Analyze Diet
Journal of anatomy1972; 112(Pt 1); 41-60;

Histochemical fibre types in the mammalian diaphragm.

Abstract: No abstract available
Publication Date: 1972-05-01 PubMed ID: 4263892PubMed Central: PMC1271342
The Equine Research Bank provides access to a large database of publicly available scientific literature. Inclusion in the Research Bank does not imply endorsement of study methods or findings by Mad Barn.
  • Journal Article

Cite This Article

APA
Davies AS, Gunn HM. (1972). Histochemical fibre types in the mammalian diaphragm. J Anat, 112(Pt 1), 41-60.

Publication

ISSN: 0021-8782
NlmUniqueID: 0137162
Country: England
Language: English
Volume: 112
Issue: Pt 1
Pages: 41-60

Researcher Affiliations

Davies, A S
    Gunn, H M

      MeSH Terms

      • Adenosine Triphosphatases / analysis
      • Animals
      • Cats
      • Cattle
      • Diaphragm / analysis
      • Diaphragm / anatomy & histology
      • Diaphragm / enzymology
      • Dogs
      • Female
      • Glucosyltransferases / analysis
      • Histocytochemistry
      • Horses
      • Lipids / analysis
      • Male
      • Mice
      • Muscle Contraction
      • Muscles / anatomy & histology
      • Muscles / enzymology
      • Muscles / metabolism
      • Myofibrils / metabolism
      • Myosins
      • Rabbits
      • Rats
      • Sheep
      • Succinate Dehydrogenase / analysis
      • Swine

