Michael B. Reid
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Michael B. Reidphilosophy Degrees
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Ontology
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Philosophy
Why Is Michael B. Reid Influential?
(Suggest an Edit or Addition)Michael B. Reid's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Nitric oxide in skeletal muscle (1994) (1006)
- TNF‐α acts via p38 MAPK to stimulate expression of the ubiquitin ligase atrogin1/MAFbx in skeletal muscle (2005) (590)
- Reactive oxygen in skeletal muscle. I. Intracellular oxidant kinetics and fatigue in vitro. (1992) (506)
- Skeletal muscle myocytes undergo protein loss and reactive oxygen-mediated NF-κB activation in response to tumor necrosis factor α (1998) (446)
- Effect of hydrogen peroxide and dithiothreitol on contractile function of single skeletal muscle fibres from the mouse (1998) (441)
- Invited Review: redox modulation of skeletal muscle contraction: what we know and what we don't. (2001) (421)
- Endothelial type nitric oxide synthase in skeletal muscle fibers: mitochondrial relationships. (1995) (408)
- Tumor necrosis factor-α and muscle wasting: a cellular perspective (2001) (367)
- Oxidative stress, chronic disease, and muscle wasting (2007) (360)
- Hydrogen peroxide stimulates ubiquitin-conjugating activity and expression of genes for specific E2 and E3 proteins in skeletal muscle myotubes. (2003) (348)
- Reactive oxygen in skeletal muscle. II. Extracellular release of free radicals. (1992) (339)
- Respiratory and limb muscle weakness induced by tumor necrosis factor-alpha: involvement of muscle myofilaments. (2002) (323)
- Free radicals and muscle fatigue: Of ROS, canaries, and the IOC. (2008) (323)
- N-acetylcysteine inhibits muscle fatigue in humans. (1994) (322)
- Reactive oxygen in skeletal muscle. III. Contractility of unfatigued muscle. (1993) (318)
- Understanding the Cellular and Molecular Mechanisms of Physical Activity-Induced Health Benefits. (2015) (312)
- CLOCK and BMAL1 regulate MyoD and are necessary for maintenance of skeletal muscle phenotype and function (2010) (305)
- Role of nitric oxide in skeletal muscle: synthesis, distribution and functional importance. (1998) (284)
- Skeletal muscle myocytes undergo protein loss and reactive oxygen-mediated NF-kappaB activation in response to tumor necrosis factor alpha. (1998) (280)
- TNF‐α increases ubiquitin‐conjugating activity in skeletal muscle by up‐regulating UbcH2/E220k (2003) (232)
- Cardiac-Specific Overexpression of Tumor Necrosis Factor-&agr; Causes Oxidative Stress and Contractile Dysfunction in Mouse Diaphragm (2000) (223)
- Role of reactive oxygen species in contraction‐mediated glucose transport in mouse skeletal muscle (2006) (216)
- Muscle-derived ROS and thiol regulation in muscle fatigue. (2008) (216)
- Nitric oxide, reactive oxygen species, and skeletal muscle contraction. (2001) (213)
- 'Air hunger' from increased PCO2 persists after complete neuromuscular block in humans. (1990) (211)
- 'Air hunger' arising from increased PCO2 in mechanically ventilated quadriplegics. (1989) (210)
- Cytokines and oxidative signalling in skeletal muscle. (2001) (207)
- Detection of reactive oxygen and reactive nitrogen species in skeletal muscle (2001) (173)
- Redox modulation of contractile function in respiratory and limb skeletal muscle (2006) (170)
- Loss of dystrophin causes aberrant mechanotransduction in skeletal muscle fibers (2004) (165)
- Contractile response of skeletal muscle to low peroxide concentrations: myofibrillar calcium sensitivity as a likely target for redox-modulation. (2001) (154)
- Response of the ubiquitin-proteasome pathway to changes in muscle activity. (2005) (153)
- Role of TNF-α signaling in regeneration of cardiotoxin-injured muscle (2005) (142)
- N-acetylcysteine depresses contractile function and inhibits fatigue of diaphragm in vitro. (1994) (142)
- Effects of N‐acetylcysteine on glutathione oxidation and fatigue during handgrip exercise (2005) (141)
- Effect of nitric oxide on single skeletal muscle fibres from the mouse (1998) (136)
