Articoli di riviste sul tema "Skeletal muscle"
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Zhang, Tan, Xin Feng, Bo Feng, Juan Dong, Karen Haas, Barbara M. Nicklas, Osvaldo Delbono e Stephen Kritchevsky. "CARDIAC TROPONIN T MEDIATED AUTOIMMUNE RESPONSE AND ITS ROLE IN SKELETAL MUSCLE AGING". Innovation in Aging 3, Supplement_1 (novembre 2019): S882. http://dx.doi.org/10.1093/geroni/igz038.3231.
Testo completoKholodnyi, R. D. "MODELING THE SKELETAL MUSCLE INJURY IN RATS". International Journal of Veterinary Medicine, n. 3 (18 ottobre 2022): 253–57. http://dx.doi.org/10.52419/issn2072-2419.2022.3.253.
Testo completoAzab, Azab. "Skeletal Muscles: Insight into Embryonic Development, Satellite Cells, Histology, Ultrastructure, Innervation, Contraction and Relaxation, Causes, Pathophysiology, and Treatment of Volumetric Muscle I". Biotechnology and Bioprocessing 2, n. 4 (28 maggio 2021): 01–17. http://dx.doi.org/10.31579/2766-2314/038.
Testo completoHeo, Jun-Won, Su-Zi Yoo, Mi-Hyun No, Dong-Ho Park, Ju-Hee Kang, Tae-Woon Kim, Chang-Ju Kim et al. "Exercise Training Attenuates Obesity-Induced Skeletal Muscle Remodeling and Mitochondria-Mediated Apoptosis in the Skeletal Muscle". International Journal of Environmental Research and Public Health 15, n. 10 (19 ottobre 2018): 2301. http://dx.doi.org/10.3390/ijerph15102301.
Testo completoSandage, Mary J., e Audrey G. Smith. "Muscle Bioenergetic Considerations for Intrinsic Laryngeal Skeletal Muscle Physiology". Journal of Speech, Language, and Hearing Research 60, n. 5 (24 maggio 2017): 1254–63. http://dx.doi.org/10.1044/2016_jslhr-s-16-0192.
Testo completoChen, Wan-Jing, I.-Hsuan Lin, Chien-Wei Lee e Yi-Fan Chen. "Aged Skeletal Muscle Retains the Ability to Remodel Extracellular Matrix for Degradation of Collagen Deposition after Muscle Injury". International Journal of Molecular Sciences 22, n. 4 (20 febbraio 2021): 2123. http://dx.doi.org/10.3390/ijms22042123.
Testo completoLieber, Richard L. "Skeletal Muscle". Medicine & Science in Sports & Exercise 38, Supplement (maggio 2006): 63. http://dx.doi.org/10.1249/00005768-200605001-00585.
Testo completoKoroteyev, Alexis, Alberto Pochettino, Hiroshi Niinami e Larry W. Stephenson. "Skeletal Muscle". AORN Journal 53, n. 4 (aprile 1991): 1005–20. http://dx.doi.org/10.1016/s0001-2092(07)69569-6.
Testo completoIto, Daisuke, Yuji Tokoro, Eiichi Tanaka e Sota Yamamoto. "A Constitutive Model for Skeletal Muscle Taking Account of Anisotropic Damage and Viscoelasticity(2C1 Musculo-Skeletal Biomechanics IV)". Proceedings of the Asian Pacific Conference on Biomechanics : emerging science and technology in biomechanics 2007.3 (2007): S152. http://dx.doi.org/10.1299/jsmeapbio.2007.3.s152.
Testo completoRamamani, A., M. M. Aruldhas e P. Govindarajulu. "Differential response of rat skeletal muscle glycogen metabolism to testosterone and estradiol". Canadian Journal of Physiology and Pharmacology 77, n. 4 (1 aprile 1999): 300–304. http://dx.doi.org/10.1139/y99-016.
Testo completoWu, G. Y., e J. R. Thompson. "Is methionine transaminated in skeletal muscle?" Biochemical Journal 257, n. 1 (1 gennaio 1989): 281–84. http://dx.doi.org/10.1042/bj2570281.
Testo completoShiina, Takahiko, Takeshi Shima, Kazuaki Masuda, Haruko Hirayama, Momoe Iwami, Tadashi Takewaki, Hirofumi Kuramoto e Yasutake Shimizu. "Contractile Properties of Esophageal Striated Muscle: Comparison with Cardiac and Skeletal Muscles in Rats". Journal of Biomedicine and Biotechnology 2010 (2010): 1–7. http://dx.doi.org/10.1155/2010/459789.