      References

      This article includes 59 references
      1. Gauthier GF, Padykula HA. Cytological studies of fiber types in skeletal muscle. A comparative study of the mammalian diaphragm.. J Cell Biol 1966 Feb;28(2):333-54.
        pubmed: 5950272doi: 10.1083/jcb.28.2.333google scholar: lookup
      2. Holloszy JO. Biochemical adaptations in muscle. Effects of exercise on mitochondrial oxygen uptake and respiratory enzyme activity in skeletal muscle.. J Biol Chem 1967 May 10;242(9):2278-82.
        pubmed: 4290225
      3. Nishiyama A. Histochemical studies on the red, white and intermediate muscle fibers of some skeletal muscles. 3. Histochemical demonstration of oxidative enzymes, phosphorylase and glycogen in respiratory muscle fibers.. Acta Med Okayama (1952) 1966 Jun;20(3):137-46.
        pubmed: 4225847
      4. Bocek RM, Beatty CH. Glycogen synthetase and phosphorylase in red and white muscle of rat and rhesus monkey.. J Histochem Cytochem 1966 Jul;14(7):549-59.
        pubmed: 4961187doi: 10.1177/14.7.549google scholar: lookup
      5. Bubenzer HJ. [The thin and the thick muscular fibers of the rat diaphragm].. Z Zellforsch Mikrosk Anat 1966;69:520-50.
        pubmed: 5973111
      6. Seligman AM, Ueno H, Morizono Y, Wasserkrug HL, Katzoff L, Hanker JS. Electron microscopic demonstration of dehydrogenase activity with a new osmiophilic ditetrazolium salt (TC-NBT).. J Histochem Cytochem 1967 Jan;15(1):1-13.
        pubmed: 4166298doi: 10.1177/15.1.1google scholar: lookup
      7. Bárány M. ATPase activity of myosin correlated with speed of muscle shortening.. J Gen Physiol 1967 Jul;50(6):Suppl:197-218.
        pubmed: 4227924doi: 10.1085/jgp.50.6.197google scholar: lookup
      8. Karpati G, Engel WK. Neuronal trophic function. A new aspect demonstrated histochemically in developing soleus muscle.. Arch Neurol 1967 Nov;17(5):542-5.
      9. Hall-Craggs EC. The contraction times and enzyme activity of two rabbit laryngeal muscles.. J Anat 1968 Jan;102(Pt 2):241-55.
        pubmed: 5643841
      10. Burke RE. Firing patterns of gastrocnemius motor units in the decerebrate cat.. J Physiol 1968 Jun;196(3):631-54.
        pubmed: 5664235doi: 10.1113/jphysiol.1968.sp008527google scholar: lookup
      11. Karpati G, Engel WK. Correlative histochemical study of skeletal muscle after suprasegmental denervation, peripheral nerve section, and skeletal fixation.. Neurology 1968 Jul;18(7):681-92.
        pubmed: 4233750doi: 10.1212/wnl.18.7.681google scholar: lookup
      12. Nail BS, Sterling GM, Widdicombe JG. Some properties of single phrenic motoneurones.. J Physiol 1969 Feb;200(2):137P-138P.
        pubmed: 5764402
      13. Kugelberg E, Edström L. Differential histochemical effects of muscle contractions on phosphorylase and glycogen in various types of fibres: relation to fatigue.. J Neurol Neurosurg Psychiatry 1968 Oct;31(5):415-23.
        pubmed: 5709825doi: 10.1136/jnnp.31.5.415google scholar: lookup
      14. Kraus H, Kirsten R, Wolff JR. [Effect of swimming and running exercise on the cellular function and structure of muscle].. Pflugers Arch 1969;308(1):57-79.
        pubmed: 5813997doi: 10.1007/BF00588034google scholar: lookup
      15. Edgerton VR, Gerchman L, Carrow R. Histochemical changes in rat skeletal muscle after exercise.. Exp Neurol 1969 May;24(1):110-23.
        pubmed: 4238996doi: 10.1016/0014-4886(69)90009-0google scholar: lookup
      16. Gollnick PD, King DW. Effect of exercise and training on mitochondria of rat skeletal muscle.. Am J Physiol 1969 Jun;216(6):1502-9.
      17. Guth L, Samaha FJ. Qualitative differences between actomyosin ATPase of slow and fast mammalian muscle.. Exp Neurol 1969 Sep;25(1):138-52.
        pubmed: 4241609doi: 10.1016/0014-4886(69)90077-6google scholar: lookup
      18. Pieper KS, Feustel G, Hübner JH. [Localization of succinate dehydrogenase in the red (thin) skeletal muscle fibers of the white rat].. Acta Histochem 1969;33(1):171-8.
        pubmed: 4187666
      19. Cardinet GH 3rd, Wallace LJ, Fedde MR, Guffy MM, Bardens JW. Developmental myopathy in the canine with type II muscle fiber hypotrophy.. Arch Neurol 1969 Dec;21(6):620-30.
