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PUBMED FOR HANDHELDS

Journal Abstract Search


159 related items for PubMed ID: 19443745

  • 1.
    ; . PubMed ID:
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  • 2. Artificial gravity maintains skeletal muscle protein synthesis during 21 days of simulated microgravity.
    Symons TB, Sheffield-Moore M, Chinkes DL, Ferrando AA, Paddon-Jones D.
    J Appl Physiol (1985); 2009 Jul; 107(1):34-8. PubMed ID: 19390002
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  • 4. Artificial gravity as a countermeasure to microgravity: a pilot study examining the effects on knee extensor and plantar flexor muscle groups.
    Caiozzo VJ, Haddad F, Lee S, Baker M, Paloski W, Baldwin KM.
    J Appl Physiol (1985); 2009 Jul; 107(1):39-46. PubMed ID: 19286573
    [Abstract] [Full Text] [Related]

  • 5. A review of muscle atrophy in microgravity and during prolonged bed rest.
    Droppert PM.
    J Br Interplanet Soc; 1993 Mar; 46(3):83-6. PubMed ID: 11539498
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  • 8. Skeletal muscle immobilisation-induced atrophy: mechanistic insights from human studies.
    Deane CS, Piasecki M, Atherton PJ.
    Clin Sci (Lond); 2024 Jun 19; 138(12):741-756. PubMed ID: 38895777
    [Abstract] [Full Text] [Related]

  • 9. Effects of Various Muscle Disuse States and Countermeasures on Muscle Molecular Signaling.
    Sharlo K, Tyganov SA, Tomilovskaya E, Popov DV, Saveko AA, Shenkman BS.
    Int J Mol Sci; 2021 Dec 31; 23(1):. PubMed ID: 35008893
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  • 10. Muscle apoptotic response to denervation, disuse, and aging.
    Siu PM.
    Med Sci Sports Exerc; 2009 Oct 31; 41(10):1876-86. PubMed ID: 19727026
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  • 11. [Inactivity and immobilization].
    Preisinger E.
    Acta Med Austriaca; 1993 Oct 31; 20(5):119-21. PubMed ID: 8128825
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  • 12. Short radius intermittent centrifugation as a countermeasure to bed-rest and 0-G deconditioning: IMAG pilot study summary and recommendations for research.
    Young LR, Paloski WH.
    J Gravit Physiol; 2007 Jul 31; 14(1):P31-3. PubMed ID: 18372689
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  • 13. Studies on atrophic change of soleus muscle and its countermeasures in suspended rat.
    Zhuang XC, Sun YZ, Cui J, Zhu JM, Jiang C, Xiang QL, Li CS.
    J Gravit Physiol; 1994 May 31; 1(1):P61-3. PubMed ID: 11538765
    [Abstract] [Full Text] [Related]

  • 14. Molecular biomarkers monitoring human skeletal muscle fibres and microvasculature following long-term bed rest with and without countermeasures.
    Salanova M, Schiffl G, Püttmann B, Schoser BG, Blottner D.
    J Anat; 2008 Mar 31; 212(3):306-18. PubMed ID: 18221329
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  • 15. Molecular events underlying skeletal muscle atrophy and the development of effective countermeasures.
    Booth FW, Criswell DS.
    Int J Sports Med; 1997 Oct 31; 18 Suppl 4():S265-9. PubMed ID: 9391829
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  • 16. Not all disuse protocols are equal: new insight into the signalling pathways to muscle atrophy.
    Reggiani C.
    J Physiol; 2015 Dec 15; 593(24):5227-8. PubMed ID: 26728429
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  • 17. Disuse-induced preferential loss of the giant protein titin depresses muscle performance via abnormal sarcomeric organization.
    Udaka J, Ohmori S, Terui T, Ohtsuki I, Ishiwata S, Kurihara S, Fukuda N.
    J Gen Physiol; 2008 Jan 15; 131(1):33-41. PubMed ID: 18166625
    [Abstract] [Full Text] [Related]

  • 18. [Space flight/bedrest immobilization and bone. Space flight and bed rest-mediated muscle atrophy].
    Ikeda C, Abe T, Sakai A, Hirasaka K, Nikawa T.
    Clin Calcium; 2012 Dec 15; 22(12):1813-20. PubMed ID: 23187073
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  • 19. Differential expression of nitric oxide synthases (NOS 1-3) in human skeletal muscle following exercise countermeasure during 12 weeks of bed rest.
    Rudnick J, Püttmann B, Tesch PA, Alkner B, Schoser BG, Salanova M, Kirsch K, Gunga HC, Schiffl G, Lück G, Blottner D.
    FASEB J; 2004 Aug 15; 18(11):1228-30. PubMed ID: 15180967
    [Abstract] [Full Text] [Related]

  • 20. CrossTalk proposal: The dominant mechanism causing disuse muscle atrophy is decreased protein synthesis.
    Phillips SM, McGlory C.
    J Physiol; 2014 Dec 15; 592(24):5341-3. PubMed ID: 25512435
    [No Abstract] [Full Text] [Related]


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