Testo completoBilston, Lynne E., Bart Bolsterlee, Antoine Nordez e Shantanu Sinha. "Contemporary image-based methods for measuring passive mechanical properties of skeletal muscles in vivo". Journal of Applied Physiology 126, n. 5 (1 maggio 2019): 1454–64. http://dx.doi.org/10.1152/japplphysiol.00672.2018.
Testo completoBrooks, Susan V. "CURRENT TOPICS FOR TEACHING SKELETAL MUSCLE PHYSIOLOGY". Advances in Physiology Education 27, n. 4 (dicembre 2003): 171–82. http://dx.doi.org/10.1152/advan.2003.27.4.171.
Testo completoHøeg, Louise D., Kim A. Sjøberg, Anne-Marie Lundsgaard, Andreas B. Jordy, Natalie Hiscock, Jørgen F. P. Wojtaszewski, Erik A. Richter e Bente Kiens. "Adiponectin concentration is associated with muscle insulin sensitivity, AMPK phosphorylation, and ceramide content in skeletal muscles of men but not women". Journal of Applied Physiology 114, n. 5 (1 marzo 2013): 592–601. http://dx.doi.org/10.1152/japplphysiol.01046.2012.
Testo completoBarry, DT. "Acoustic Signals from Skeletal Muscle". Physiology 5, n. 1 (1 febbraio 1990): 17–21. http://dx.doi.org/10.1152/physiologyonline.1990.5.1.17.
Testo completoShirakawa, Tomohiko, Aki Miyawaki, Tatsuo Kawamoto e Shoichiro Kokabu. "Natural Compounds Attenuate Denervation-Induced Skeletal Muscle Atrophy". International Journal of Molecular Sciences 22, n. 15 (2 agosto 2021): 8310. http://dx.doi.org/10.3390/ijms22158310.
Testo completoPotthoff, Matthew J., Michael A. Arnold, John McAnally, James A. Richardson, Rhonda Bassel-Duby e Eric N. Olson. "Regulation of Skeletal Muscle Sarcomere Integrity and Postnatal Muscle Function by Mef2c". Molecular and Cellular Biology 27, n. 23 (17 settembre 2007): 8143–51. http://dx.doi.org/10.1128/mcb.01187-07.
Testo completoArdhianto, Peter, Jen-Yung Tsai, Chih-Yang Lin, Ben-Yi Liau, Yih-Kuen Jan, Veit Babak Hamun Akbari e Chi-Wen Lung. "A Review of the Challenges in Deep Learning for Skeletal and Smooth Muscle Ultrasound Images". Applied Sciences 11, n. 9 (28 aprile 2021): 4021. http://dx.doi.org/10.3390/app11094021.
Testo completoHinkle, Richard T., Elizabeth Donnelly, David B. Cody, Russell J. Sheldon e Robert J. Isfort. "Activation of the vasoactive intestinal peptide 2 receptor modulates normal and atrophying skeletal muscle mass and force". Journal of Applied Physiology 98, n. 2 (febbraio 2005): 655–62. http://dx.doi.org/10.1152/japplphysiol.00736.2004.
Testo completoNorheim, Frode, Truls Raastad, Bernd Thiede, Arild C. Rustan, Christian A. Drevon e Fred Haugen. "Proteomic identification of secreted proteins from human skeletal muscle cells and expression in response to strength training". American Journal of Physiology-Endocrinology and Metabolism 301, n. 5 (novembre 2011): E1013—E1021. http://dx.doi.org/10.1152/ajpendo.00326.2011.
Testo completoHerring, B. P., M. H. Nunnally, P. J. Gallagher e J. T. Stull. "Molecular characterization of rat skeletal muscle myosin light chain kinase". American Journal of Physiology-Cell Physiology 256, n. 2 (1 febbraio 1989): C399—C404. http://dx.doi.org/10.1152/ajpcell.1989.256.2.c399.
Testo completoDU, Jian-tong, Wei LI, Jin-yan YANG, Chao-shu TANG, Qi LI e Hong-fang JIN. "Hydrogen sulfide is endogenously generated in rat skeletal muscle and exerts a protective effect against oxidative stress". Chinese Medical Journal 126, n. 5 (5 marzo 2013): 930–36. http://dx.doi.org/10.3760/cma.j.issn.0366-6999.20122485.
Testo completoGao, Jinghui, Elijah Sterling, Rachel Hankin, Aria Sikal e Yao Yao. "Therapeutics Targeting Skeletal Muscle in Amyotrophic Lateral Sclerosis". Biomolecules 14, n. 7 (22 luglio 2024): 878. http://dx.doi.org/10.3390/biom14070878.