      20. Engel WK. Selective and nonselective susceptibility of muscle fiber types. A new approach to human neuromuscular diseases.. Arch Neurol 1970 Feb;22(2):97-117.
      21. Prewitt MA, Salafsky B. Enzymic and histochemical changes in fast and slow muscles after cross innervation.. Am J Physiol 1970 Jan;218(1):69-74.
      22. Edgerton VR, Simpson DR. The intermediate muscle fiber of rats and guinea pigs.. J Histochem Cytochem 1969 Dec;17(12):828-38.
        pubmed: 4312624doi: 10.1177/17.12.828google scholar: lookup
      23. Samaha FJ, Guth L, Albers RW. Differences between slow and fast muscle myosin. Adenosine triphosphatase activity and release of associated proteins by p-chloromercuriphenylsulfonate.. J Biol Chem 1970 Jan 25;245(2):219-24.
        pubmed: 4243949
      24. Moody WG, Cassens RG. Histochemical differentiation of red and white muscle fibers.. J Anim Sci 1968 Jul;27(4):961-8.
        pubmed: 4314343doi: 10.2527/jas1968.274961xgoogle scholar: lookup
      25. Barnard RJ, Edgerton VR, Peter JB. Effect of exercise on skeletal muscle. I. Biochemical and histochemical properties.. J Appl Physiol 1970 Jun;28(6):762-6.
        pubmed: 4192599doi: 10.1152/jappl.1970.28.6.762google scholar: lookup
      26. Gillespie CA, Simpson DR, Edgerton VR. High glycogen content of red as opposed to white skeletal muscle fibers of guinea pigs.. J Histochem Cytochem 1970 Aug;18(8):552-8.
        pubmed: 4317836doi: 10.1177/18.8.552google scholar: lookup
      27. Padykula HA, Gauthier GF. The ultrastructure of the neuromuscular junctions of mammalian red, white, and intermediate skeletal muscle fibers.. J Cell Biol 1970 Jul;46(1):27-41.
        pubmed: 5459010doi: 10.1083/jcb.46.1.27google scholar: lookup
      28. Sant'Ambrogio G, Saibene F. Contractile properties of the diaphragm in some mammals.. Respir Physiol 1970 Oct;10(3):349-57.
        pubmed: 5529197doi: 10.1016/0034-5687(70)90054-xgoogle scholar: lookup
      29. Barnard RJ, Edgerton VR, Furukawa T, Peter JB. Histochemical, biochemical, and contractile properties of red, white, and intermediate fibers.. Am J Physiol 1971 Feb;220(2):410-4.
      30. Jasmin G, Bokdawala F, Desrosiers M. [Identification of the intermediate fiber in skeletal muscle].. Union Med Can 1971 Apr;100(4):706-8.
        pubmed: 5555420
      31. Bárány M, Close RI. The transformation of myosin in cross-innervated rat muscles.. J Physiol 1971 Mar;213(2):455-74.
        pubmed: 4252498doi: 10.1113/jphysiol.1971.sp009393google scholar: lookup
      32. Suchenwirth R, Bundschu HD. [Enzymatic and histologic findings in the skeletal muscles of men. I. Methods and results of normal subjects].. Klin Wochenschr 1970 Sep 15;48(18):1096-101.
        pubmed: 4252868doi: 10.1007/BF01496397google scholar: lookup
      33. Ashmore CR, Doerr L. Comparative aspects of muscle fiber types in different species.. Exp Neurol 1971 Jun;31(3):408-18.
        pubmed: 4254914doi: 10.1016/0014-4886(71)90243-3google scholar: lookup
      34. Burke RE, Levine DN, Zajac FE 3rd. Mammalian motor units: physiological-histochemical correlation in three types in cat gastrocnemius.. Science 1971 Nov 12;174(4010):709-12.
        pubmed: 4107849doi: 10.1126/science.174.4010.709google scholar: lookup
      35. PAUL MH, SPERLING E. Cyclophorase system. XXIII. Correlation of cyclophorase activity and mitochondrial density in striated muscle.. Proc Soc Exp Biol Med 1952 Mar;79(3):352-4.
        pubmed: 14920424doi: 10.3181/00379727-79-19375google scholar: lookup
      36. GUNTHER PG. [Morphological basis of tetanic and tonic function of the diaphragm].. Acta Anat (Basel) 1952;14(1-2):54-64.
        pubmed: 14932628
      37. PADYKULA HA. The localization of succinic dehydrogenase in tissue sections of the rat.. Am J Anat 1952 Jul;91(1):107-45.
        pubmed: 12976352doi: 10.1002/aja.1000910104google scholar: lookup
      38. RUTENBURG AM, WOLMAN M, SELIGMAN AM. Comparative distribution of succinic dehydrogenase in six mammals and modification in the histochemical technic.. J Histochem Cytochem 1953 Jan;1(1):66-81.
