human | Q5 |
P496 | ORCID iD | 0000-0002-2916-0783 |
P108 | employer | Texas A&M University | Q49212 |
University of Florida | Q501758 | ||
West Virginia University School of Medicine | Q7986933 | ||
P735 | given name | Michael | Q4927524 |
Michael | Q4927524 | ||
P106 | occupation | researcher | Q1650915 |
P21 | sex or gender | male | Q6581097 |
Q35217442 | Adrenergic control of vascular resistance varies in muscles composed of different fiber types: influence of the vascular endothelium. |
Q79326160 | Ageing and exercise training alter adrenergic vasomotor responses of rat skeletal muscle arterioles |
Q34489715 | Aging and estrogen status: a possible endothelium-dependent vascular coupling mechanism in bone remodeling. |
Q30494862 | Aging blunts the dynamics of vasodilation in isolated skeletal muscle resistance vessels |
Q45374330 | Altered bone mass, geometry and mechanical properties during the development and progression of type 2 diabetes in the Zucker diabetic fatty rat. |
Q28005524 | Apollo Lunar Astronauts Show Higher Cardiovascular Disease Mortality: Possible Deep Space Radiation Effects on the Vascular Endothelium |
Q79434359 | Arterial adaptations in microgravity contribute to orthostatic tolerance |
Q64963941 | Characterization of mouse ocular response to a 35-day spaceflight mission: Evidence of blood-retinal barrier disruption and ocular adaptations. |
Q45188996 | Chronic exercise improves myocardial inotropic reserve capacity through alpha1-adrenergic and protein kinase C-dependent effects in Senescent rats. |
Q37377612 | Chronic skeletal unloading of the rat femur: mechanisms and functional consequences of vascular remodeling. |
Q36737731 | Differential effects of aging and exercise on intra-abdominal adipose arteriolar function and blood flow regulation |
Q47973749 | Differential effects of emphysema on skeletal muscle fibre atrophy in hamsters. |
Q36812740 | Diminished mesenteric vaso- and venoconstriction and elevated plasma ANP and BNP with simulated microgravity. |
Q34468005 | Effect of hindlimb unweighting on tissue blood flow in the rat |
Q47660438 | Effects of age and exercise training on coronary microvascular smooth muscle phenotype and function |
Q44948374 | Effects of ageing and exercise training on eNOS uncoupling in skeletal muscle resistance arterioles. |
Q36530987 | Effects of aging and exercise training on skeletal muscle blood flow and resistance artery morphology |
Q36366824 | Effects of aging, TNF-α, and exercise training on angiotensin II-induced vasoconstriction of rat skeletal muscle arterioles. |
Q51832842 | Effects of arterial hypotension on microvascular oxygen exchange in contracting skeletal muscle. |
Q40425456 | Effects of hindlimb unloading and ionizing radiation on skeletal muscle resistance artery vasodilation and its relation to cancellous bone in mice. |
Q35437616 | Effects of skeletal unloading on the vasomotor properties of the rat femur principal nutrient artery |
Q33730003 | Effects of spaceflight and ground recovery on mesenteric artery and vein constrictor properties in mice. |
Q46279492 | Effects of spaceflight on the murine mandible: Possible factors mediating skeletal changes in non-weight bearing bones of the head. |
Q34216995 | Exercise training augments regional bone and marrow blood flow during exercise. |
Q60673712 | Exercise training enhances flow-induced vasodilation in skeletal muscle resistance arteries of aged rats: role of PGI2 and nitric oxide |
Q38906962 | Exercise training reverses age-induced diastolic dysfunction and restores coronary microvascular function |
Q35576551 | Exercise training reverses aging-induced impairment of myogenic constriction in skeletal muscle arterioles |
Q34254077 | Fatigability and blood flow in the rat gastrocnemius-plantaris-soleus after hindlimb suspension |
Q58697167 | Impact of Spaceflight and Artificial Gravity on the Mouse Retina: Biochemical and Proteomic Analysis |
Q33664728 | Increased nitric oxide-mediated vasodilation of bone resistance arteries is associated with increased trabecular bone volume after endurance training in rats. |
Q82206106 | Inhibition of active lymph pump by simulated microgravity in rats |
Q68468562 | Is glycogen depletion related to muscular activity? |
Q71645819 | Morphological changes during fiber type transitions in low-frequency-stimulated rat fast-twitch muscle |
Q60673711 | Neuropilin-1 Is Essential for Enhanced VEGF 165 -Mediated Vasodilatation in Collateral-Dependent Coronary Arterioles of Exercise-Trained Pigs |
Q72036462 | Rat aortic vasoreactivity is altered by old age and hindlimb unloading |
Q86709802 | Reply to Zhang |
Q45367488 | Simulated microgravity alters rat mesenteric artery vasoconstrictor dynamics through an intracellular Ca(2+) release mechanism. |
Q90134174 | Spaceflight influences gene expression, photoreceptor integrity, and oxidative stress-related damage in the murine retina |
Q35273967 | Spaceflight on the Bion-M1 biosatellite alters cerebral artery vasomotor and mechanical properties in mice |
Q44426548 | Spaceflight reduces vasoconstrictor responsiveness of skeletal muscle resistance arteries in mice. |
Q36860290 | Spaceflight-induced alterations in cerebral artery vasoconstrictor, mechanical, and structural properties: implications for elevated cerebral perfusion and intracranial pressure |
Q34146941 | Structural remodeling of coronary resistance arteries: effects of age and exercise training |
Q55272783 | The G protein–coupled estrogen receptor agonist, G‐1, attenuates BK channel activation in cerebral arterial smooth muscle cells. |
Q34399999 | The effects of aging on the functional and structural properties of the rat basilar artery. |
Q41873070 | The functional and structural changes in the basilar artery due to overpressure blast injury. |
Q30633470 | Type 2 diabetes alters bone and marrow blood flow and vascular control mechanisms in the ZDF rat. |
Q80925229 | Unraveling the complex web of impaired wound healing with mechanical unloading and physical deconditioning |
Q36673098 | Vascular function in the metabolic syndrome and the effects on skeletal muscle perfusion: lessons from the obese Zucker rat. |
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