Testo completoPistilli, Emidio E., Parco M. Siu e Stephen E. Alway. "Interleukin-15 responses to aging and unloading-induced skeletal muscle atrophy". American Journal of Physiology-Cell Physiology 292, n. 4 (aprile 2007): C1298—C1304. http://dx.doi.org/10.1152/ajpcell.00496.2006.
Testo completoHitachi, Keisuke, Masashi Nakatani e Kunihiro Tsuchida. "Long Non-Coding RNA Myoparr Regulates GDF5 Expression in Denervated Mouse Skeletal Muscle". Non-Coding RNA 5, n. 2 (8 aprile 2019): 33. http://dx.doi.org/10.3390/ncrna5020033.
Testo completoMaas, Huub, e Thomas G. Sandercock. "Force Transmission between Synergistic Skeletal Muscles through Connective Tissue Linkages". Journal of Biomedicine and Biotechnology 2010 (2010): 1–9. http://dx.doi.org/10.1155/2010/575672.
Testo completoChen, Ting, Timothy M. Moore, Mark T. W. Ebbert, Natalie L. McVey, Steven R. Madsen, David M. Hallowell, Alexander M. Harris et al. "Liver kinase B1 inhibits the expression of inflammation-related genes postcontraction in skeletal muscle". Journal of Applied Physiology 120, n. 8 (15 aprile 2016): 876–88. http://dx.doi.org/10.1152/japplphysiol.00727.2015.
Testo completoPedersen, Thomas H., Frank de Paoli e Ole B. Nielsen. "Increased Excitability of Acidified Skeletal Muscle". Journal of General Physiology 125, n. 2 (31 gennaio 2005): 237–46. http://dx.doi.org/10.1085/jgp.200409173.
Testo completoSnyder, G. K., C. Farrelly e J. R. Coelho. "Capillary perfusion in skeletal muscle". American Journal of Physiology-Heart and Circulatory Physiology 262, n. 3 (1 marzo 1992): H828—H832. http://dx.doi.org/10.1152/ajpheart.1992.262.3.h828.
Testo completoEržen, Ida. "PLASTICITY OF SKELETAL MUSCLE STUDIED BY STEREOLOGY". Image Analysis & Stereology 23, n. 3 (3 maggio 2011): 143. http://dx.doi.org/10.5566/ias.v23.p143-152.
Testo completoDao, Tien Tuan, e Marie-Christine Ho Ba Tho. "A Systematic Review of Continuum Modeling of Skeletal Muscles: Current Trends, Limitations, and Recommendations". Applied Bionics and Biomechanics 2018 (6 dicembre 2018): 1–17. http://dx.doi.org/10.1155/2018/7631818.
Testo completoHeidlauf, Thomas, e Oliver Röhrle. "Modeling the Chemoelectromechanical Behavior of Skeletal Muscle Using the Parallel Open-Source Software Library OpenCMISS". Computational and Mathematical Methods in Medicine 2013 (2013): 1–14. http://dx.doi.org/10.1155/2013/517287.
Testo completoFujii, Nobuharu, Marni D. Boppart, Scott D. Dufresne, Patricia F. Crowley, Alison C. Jozsi, Kei Sakamoto, Haiyan Yu et al. "Overexpression or ablation of JNK in skeletal muscle has no effect on glycogen synthase activity". American Journal of Physiology-Cell Physiology 287, n. 1 (luglio 2004): C200—C208. http://dx.doi.org/10.1152/ajpcell.00415.2003.
Testo completoZhou, Daixing, Jeanine A. Ursitti e Robert J. Bloch. "Developmental Expression of Spectrins in Rat Skeletal Muscle". Molecular Biology of the Cell 9, n. 1 (gennaio 1998): 47–61. http://dx.doi.org/10.1091/mbc.9.1.47.
Testo completoHussain, Sabah N. A., e Marco Sandri. "Role of autophagy in COPD skeletal muscle dysfunction". Journal of Applied Physiology 114, n. 9 (1 maggio 2013): 1273–81. http://dx.doi.org/10.1152/japplphysiol.00893.2012.
Testo completoGomez-Cabrera, M. C., G. L. Close, A. Kayani, A. McArdle, J. Viña e M. J. Jackson. "Effect of xanthine oxidase-generated extracellular superoxide on skeletal muscle force generation". American Journal of Physiology-Regulatory, Integrative and Comparative Physiology 298, n. 1 (gennaio 2010): R2—R8. http://dx.doi.org/10.1152/ajpregu.00142.2009.
Testo completoCollins, Asiamah Amponsah, Kun Zou, Zhang Li e Su Ying. "Mechanism and Functions of Identified miRNAs in Poultry Skeletal Muscle Development – A Review". Annals of Animal Science 19, n. 4 (1 ottobre 2019): 887–904. http://dx.doi.org/10.2478/aoas-2019-0049.