        pubmed: 13022959doi: 10.1177/1.1.66google scholar: lookup
      39. VON BERTALANFFY L, ESTWICK RR. Tissue respiration of musculature in relation to body size.. Am J Physiol 1953 Apr;173(1):58-60.
      40. TAKEUCHI T, KURIAKI H. Histochemical detection of phosphorylase in animal tissues.. J Histochem Cytochem 1955 May;3(3):153-60.
        pubmed: 14381604doi: 10.1177/3.3.153google scholar: lookup
      41. PADYKULA HA, HERMAN E. The specificity of the histochemical method for adenosine triphosphatase.. J Histochem Cytochem 1955 May;3(3):170-95.
        pubmed: 14381606doi: 10.1177/3.3.170google scholar: lookup
      42. DE FRANCISCIS G, FUTRELL MF, KUNKEL HO, SPALDING JF. Cytochrome oxidase activity and body weight in rats and in three species of large animals.. Am J Physiol 1956 Aug;186(2):203-6.
      43. HILL AV. The design of muscles.. Br Med Bull 1956 Sep;12(3):165-6.
      44. NACHLAS MM, TSOU KC, DE SOUZA E, CHENG CS, SELIGMAN AM. Cytochemical demonstration of succinic dehydrogenase by the use of a new p-nitrophenyl substituted ditetrazole.. J Histochem Cytochem 1957 Jul;5(4):420-36.
        pubmed: 13463314doi: 10.1177/5.4.420google scholar: lookup
      45. SCARPELLI DG, PEARSE AG. Cytochemical localization of succinic dehydrogenase in mitochondria.. Anat Rec 1958 Oct;132(2):133-51.
        pubmed: 13627495doi: 10.1002/ar.1091320204google scholar: lookup
      46. CROSFILL ML, WIDDICOMBE JG. Physical characteristics of the chest and lungs and the work of breathing in different mammalian species.. J Physiol 1961 Sep;158(1):1-14.
      47. DUBOWITZ V, PEARSE AG. A comparative histochemical study of oxidative enzyme and phosphorylase activity in skeletal muscle.. Z Zellforch Microsk Anat Histochem 1960;2:105-17.
        pubmed: 13724667doi: 10.1007/BF00744575google scholar: lookup
      48. NOVIKOFF AB, SHIN WY, DRUCKER J. Mitochondrial localization of oxidative enzymes: staining results with two tetrazolium salts.. J Biophys Biochem Cytol 1961 Jan;9(1):47-61.
        pubmed: 13729759doi: 10.1083/jcb.9.1.47google scholar: lookup
      49. STEIN JM, PADYKULA HA. Histochemical classification of individual skeletal muscle fibers of the rat.. Am J Anat 1962 Mar;110:103-23.
        pubmed: 13916631doi: 10.1002/aja.1001100203google scholar: lookup
      50. PADYKULA HA, GAUTHIER GF. Cytochemical studies of adenosine triphosphatases in skeletal muscle fibers.. J Cell Biol 1963 Jul;18(1):87-107.
        pubmed: 13941020doi: 10.1083/jcb.18.1.87google scholar: lookup
      51. SUSHEELA AK, GEORGE JC. RESPIRATORY QUOTIENT OF THE RAT DIAPHRAGM.. Can J Biochem Physiol 1963 Nov;41:2221-3.
        pubmed: 14089525
      52. ROMANUL FC. ENZYMES IN MUSCLE. I. HISTOCHEMICAL STUDIES OF ENZYMES IN INDIVIDUAL MUSCLE FIBERS.. Arch Neurol 1964 Oct;11:355-8.
      53. CLOSE R. DYNAMIC PROPERTIES OF FAST AND SLOW SKELETAL MUSCLES OF THE RAT DURING DEVELOPMENT.. J Physiol 1964 Sep;173(1):74-95.
      54. BLANCHAER MC. RESPIRATION OF MITOCHONDRIA OF RED AND WHITE SKELETAL MUSCLE.. Am J Physiol 1964 May;206:1015-20.
      55. OGATA T. AN ELECTRON MICROSCOPIC STUDY ON THE RED, WHITE AND INTERMEDIATE MUSCLE FIBERS OF MOUSE.. Acta Med Okayama (1952) 1964 Oct;18:271-80.
        pubmed: 14311538
      56. WACHSTEIN M, MEISEL E. The distribution of histochemically demonstrable succinic dehydrogenase and of mitochondria in tongue and skeletal muscles.. J Biophys Biochem Cytol 1955 Nov 25;1(6):483-8.
        pubmed: 13278361doi: 10.1083/jcb.1.6.483google scholar: lookup
      57. BULLER AJ, ECCLES JC, ECCLES RM. Differentiation of fast and slow muscles in the cat hind limb.. J Physiol 1960 Feb;150(2):399-416.
      58. DUBOWITZ V, PEARSE AG. Reciprocal relationship of phosphorylase and oxidative enzymes in skeletal muscle.. Nature 1960 Mar 5;185:701-2.
        pubmed: 13818366doi: 10.1038/185701a0google scholar: lookup
      59. SWANSON MA. Studies on the structure of polysaccharides; relation of the iodine color to the structure.. J Biol Chem 1948 Feb;172(2):825-37.
        pubmed: 18901205

