Showing 81 - 100 results of 13,606 for search '(( ic cases increased ) OR ((( ((c large) OR (i large)) decrease ) OR ( c larger decrease ))))', query time: 1.72s Refine Results
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    Decreased CNPase levels in the SG/RC in <i>Large</i><sup><i>myd/myd</i></sup> <i>mice</i>. by Shigefumi Morioka (8893511)

    Published 2020
    “…<p>Lysates were obtained from the spiral ganglion (SG)/Rosenthal’s canal (RC) of the P5-7 control and <i>Large</i><sup><i>myd/myd</i></sup> mice. CNPase immunoblotting showed decreased levels of CNPase in the <i>Large</i><sup><i>myd/myd</i></sup> mice. …”
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    Temporal trends in large carnivore attacks on humans in different regions of the world. by Giulia Bombieri (8613945)

    Published 2023
    “…In countries with (<b>D</b>) large forest coverage, the number of attacks in the last several years has decreased. …”
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    Capturing the Transient Microstructure of a Physically Assembled Gel Subjected to Temperature and Large Deformation by Rosa Maria Badani Prado (11501833)

    Published 2021
    “…Here, we report the real-time change in the structure of physically assembled triblock copolymer gels that consist of 10 and 20 wt % of poly­(styrene)–poly­(isoprene)–poly­(styrene) [PS–PI–PS] triblock copolymer in mineral oil (i) during the gelation process with decreasing temperature, (ii) subjected to large oscillatory deformation, and (iii) during the stress-relaxation process after the application of a step strain. …”
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    Capturing the Transient Microstructure of a Physically Assembled Gel Subjected to Temperature and Large Deformation by Rosa Maria Badani Prado (11501833)

    Published 2021
    “…Here, we report the real-time change in the structure of physically assembled triblock copolymer gels that consist of 10 and 20 wt % of poly­(styrene)–poly­(isoprene)–poly­(styrene) [PS–PI–PS] triblock copolymer in mineral oil (i) during the gelation process with decreasing temperature, (ii) subjected to large oscillatory deformation, and (iii) during the stress-relaxation process after the application of a step strain. …”
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