Testo completoMinami, Elina, Hans Reinecke e Charles E. Murry. "Skeletal muscle meets cardiac muscle". Journal of the American College of Cardiology 41, n. 7 (aprile 2003): 1084–86. http://dx.doi.org/10.1016/s0735-1097(03)00083-4.
Testo completoCabezas Perez, Ricardo Julián, Marco Fidel Ávila Rodríguez e Doris Haydee Rosero Salazar. "Exogenous Antioxidants in Remyelination and Skeletal Muscle Recovery". Biomedicines 10, n. 10 (13 ottobre 2022): 2557. http://dx.doi.org/10.3390/biomedicines10102557.
Testo completoKohno, Shohei, Yui Yamashita, Tomoki Abe, Katsuya Hirasaka, Motoko Oarada, Ayako Ohno, Shigetada Teshima-Kondo et al. "Unloading stress disturbs muscle regeneration through perturbed recruitment and function of macrophages". Journal of Applied Physiology 112, n. 10 (15 maggio 2012): 1773–82. http://dx.doi.org/10.1152/japplphysiol.00103.2012.
Testo completoMcDonough, Alicia A., Curtis B. Thompson e Jang H. Youn. "Skeletal muscle regulates extracellular potassium". American Journal of Physiology-Renal Physiology 282, n. 6 (1 giugno 2002): F967—F974. http://dx.doi.org/10.1152/ajprenal.00360.2001.
Testo completoEng, Diana, Hsiao-Yen Ma, Michael K. Gross e Chrissa Kioussi. "Gene Networks during Skeletal Myogenesis". ISRN Developmental Biology 2013 (19 settembre 2013): 1–8. http://dx.doi.org/10.1155/2013/348704.
Testo completoSong, Taejeong, James W. McNamara, Weikang Ma, Maicon Landim-Vieira, Kyoung Hwan Lee, Lisa A. Martin, Judith A. Heiny et al. "Fast skeletal myosin-binding protein-C regulates fast skeletal muscle contraction". Proceedings of the National Academy of Sciences 118, n. 17 (22 aprile 2021): e2003596118. http://dx.doi.org/10.1073/pnas.2003596118.
Testo completoPark, Joo Yeon, Sun Mi Park, Tae Sup Lee, Seo Young Kang, Ji-Young Kim, Hai-Jeon Yoon, Bom Sahn Kim e Byung Seok Moon. "Radiopharmaceuticals for Skeletal Muscle PET Imaging". International Journal of Molecular Sciences 25, n. 9 (29 aprile 2024): 4860. http://dx.doi.org/10.3390/ijms25094860.
Testo completoPark, Song-Young, Jayson R. Gifford, Robert H. I. Andtbacka, Joel D. Trinity, John R. Hyngstrom, Ryan S. Garten, Nikolaos A. Diakos et al. "Cardiac, skeletal, and smooth muscle mitochondrial respiration: are all mitochondria created equal?" American Journal of Physiology-Heart and Circulatory Physiology 307, n. 3 (1 agosto 2014): H346—H352. http://dx.doi.org/10.1152/ajpheart.00227.2014.
Testo completoNaruse, Masatoshi, William Fountain, Alex Claiborne, Holmes Finch, Scott Trappe e Todd Trappe. "MUSCLE GROUP SPECIFIC SKELETAL MUSCLE AGING: A FIVE YEAR LONGITUDINAL STUDY IN SEPTUAGENARIANS". Innovation in Aging 6, Supplement_1 (1 novembre 2022): 800. http://dx.doi.org/10.1093/geroni/igac059.2887.
Testo completoMacdonald, W. A., N. Ørtenblad e O. B. Nielsen. "Energy conservation attenuates the loss of skeletal muscle excitability during intense contractions". American Journal of Physiology-Endocrinology and Metabolism 292, n. 3 (marzo 2007): E771—E778. http://dx.doi.org/10.1152/ajpendo.00378.2006.
Testo completoCONTI, Antonio, L. GORZA e Vincenzo SORRENTINO. "Differential distribution of ryanodine receptor type 3 (RyR3) gene product in mammalian skeletal muscles". Biochemical Journal 316, n. 1 (15 maggio 1996): 19–23. http://dx.doi.org/10.1042/bj3160019.
Testo completoRasmussen, Tara, e Haley Tucker. "Loss of SMYD1 Results in Perinatal Lethality via Selective Defects within Myotonic Muscle Descendants". Diseases 7, n. 1 (20 dicembre 2018): 1. http://dx.doi.org/10.3390/diseases7010001.
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