      Citations

      This article has been cited 43 times.
      1. Stee K, Van Poucke M, Peelman L, Lowrie M. Paradoxical pseudomyotonia in English Springer and Cocker Spaniels.. J Vet Intern Med 2020 Jan;34(1):253-257.
        doi: 10.1111/jvim.15660pubmed: 31729100google scholar: lookup
      2. Fogarty MJ, Sieck GC. Evolution and Functional Differentiation of the Diaphragm Muscle of Mammals.. Compr Physiol 2019 Mar 14;9(2):715-766.
        doi: 10.1002/cphy.c180012pubmed: 30873594google scholar: lookup
      3. Correa D, Segal SS. Neurovascular proximity in the diaphragm muscle of adult mice.. Microcirculation 2012 May;19(4):306-15.
      4. Kho AT, Kang PB, Kohane IS, Kunkel LM. Transcriptome-scale similarities between mouse and human skeletal muscles with normal and myopathic phenotypes.. BMC Musculoskelet Disord 2006 Mar 7;7:23.
        doi: 10.1186/1471-2474-7-23pubmed: 16522209google scholar: lookup
      5. Inoue K, Yamasaki S, Fushiki T, Kano T, Moritani T, Itoh K, Sugimoto E. Rapid increase in the number of androgen receptors following electrical stimulation of the rat muscle.. Eur J Appl Physiol Occup Physiol 1993;66(2):134-40.
        doi: 10.1007/BF01427054pubmed: 8472695google scholar: lookup
      6. Ibebunjo C. Type, diameter and distribution of fibres in some respiratory and abdominal muscles of the goat.. Vet Res Commun 1993;17(3):171-82.
        doi: 10.1007/BF01839162pubmed: 8284893google scholar: lookup
      7. Ishihara A, Itoh K, Itoh M, Hirofuji C, Hayashi H. Effects of hypophysectomy on soleus muscle fibers and spinal motoneurons in rats.. Acta Neuropathol 1995;89(3):204-8.
        doi: 10.1007/BF00309335pubmed: 7754741google scholar: lookup
      8. Mason R. The retino-recipient zone of the feline pulvinar. should it be considered as part of the lateral geniculate complex? [proceedings].. J Physiol 1980 Jan;298(Suppl):19P.
        pubmed: 7359389
      9. Gottschall J. The diaphragm of the rat and its innervation. Muscle fiber composition; perikarya and axons of efferent and afferent neurons.. Anat Embryol (Berl) 1981;161(4):405-17.
        doi: 10.1007/BF00316051pubmed: 7247037google scholar: lookup
      10. Russell RG, Oteruelo FT. Ultrastructural abnormalities of muscle and neuromuscular junction differentiation in a bovine congenital neuromuscular disease.. Acta Neuropathol 1983;62(1-2):112-20.
        doi: 10.1007/BF00684927pubmed: 6659868google scholar: lookup
      11. Yamashiro S, Harris WH, Stopps TP. Ultrastructural study of developing rabbit diaphragm.. J Anat 1984 Aug;139 ( Pt 1)(Pt 1):67-79.
        pubmed: 6469856
      12. Green HJ, Reichmann H, Pette D. Inter- and intraspecies comparisons of fibre type distribution and of succinate dehydrogenase activity in type I, IIA and IIB fibres of mammalian diaphragms.. Histochemistry 1984;81(1):67-73.
        doi: 10.1007/BF00495403pubmed: 6469723google scholar: lookup
      13. Sivachelvan MN, Davies AS. Antenatal anticipation of postnatal muscle function.. J Anat 1981 Jun;132(Pt 4):545-55.
        pubmed: 6457822
      14. Nicol CJ, Bruce DS. Effect of hyperthyroidism on the contractile and histochemical properties of fast and slow twitch skeletal muscle in the rat.. Pflugers Arch 1981 Apr;390(1):73-9.