- TNF-alpha acts via TNFR1 and muscle-derived oxidants to depress myofibrillar force in murine skeletal muscle. (2008) (134)
- Nitric Oxide Protects the Skeletal Muscle Ca2+Release Channel from Oxidation Induced Activation* (1997) (131)
- TNF-alpha increases ubiquitin-conjugating activity in skeletal muscle by up-regulating UbcH2/E220k. (2003) (127)
- Interleukin-1 stimulates catabolism in C2C12 myotubes. (2009) (126)
- Stretch‐stimulated glucose uptake in skeletal muscle is mediated by reactive oxygen species and p38 MAP‐kinase (2009) (123)
- Atrophic Remodeling of the Heart In Vivo Simultaneously Activates Pathways of Protein Synthesis and Degradation (2003) (122)
- Doxorubicin acts via mitochondrial ROS to stimulate catabolism in C2C12 myotubes. (2012) (120)
- Physical inactivity and muscle weakness in the critically ill (2009) (116)
- Beyond atrophy: redox mechanisms of muscle dysfunction in chronic inflammatory disease (2011) (110)
- TNF induction of atrogin-1/MAFbx mRNA depends on Foxo4 expression but not AKT-Foxo1/3 signaling. (2008) (108)
- Disease-Induced Skeletal Muscle Atrophy and Fatigue. (2016) (108)
- Effect of tumor necrosis factor-α on skeletal muscle metabolism (2001) (107)
- Generation of Reactive Oxygen and Nitrogen Species in Contracting Skeletal Muscle (2002) (107)
- Multiple Classes of Sulfhydryls Modulate the Skeletal Muscle Ca2+ Release Channel* (1997) (106)
- Distinct Signaling Pathways Are Activated in Response to Mechanical Stress Applied Axially and Transversely to Skeletal Muscle Fibers* (2002) (105)
- Reactive Oxygen and Nitric Oxide in Skeletal Muscle (1996) (100)
- Doxorubicin acts through tumor necrosis factor receptor subtype 1 to cause dysfunction of murine skeletal muscle. (2009) (95)
- Calcium-independent phospholipase A2 modulates cytosolic oxidant activity and contractile function in murine skeletal muscle cells. (2006) (95)
- Diaphragm structure and function in health and disease. (1997) (89)
- Bowman-Birk inhibitor concentrate prevents atrophy, weakness, and oxidative stress in soleus muscle of hindlimb-unloaded mice. (2007) (88)
- Oxidant activity in skeletal muscle fibers is influenced by temperature, CO2 level, and muscle-derived nitric oxide. (2004) (85)
- Mitochondria Mediate Tumor Necrosis Factor-α/NF-κB Signaling in Skeletal Muscle Myotubes (1999) (85)
- Acid Sphingomyelinase Deficiency Prevents Diet-induced Hepatic Triacylglycerol Accumulation and Hyperglycemia in Mice* (2009) (84)
- Nitric oxide release and contractile properties of skeletal muscles from mice deficient in type III NOS. (2000) (80)
- Nitric oxide modulates excitation-contraction coupling in the diaphragm. (1998) (79)
- Dimethyl sulfoxide depresses skeletal muscle contractility. (1994) (76)
- Doxorubicin causes diaphragm weakness in murine models of cancer chemotherapy (2011) (75)
- Mechanical properties of respiratory muscles. (2013) (75)
- Nitric oxide effects on shortening velocity and power production in the rat diaphragm. (1996) (74)
- Sphingolipid metabolism, oxidant signaling, and contractile function of skeletal muscle. (2011) (72)
- Fatiguing exercise reduces DNA binding activity of NF-kappaB in skeletal muscle nuclei. (2004) (72)
- Role of TNF-{alpha} signaling in regeneration of cardiotoxin-injured muscle. (2005) (69)
- Exogenous reactive oxygen and nitric oxide alter intracellular oxidant status of skeletal muscle fibres. (1999) (67)
- RyR1 modulation by oxidation and calmodulin. (2000) (66)
- COPD as a muscle disease. (2001) (66)
- Diaphragm atrophy and weakness in cortisone-treated rats. (1989) (65)
- Redox interventions to increase exercise performance (2016) (60)
- Respiratory and limb muscle function in lung allograft recipients. (1999) (58)
- Efficiency, maximal blood flow, and aerobic work capacity of canine diaphragm. (1983) (54)
- Progressive nuclear factor‐κB activation resistant to inhibition by contraction and curcumin in mdx mice (2006) (52)
- Exercise training and skeletal muscle inflammation in chronic heart failure: feeling better about fatigue. (2003) (52)
