Butler, J., Cosmos, E. and Cauwenbergs, P. C (1988). Positional signals: evidence for a possible role in muscle fibre-type patterning of the embryonic avian limb. Development 102, 763-772.[Abstract/Free Full Text]
Buller, A. J., Eccles, J. C. and Eccles, R. M (1960). Differentiation of fast and slow muscles in the cat hindlimb. J. Physiol 150, 399-416.
Couly, G. F., Coltey, P. M. and Le Douarin, N. M (1992). The developmental fate of the cephalic mesoderm in quail- chick chimeras. Development 114, 1-15.[Abstract]
Crow, M. T. and Stockdale, F. E (1986). Myosin expression and specialization among the earliest muscle fibres of the developing avian limb. Dev. Biol 113, 238-254.[Medline]
Dhoot, G. K (1986). selective synthesis and degradation of slow skeletal myosin heavy chains in developing muscle fibres. Muscle Nerve 9, 155-164.[Medline]
Dhoot, G. K., Dransfield, I., Grand, R. J. A. and Perry, S. V (1988). Distribution of isoforms of the myofibrillar proteins in myoid cells of the thymus. J. Muscle Res. Cell Motil 7, 351-360.
Drachman, D. B (1964). Atrophy of skeletal muscle in chick embryos treated with botulinum toxin. Science 145, 719-721.[Abstract/Free Full Text]
Fredette, B. J. and Landmesser, L. T (1991). Relationship of primary and secondary myogenesis to fiber type development in embryonic chick muscle. Dev. Biol 143, 1-18.[Medline]
Hamburger, V. and Hamilton, H. L (1951). A series of normal stages in the development of the chick embryo. J. Morph 88, 49-92.
Hutson, J. M. and Donahoe, P. K (1984). Improved histology for the chick-quail chimera. Stain Technol 59, 105-111.[Medline]
Jacobson, W. and Fell, H. B (1941). The developmental mechanics and potencies of the undifferentiated mesenchyme of the mandible. Q. J. Microsc. Sci 82, 563-591.
Kilby, K. and Dhoot, G. K (1988). Identification and distribution of some developmental isoforms of myosin heavy chains in avian muscle fibres. J. Muscle Res. Cell Motil 9, 516-524.[Medline]
Laing, N. G. and Lamb, A. H (1983). The distribution of muscle fibre types in chick embryo wings transplanted to the pelvic region is normal. J. Embryol. Exp. Morph 78, 67-82.[Medline]
McClearn, D. and Noden, D. M (1988). Ontogeny of architectural complexity in embryonic quail visceral arch muscles. Amer. J. Anat 183, 277-293.[Medline]
Miller, J. B., Crow, M. T. and Stockdale, F. E (1985). Slow and fast myosin heavy chain content defines three types of myotubes in early muscle cell cultures. J. Cell. Biol 101, 1643-1650.[Abstract/Free Full Text]
Miller, J. B. and Stockdale, F. E (1986). Developmental regulation of the multiple myogenic cell lineages of the avian embryo. J. Cell Biol 103, 2197-2208.[Abstract/Free Full Text]
Moody S. A., Quigg, M. S. and Little, C. D (1989). Extracellular matrix components of the peripheral pathway of chick trigeminal axons. J. Comp. Neurol 283, 38-53.[Medline]
Noden, D. M (1983). The embryonic origins of avian cephalic and cervical muscles and associated connective tissues. Amer. J. Anat 168, 257-276.[Medline]
Noden, D. M (1986). Patterning of avian craniofacial muscles. Dev. Biol 116, 347-356.[Medline]
Ordahl, C. P. and Le Douarin, N. M (1992). Two myogenic lineages within the developing somite. Development 114, 339-353.[Abstract]
Ralphs, J. R., Dhoot, G. K. and Tickle, C (1989). Differentiation of myogenic cells in micromass cultures of cells from chick facial primordia. Dev. Biol 131, 189-196.[Medline]
Rubinstein, N. A. and Kelly, A. M (1978). Myogenic and neurogenic contributions to the development of fast and slow twitch muscles in the rat. Dev. Biol 62, 473-485.[Medline]
Streter, F. A., Luff, A. R. and Gergely, J (1976). Effect of cross innervation on physiological parameters and on properties of myosin and sarcoplasmic reticulum of fast and slow muscles of the rabbit. J. Gen. Physiol 66, 811-821.[Abstract/Free Full Text]
Weydert, A.., Barton, P., Harris, A. J., Pinset, C. and Buckingham, M (1987). Developmental pattern of mouse skeletal myosin heavy chain gene transcripts in vivo and in vitro. Cell 49, 121-129.[Medline]