOSPHATE RECEPTOR | CELL BIOLOGY | MYOSIN LIGHT-CHAIN | PARTICULATE GUANYLATE CYCLASES | RABBIT PORTAL-VEIN | Nucleotides, Cyclic - metabolism | Calcium-Transporting ATPases - physiology | Calcium - metabolism | Sarcoplasmic Reticulum - drug effects | Humans | Potassium Channels - physiology | Sarcoplasmic Reticulum - physiology | Myosin-Light-Chain Kinase - antagonists & inhibitors | Myosin-Light-Chain Kinase - physiology | Potassium Channels - metabolism | Myosin-Light-Chain Phosphatase - antagonists & inhibitors | Calcium - physiology | Sodium-Calcium Exchanger - metabolism | Myosin-Light-Chain Phosphatase - metabolism | Vasodilator Agents - metabolism | Myosin-Light-Chain Phosphatase - physiology | Calcium-Transporting ATPases - metabolism | Sarcoplasmic Reticulum - metabolism | Vasodilation - physiology | Muscle, Smooth, Vascular - physiology | Muscle, Smooth, Vascular - drug effects | Nucleotides, Cyclic - pharmacology | Vasodilator Agents - pharmacology | Myosin-Light-Chain Kinase - metabolism | Rats | Sodium-Calcium Exchanger - physiology | Nucleotides, Cyclic - physiology | Animals | Muscle Contraction - drug effects | Muscle Contraction - physiology | Potassium Channels - agonists | Mice | Vasodilation - drug effects | Magneto-electric machines | Vasodilators | Myosin | Muscle proteins | Machinery | Cyclic guanylic acid | Phosphotransferases | Proteins | Blood vessels | Signal transduction | Cellular biology | Kinases | Calcium mobilization | Phosphorylation | Calcium (intracellular) | Vasoconstriction | Smooth muscle | Cell membranes | Muscle contraction | Myosin-light-chain kinase | Vasodilation | Calcium signalling | Cyclic nucleotides | Protein kinase | Light chains | Hyperpolarization
Journal Article