- Contractile response to low peroxide concentrations: myofibrillar calcium sensitivity as a likely target for redox‐modulation of skeletal muscle function (2000) (50)
- Sphingomyelinase stimulates oxidant signaling to weaken skeletal muscle and promote fatigue. (2010) (49)
- Altered excitation‐contraction coupling with skeletal muscle specific FKBP12 deficiency (2004) (48)
- Effects of dietary curcumin or N-acetylcysteine on NF-κB activity and contractile performance in ambulatory and unloaded murine soleus (2005) (48)
- Allopurinol mitigates muscle contractile dysfunction caused by hindlimb unloading in mice. (2004) (48)
- Locomotion in men has no appreciable mechanical effect on breathing. (1992) (48)
- Reactive Oxygen Species as Agents of Fatigue. (2016) (47)
- N-acetylcysteine in handgrip exercise: plasma thiols and adverse reactions. (2011) (44)
- Muscle unloading-induced metabolic remodeling is associated with acute alterations in PPARdelta and UCP-3 expression. (2008) (40)
- Cyclic GMP is a second messenger by which nitric oxide inhibits diaphragm contraction. (1998) (39)
- Endurance training reduces the rate of diaphragm fatigue in vitro. (1999) (37)
- TNF/TNFR1 signaling mediates doxorubicin-induced diaphragm weakness. (2011) (37)
- Reflex compensation of spontaneous breathing when immersion changes diaphragm length. (1985) (35)
- Neutral sphingomyelinase-3 mediates TNF-stimulated oxidant activity in skeletal muscle (2014) (35)
- Peritonitis causes diaphragm weakness in rats. (1998) (32)
- Shape and tension distribution of the passive rat diaphragm. (2001) (31)
- Fiber types and fiber diameters in canine respiratory muscles. (1987) (31)
- TNF signals via neuronal-type nitric oxide synthase and reactive oxygen species to depress specific force of skeletal muscle. (2013) (30)
- Nitric oxide effects on force-velocity characteristics of the rat diaphragm. (1998) (30)
- Sphingomyelinase depresses force and calcium sensitivity of the contractile apparatus in mouse diaphragm muscle fibers. (2012) (29)
- L-2-Oxothiazolidine-4-carboxylate reverses glutathione oxidation and delays fatigue of skeletal muscle in vitro. (2009) (29)
- Redox mechanisms of muscle dysfunction in inflammatory disease. (2005) (27)
- IFN-γ does not mimic the catabolic effects of TNF-α (2007) (26)
- Relationship between diaphragm length and abdominal dimensions. (1986) (22)
- Part IX • Chapter 22 – Muscle fatigue: mechanisms and regulation (2000) (22)
- Contractile function is unaltered in diaphragm from mice lacking calcium release channel isoform 3. (1999) (21)
- Theophylline does not increase maximal tetanic force or diaphragm endurance in vitro. (1989) (21)
- Development and reversal of fatigue in human tibialis anterior (1993) (21)
- Passive mechanics of upright human chest wall during immersion from hips to neck. (1986) (20)
- Effectiveness of sulfur-containing antioxidants in delaying skeletal muscle fatigue. (2011) (18)
- Breathing by double-lung recipients during exercise: response to expiratory threshold loading. (1998) (17)
- Respiratory muscle activity during repeated airflow interruption. (1988) (16)
- Developmental changes in diaphragm contractile properties. (1993) (14)
- Prion protein expression and functional importance in skeletal muscle. (2011) (13)
- IFN-gamma does not mimic the catabolic effects of TNF-alpha. (2007) (13)
- Isometric contractile properties of diaphragm strips from alcoholic rats. (1987) (13)
- Effects of theophylline on canine diaphragmatic contractility and fatigue. (1991) (11)
- Reflex compensation of voluntary inspiration when immersion changes diaphragm length. (1985) (10)
- Pliometric activity of inspiratory muscles: maximal pressure-flow curves. (1987) (9)
- Capillaries measured in canine diaphragm by two methods (1992) (9)
- MIP/MTMR14 and muscle aging (2010) (8)
- High frequency oscillation of the lungs alone lengthens expiration in dogs. (1985) (8)
- Respiratory changes in diaphragmatic intramuscular pressure. (1990) (7)
- The Physiology of Auto Racing: A Brief Review. (2019) (7)
