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Extraocular muscle afferents to the cerebellum of the cat. J. Physiol. 200,713-722. Fukuda, M. (1964). Histological studies on the oculomotor nucleus of the rabbit. Jap. J. Ophthal. 8, 59-67. Ginsborg, B. L. (1960). /. Physiol. 154, 581-598. Gernandt, B. E. (1968). Interactions between extraocular myotatic and ascending vestibular influences. Exp. Neurol. 20, 120-134. Greene, T. and Jampel, R. S. (1966). Muscle spindles in the extraocular muscles of the macaque. /. comp. Neurol. 126, 547-550. Helmholtz, H.
G. ). Chicago, Univ. of Chicago Press. Wiersma, C. A. G. and Yamaguchi,T. (1967). /. Exp. Bio/. 47, 409-431. Winkler, G. (1937). /lrc/7. Anat. Strassbourg. 23, 219-234. Yamanaka, Y. and Bach-y-Rita, P. (1968). Conduction velocities in the abducens nerve correlated with vestibular nystagmus in cats. Exp. Neurol. 20, 143-155. Yellin, H. (1969). Unique intrafusal and extraocular muscle fibers exhibiting dual actomyosin ATPase activity. Exp. Neurol. 25, 153-163. 45 THE STRUCTURE OF THE EXTRAOCULAR MUSCLE FIBERS OF MAMMALS LEE PEACHEY All the muscles of the extraocular group with the exception of the re tractor bulbi (when present) contain a mixture of muscle fibers of different types.
However, the ambition to write a comprehensive review on this subject has eluded me for several years now, and I welcome this chance to address myself to the more restrict ed area defined by the fascinating muscles of the extraocular group. I will confine my review to mammals and to the extrafusal fibers of the six muscles within the orbit, excluding the retractor bulbi. I will start by discussing the histological arrangement of fibers in the muscles. Second, I will consider histochemical and ultrastructural aspects of the various fiber types, which will lead to a classification system including five different types of fibers.