        doi: 10.1007/BF00582715pubmed: 6454111google scholar: lookup
      15. Maxwell LC, Faulkner JA, Murphy RA. Relationship among fibre type, myosin ATPase activity and contractile properties.. Histochem J 1982 Nov;14(6):981-97.
        doi: 10.1007/BF01005238pubmed: 6217171google scholar: lookup
      16. Kwong WH, Vrbová G. Effects of low-frequency electrical stimulation on fast and slow muscles of the rat.. Pflugers Arch 1981 Sep;391(3):200-7.
        doi: 10.1007/BF00596171pubmed: 6214764google scholar: lookup
      17. Spurway NC. Objective characterization of cells in terms of microscopical parameters: an example from muscle histochemistry.. Histochem J 1981 Mar;13(2):269-317.
        doi: 10.1007/BF01006884pubmed: 6166594google scholar: lookup
      18. MacNaughtan AF. An ultrastructural and histochemical study of fibre types in the pectoralis thoracica and iliotibialis muscles of the fowl (Gallus domesticus).. J Anat 1974 Sep;118(Pt 1):171-86.
        pubmed: 4279242
      19. Davies AS. Postnatal changes in the histochemical fibre types of procine skeletal muscle.. J Anat 1972 Nov;113(Pt 2):213-40.
        pubmed: 4268592
      20. Korneliussen H, Waerhaug O. Three morphological types of motor nerve terminals in the rat diaphragm, and their possible innervation of different muscle fiber types.. Z Anat Entwicklungsgesch 1973 May 30;140(1):73-84.
        doi: 10.1007/BF00520719pubmed: 4127152google scholar: lookup
      21. Tamaki N. Effect of growth on muscle capillarity and fiber type composition in rat diaphragm.. Eur J Appl Physiol Occup Physiol 1985;54(1):24-9.
        doi: 10.1007/BF00426293pubmed: 4018050google scholar: lookup
      22. Clancy MJ. The formulation of buffers and media for enzyme histochemistry.. Histochem J 1987 Jan;19(1):27-34.
        doi: 10.1007/BF01675290pubmed: 3583813google scholar: lookup
      23. Tamaki N. Effect of endurance training on muscle fiber type composition and capillary supply in rat diaphragm.. Eur J Appl Physiol Occup Physiol 1987;56(2):127-31.
        doi: 10.1007/BF00640634pubmed: 3569216google scholar: lookup
      24. Erxleben C, Kriebel ME. Characteristics of spontaneous miniature and subminiature end-plate currents at the mouse neuromuscular junction.. J Physiol 1988 Jun;400:645-58.
        doi: 10.1113/jphysiol.1988.sp017141pubmed: 3418541google scholar: lookup
      25. Zuurveld JG, Wirtz P, Loermans HM, Veerkamp JH. Postnatal growth and differentiation in three hindlimb muscles of the rat. Characterization with biochemical and enzyme-histochemical methods.. Cell Tissue Res 1985;241(1):183-92.
        doi: 10.1007/BF00214640pubmed: 2992792google scholar: lookup
      26. Delpierre S, Fornaris M, Pelissier JF, Payan MJ. Contractile and histochemical characteristics of the rabbit diaphragm in elastase-induced emphysema.. Lung 1985;163(4):221-32.
        doi: 10.1007/BF02713822pubmed: 2931559google scholar: lookup
      27. Itoh K, Moritani T, Ishida K, Hirofuji C, Taguchi S, Itoh M. Hypoxia-induced fibre type transformation in rat hindlimb muscles. Histochemical and electro-mechanical changes.. Eur J Appl Physiol Occup Physiol 1990;60(5):331-6.