- Effect of nifedipine on the contractile function of the rat diaphragm in vitro. (1989) (7)
- Effects of metabolic blockade on distribution of blood flow to respiratory muscles. (1988) (7)
- Pulmonary afferent activity during high-frequency ventilation at constant mean lung volume. (1986) (7)
- Skeletal muscle myocytes undergo protein loss and reactive oxygen‐mediated NF‐κB activation in response to tumor necrosis factorα (1998) (6)
- Tidal volume perception in a C1-C2 tetraplegic subject is blocked by airway anesthesia. (1998) (5)
- Relationship between parasternal intercostal length and rib cage displacement in dogs. (1985) (5)
- Oxidative Stress Oxidant activity in skeletal muscle fibers is influenced by temperature , CO 2 level , and muscle-derived nitric oxide (2004) (4)
- Pharmacologic Enhancement of Respiratory Muscle Function (1992) (4)
- Single Muscle Fibre Biomechanics and Biomechatronics - the Challenges, the Pitfalls and the Future. (2019) (4)
- Inhibition by nifedipine of the indirectly induced contractile response of the rat diaphragm. (1989) (3)
- Limits of oxygen transport to the diaphragm. (1979) (3)
- Sphingomyelinase and ceramide increase reactive species and depress maximal skeletal muscle force in vitro (2010) (3)
- Alcohol protects the diaphragm during dietary restriction. (1990) (3)
- Transmural Heterogeneity and Depressed Function in the Mechanical Properties of Ventricular Tissue from Patients with End-Stage Heart Failure (2012) (2)
- Tumor necrosis factor‐α (TNF) effects on mitochondrial metabolism in C2C12 myotubes (2013) (2)
- DOES NITRIC OXIDE INFLUENCE XANTHINE-OXIDASE INDUCED POTENTIATION OF LOW-FREQUENCY TENSION IN THE UNFATIGUED DIAPHRAGM? 158 (1997) (2)
- Redox mechanisms in muscle fatigue (1998) (1)
- Free radical biology in skeletal muscle (2007) (1)
- Both Reactive Oxygen Species and Nitric Oxide Mediate TNF‐induced Diaphragm Dysfunction (2012) (1)
- contraction: what we know and what we don't Invited Review: Redox modulation of skeletal muscle (2015) (1)
- Reactive oxygen species (ROS) stimulate AMPK activity in skeletal muscle. (2006) (1)
- Neutral sphingomyelinase 3 modulates myotube density and is regulated by microRNA‐133 (2013) (1)
- Interferon- (IFN-) does not mimic the catabolic effects of tumor necrosis factor- (TNF-) (2007) (1)
- hindlimb-unloaded mice weakness, and oxidative stress in soleus muscle of Bowman-Birk inhibitor concentrate prevents atrophy, (2015) (1)
- during postnatal development of rat skeletal muscle Effects of microgravity on myogenic factor expressions (2015) (1)
- prolonged cycling exercise time to fatigue and potassium regulation during -acetylcysteine infusion on N Effects of intravenous (2015) (1)
- Diaphragm Contractile Function Differs Among Murine Strains (2012) (1)
- N-acetylcysteine Delays Fatigue of Mouse Diaphragm In Vitro, But Not Soleus or EDL Muscles: 841 (2008) (0)
- Catabolic Response Of C2C12 Myotubes Following Doxorubicin Exposure (2010) (0)
- Faculty Opinions recommendation of Improvement in muscular performance and decrease in tumor necrosis factor level in old age after antioxidant treatment. (2007) (0)
- fibersand troponin isoforms in rat diaphragm muscle Force-calcium relationship depends on myosin heavy (2015) (0)
- The effects of extracellular nitric oxide and reactive oxygen intermediates on intracellular oxidant levels of skeletal muscle (1997) (0)
- Skeletal muscle dysfunction in COPD. A position paper of the American Society and European Respiratory Society. (1999) (0)
- highlighted topics Plasticity in Skeletal, Cardiac, and Smooth Muscle Invited Review: Redox modulation of skeletal muscle contraction: what we know and what we don’t (2001) (0)
- 432 Transmural Heterogeneity and Depressed Function in the Mechanical Properties of Ventricular Tissue from Patients with End-Stage Heart Failure (2012) (0)
- Oxidative Stress and Muscle Disuse Atrophy: 2159 9:30 AM - 9:55 AM (2005) (0)
- Redox modulation of contractile function in skeletal muscle (2007) (0)
- dysfunction The extrinsic caspase pathway modulates endotoxin-induced diaphragm contractile (2015) (0)
