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Formation of contractile structures in embryonic muscles


Formation of contractile structures in embryonic muscles



Development Growth and Differentiation: 382




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Related references

Optical studies on contractile structures in frog muscles. analysis of components at rest and of responses related to contractile events. Journal of Molecular and Cellular Cardiology 08(9): 697-712, 1976

Early Emergence of contractile competence in mantle and funnel muscles in embryonic squid. American Zoologist 41(6): 1515, 2001

Contractile protein gene expression in primary myotubes of embryonic mouse hindlimb muscles. Development 117(4): 1435-1444, 1993

Differentiation of contractile structures in the flight muscles of a dipteran after direct thermal injury. Biologie Cellulaire (Ivry Sur Seine) 33(2): 175-180, 1978

Magnesium and inhibition of actin-myosin interaction in isolated contractile structures of fibrillar insect muscles. Pflugers Archiv: European Journal of Physiology 311(3): 256-264, 1969

Proportional activation of ATPase-activity and contraction tension caused by calcium ions in isolated contractile structures of various kinds of muscles. Pflugers Arch Gesamte Physiol Menschen Tiere 296(1): 70-90, 1967

Contractile properties of smooth muscles of bronchial tubes at formation of hyperreactance of airways. Rossiiskii Fiziologicheskii Zhurnal Imeni I.M. Sechenova 91(7): 832-843, 2005

Analysis of contractile ring formation in vitro role for protein kinase c in embryonic cytokinesis. American Zoologist 30(4): 43A, 1990

In vitro analysis of contractile ring formation protein kinase c controls embryonic cytokinesis. Journal of Cell Biology 111(5 Part 2): 424A, 1990

Embryonic formation of non-metameric spinal muscles in cattle. Doklady Akademii Nauk SSSR 101(5): 973-976, 1955

Contractile and non-contractile tissue volume and distribution in ankle muscles of young and older adults. Journal of Biomechanics 44(12): 2299-2306, 2011

Differences in cellular contractile protein contents among porcine smooth muscles: evidence for variation in the contractile system. Journal of General Physiology 72(3): 369-380, 1978

Developmental rate and the formation of embryonic structures. Experimental Biology and Medicine 16(6): 93-95, 1919

The formation of cortical structures in the cell cycle of Paramecium trichium. 2. Morphogenetic movement of the contractile vacuole pores. Journal Sci Hiroshima Univ (Zool): 242: 165-181, 1973

The mechanism of the formation of regulating structures in the embryonic skeleton. CR Acad Sci URSS: Vol. 3: 634-640, 1934