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  • Allgemeine Naturwissenschaften  (1)
  • Ca2+ release  (1)
  • Annual Reviews  (2)
  • 1
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    Annual Reviews
    Online: 2017 –
    Publisher: Annual Reviews
    Description: What is known? What isn’t known? Knowable Magazine, the digital publication from Annual Reviews, seeks to make that knowledge accessible to all. Knowable Magazine explores the real-world significance of scholarly work through a journalistic lens. We report on the current state of play across a wide variety of fields — from agriculture to high-energy physics; biochemistry to water security; the origins of the universe to psychology. Review articles written by leading scholars from the 50 Annual Reviews journals serve as springboards for stories in Knowable Magazine. Through in-depth features, explainers, articles, essays, interviews, infographics, slideshows, and comics, Knowable Magazine presents insights from research to a broader audience. The content is published under a CC BY-ND copyright license, and the Annual Reviews journal articles featured in Knowable Magazine are free to all for a limited period. Knowable Magazine content is thoroughly researched, reported, edited, copy-edited and fact-checked. Review articles in Annual Review journals provide ideas, but editorial decisions and reporting decisions are made by the magazine staff, guided by what will best inform and intrigue readers.
    Electronic ISSN: 2575-4459
    Topics: Natural Sciences in General
    Keywords: Allgemeine Naturwissenschaften ; Forschung
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  • 2
    Publication Date: 2022-05-25
    Description: First published online as a Review in Advance on October 24, 2005. (Some corrections may occur before final publication online and in print)
    Description: Author Posting. © Annual Reviews, 2005. This article is posted here by permission of Annual Reviews for personal use, not for redistribution. The definitive version was published in Annual Review of Physiology 68 (2006): 22.1-22.29, doi:10.1146/annurev.physiol.68.040104.105418.
    Description: Superfast muscles of vertebrates power sound production. The fastest, the swimbladder muscle of toadfish, generates mechanical power at frequencies in excess of 200 Hz. To operate at these frequencies, the speed of relaxation has had to increase approximately 50-fold. This increase is accomplished by modifications of three kinetic traits: (a) a fast calcium transient due to extremely high concentration of sarcoplasmic reticulum (SR)-Ca2+ pumps and parvalbumin, (b) fast off-rate of Ca2+ from troponin C due to an alteration in troponin, and (c) fast cross-bridge detachment rate constant (g, 50 times faster than that in rabbit fast-twitch muscle) due to an alteration in myosin. Although these three modifications permit swimbladder muscle to generate mechanical work at high frequencies (where locomotor muscles cannot), it comes with a cost: The high g causes a large reduction in attached force-generating cross-bridges, making the swimbladder incapable of powering low-frequency locomotory movements. Hence the locomotory and sound-producing muscles have mutually exclusive designs.
    Description: This work was made possible by support from NIH grants AR38404 and AR46125 as well as the University of Pennsylvania Research Foundation.
    Keywords: Parvalbumin ; Ca2+ release ; Ca2+ uptake ; Cross-bridges ; Adaptation ; Sound production ; Whitman Center
    Repository Name: Woods Hole Open Access Server
    Type: Article
    Format: 567086 bytes
    Format: application/pdf
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