- Lipid Redistribution in Crohnʼs Disease: 1192 (2006) (0)
- Acute Inflammation and Intramyocellular Lipids (2006) (0)
- reactive oxygen species in the diaphragm Sepsis increases contraction-related generation of (2015) (0)
- Faculty Opinions recommendation of Oxidative stress stimulates skeletal muscle glucose uptake through a phosphatidylinositol 3-kinase-dependent pathway. (2008) (0)
- IL‐1β Induces Catabolic Signaling in C2C12 Myotubes (2006) (0)
- Faculty Opinions recommendation of Cysteine-rich protein reverses weight loss in lung cancer patients receiving chemotherapy or radiotherapy. (2008) (0)
- Effect of tumor necrosis factor-&agr; on skeletal muscle metabolism (2001) (0)
- Oxidative Stress and Skeletal Muscle Fatigue: 317 (2008) (0)
- TNF- (cid:1) acts via TNFR1 and muscle-derived oxidants to depress myofibrillar force in murine skeletal muscle (2008) (0)
- depress myofibrillar force in murine skeletal muscle acts via TNFR1 and muscle-derived oxidants to (2015) (0)
- TNF promotes muscle catabolism via a p38/PGC‐1/Foxo cascade (2006) (0)
- Contractile function is unaltered in diaphragm from mice lacking calcium release channel isoform 3. (1999) (0)
- ALLOPURINOL INHIBITS CONTRACTILE DYSFUNCTION BUT NOT ATROPHY OF UNLOADED HINDLIMB MUSCLES IN MICE (2003) (0)
- Skeletal Muscle Contractile Function In Mice Lacking The NADPH Oxidase Subunit P47phox (2010) (0)
- Somewhere Between TNF and Cachexia: ROS as a Critical Mediator of Muscle Remodeling in Disease (2009) (0)
- Antioxidants attenuate TNF‐α induced contractile dysfunction: alterations in myofibrillar function (2006) (0)
- Inflammation and muscle dysfunction: Role of redox signaling (2012) (0)
- fatigueROS and thiol regulation in muscle (2015) (0)
- expression and UCP-3 δ associated with acute alterations in PPAR Muscle unloading-induced metabolic remodeling is (2015) (0)
- ENDURANCE TRAINING REDUCES DIAPHRAGM FATIGUE IN VITRO 690 (1996) (0)
- Faculty Opinions recommendation of Endocytosis of prion protein is required for ERK1/2 signaling induced by stress-inducible protein 1. (2008) (0)
- Differential Twitch Kinetics in Engineered Cardiac Tissue Expressing Human Cardiac Myosins (2012) (0)
- cancerof exertional dyspnea in patients with (2015) (0)
- muscular performance Effect of supplementation with a cysteine donor on (2015) (0)
- diaphragm weakness TNF/TNFR1 signaling mediates doxorubicin-induced (2016) (0)
- Doxorubicin stimulates oxidant activity, weakness and fatigue in murine skeletal muscle (2008) (0)
- peroxidation in the diaphragm Peroxynitrite induces contractile dysfunction and lipid (2015) (0)
- Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres—Active and Passive Force Assessments with the Myorobot (2022) (0)
- Passive Loading, a "Stretch" for Exercise-Induced Glucose Transport (2006) (0)
- Doxorubicin stimulates catabolism in C2C12 myotubes (2010) (0)
- Reactive oxygen species and glucose transport during exercise (2007) (0)
- Faculty Opinions recommendation of Attenuation of doxorubicin-induced contractile and mitochondrial dysfunction in mouse heart by cellular glutathione peroxidase. (2007) (0)
- Sphingomyelinase depresses force and calcium sensitivity of skeletal muscle contractile apparatus (2011) (0)
- Redox Implications of Extreme Task Performance: The Case in Driver Athletes (2022) (0)
- Intracellular oxidant production by isolated diaphragm. (1990) (0)
- Muscle, oxidative stress, and aging (2006) (0)
- Inflammatory disease-induced muscle wasting: 105 (2007) (0)
- Thiol-based Antioxidants Have Contrasting Effects On Skeletal Muscle Fatigue In Vitro: 966 (2010) (0)
- TNF induces atrogin‐1 expression via AKT‐independent activation of Foxo4 (2008) (0)
- postnatal skeletal muscle hypertrophy Expression of fibroblast growth factor family during (2015) (0)
- ventilatory and limb muscles Expression of nitric oxide synthase isoforms in normal (2015) (0)
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What Schools Are Affiliated With Michael B. Reid?
Michael B. Reid is affiliated with the following schools: