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91篇 您的检索式:作者名="Gibala"
    题名 作者 年代 出处 被引量
1用于可变纤维注塑的新材料显示文摘介绍了可变纤维增强反应注射成型聚氨酯制品的生产工艺特点及制品性能。这种加工技术制造SRIM聚氨酯制品的特点是 ,聚氨酯注入到模具中之前 ,先在混料腔内与直接添入的切碎纤维浸润混合 ,减少了纤维毡垫的加工工序 ,还可以提高制品中纤维的含量。采用这种方法可添加高至 5 0 %的玻璃纤维 ,制品密度从 0 .5g/cm3 至 1.6g/cm3 ,具有较高的弯曲模量。David Gibala Andreas Rothacker 张跃冬 2001聚氨酯工业2001,16,2:3
2Metabolic adaptations to short-term high-intensity interval training: a little pain for a lot of gain? 显示文摘Gibala M J Mcgee S L 2008Exerc Sport Sci Rev2008,36,2:1
3Effect of short-term sprint interval training on human skeletal muscle carbohydrate metabolism during exercise and time trial perfor- mance 显示文摘Burgomaster KA Heigenhauser GJF Gibala MJ 2006JAppl Physiol2006,100,6:1
4Brief intense interval exercise activates AMPK and p38 MAPK signaling and increases the expression of PGC-1alpha in human skeletal muscle显示文摘Gibala MJ Mc Gee SL Garnham AP 2009J Appl Physiol2009,106,3:1
5Room-Temperature Deformation Behavior Of A Directionally Solidified Beta (B2)- (Ni-Fe-Al) Intermetallic Alloy显示文摘Misra A Kim J T Gibala R 1997Metallurgical And Materials Transactions A-Physical Metallurgy And Materials Science1997,28,1:1
6Molecular responses to high-intensity in- terval exercise显示文摘Gibala M 2009Appl Physiol Nutr Metab2009,34,3:1
7Short-term sprint in- terval versus traditional endurance training: similar initial adap- tations in human skeletal muscle and exercise performance 显示文摘Gibala MJ Little JP VanEssen M 2006J Physiol2006,575,3:1
8Optimization of toughness and strength in multiphase intermetallics显示文摘Misra A Gibala R Noebe R D 2001Intermetallics2001,9,:1
9Physiological adaptations to low-volume,high-intensity interval training in health and disease 显示文摘Gibala M J Little JP Macdonald M J 2012J Physiol2012,590,5:1
10Deformation and fracture behavior of a directionally solidified β/γ′ Ni-30 At. pct Al alloy显示文摘A. Misra R. Gibala R. D. Noebe 1999Metallurgical and Materials Transactions A1999,,4:1
11Nutritional strategies to promote postexercise recovery显示文摘BEELEN M BURKE L M GIBALA M J 2010Int J Sport Nutr Exe Metab2010,20,6:1
12Metabolic adaptations to short-term high-intensity interval training: a little pain for a lot of gain? 显示文摘Gibala M J Mcgee S L 2008Exercise &Sport Sciences Reviews2008,36,2:1
13Anaplerotic processes in human skeletal muscle during brief dynamic exercise显示文摘GIBALA M J MACLEAN D A GRAHAM T E 1997Journal of Physiology1997,502,3:1
14Room-temperature deformation behavior of directionally solidified multiphase Ni?Fe?Al alloys显示文摘A. Misra R. Gibala 1997Metallurgical and Materials Transactions A1997,,13:1
15Physiological adaptations to low-volume,high-intensity interval training in health and disease显示文摘GIBALA M J LITTLE J P MACDONALD M J 2012J Physiol2012,590,5:1
16Effect of short-term sprint interval training on human skeletal muscle carbohydrate metabolism during exercise and time-trial performance显示文摘BURGOMASTER KA HEIGENHAUSER GJ GIBALA MJ 2006J Appl Physiol2006,100,6:1
17The pea mitochondrial atp6: RNA editing and similarity of presequences in the Vicieae tribe显示文摘Marta Gibala Bartosz Szczesny Jan Kieleczawa Hanna Janska 2004Current Genetics2004,,4:1
18Physiological adaptations to low volume, high-intensity interval train- ing in health and disease显示文摘Gibala MJ Little JP Macdonald MJ 2012The Journal of physiology2012,590,16:1
19Short-term sprint interval versus traditional endurance training: similar initial adaptations in human skeletal muscle and exercise performance显示文摘GIBALA MJ LITTLE JP VAN ESSEN M 2006J Physiol2006,575,3:1
20Brief intense interval exercise activates AMPK and p38 MAPK signaling and increases the expression of PGC-1α in human skeletal muscle显示文摘GIBALA M J MCGEE S L GARNHAM A P 2009Journal of Applied Physiology2009,106,3:1
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