        doi: 10.1007/BF00713495pubmed: 2369905google scholar: lookup
      28. Taguchi S, Ishihara A, Itoh M, Itoh K. Effects of hypobaric hypoxia on the oxidative capacity of the extensor digitorum longus motor units in the rat.. Neurochem Res 1990 Sep;15(9):923-6.
        doi: 10.1007/BF00965913pubmed: 2274103google scholar: lookup
      29. Montgomery A. The time course of thyroid-hormone-induced changes in the isotonic and isometric properties of rat soleus muscle.. Pflugers Arch 1992 Jul;421(4):350-6.
        doi: 10.1007/BF00374223pubmed: 1408659google scholar: lookup
      30. Hirofuji C, Ishihara A, Itoh K, Itoh M, Taguchi S, Takeuchi-Hayashi H. Fibre type composition of the soleus muscle in hypoxia-acclimatised rats.. J Anat 1992 Oct;181 ( Pt 2)(Pt 2):327-33.
        pubmed: 1295870
      31. Gunn HM. The mean fibre area of the semitendinosus, diaphragm and pectoralis transversus muscles in differing types of horse and dog.. J Anat 1978 Oct;127(Pt 2):403-14.
        pubmed: 721700
      32. Moxley RT 3rd, Griggs RC, Goldblatt D, VanGelder V, Herr BE, Thiel R. Decreased insulin sensitivity of forearm muscle in myotonic dystrophy.. J Clin Invest 1978 Oct;62(4):857-67.
        doi: 10.1172/JCI109198pubmed: 701484google scholar: lookup
      33. Hoar PE, Kerrick WG. Rabbit diaphragm: two types of fibres determined by calcium strontium activation and protein content.. J Physiol 1979 Oct;295:345-52.
        doi: 10.1113/jphysiol.1979.sp012972pubmed: 521945google scholar: lookup
      34. Webber CL Jr, Wurster RD, Chung JM. Cat phrenic nucleus architecture as revealed by horseradish peroxidase mapping.. Exp Brain Res 1979 May 2;35(3):395-406.
        doi: 10.1007/BF00236759pubmed: 456448google scholar: lookup
      35. Boyes G, Johnston I. Muscle fibre composition of rat vastus intermedius following immobilisation at different muscle lengths.. Pflugers Arch 1979 Sep;381(3):195-200.
        doi: 10.1007/BF00583249pubmed: 229463google scholar: lookup
      36. Pullen AH. The distribution and relative sizes of three histochemical fibre types in the rat tibialis anterior muscle.. J Anat 1977 Feb;123(Pt 1):1-19.
        pubmed: 190198
      37. Edjtehadi GD, Lewis DM. Histochemical reactions of fibres in a fast twitch muscle of the cat.. J Physiol 1979 Feb;287:439-53.
        doi: 10.1113/jphysiol.1979.sp012669pubmed: 155159google scholar: lookup
      38. Gunn HM. Differences in the histochemical properties of skeletal muscles of different breeds of horses and dogs.. J Anat 1978 Dec;127(Pt 3):615-34.
        pubmed: 154495
      39. Korneliussen H, Dahl HA, Paulsen JE. Histochemical definition of muscle fibre types in the trunk musculature of a teleost fish (cod, Gadus morhua, L.).. Histochemistry 1978 Feb 3;55(1):1-16.
        doi: 10.1007/BF00496689pubmed: 147860google scholar: lookup
      40. Guy PS, Snow DH. The effect of training and detraining on muscle composition in the horse.. J Physiol 1977 Jul;269(1):33-51.
        doi: 10.1113/jphysiol.1977.sp011891pubmed: 142828google scholar: lookup
      41. Pullen AH. The distribution and relative sized of fibre types in the extensor digitorum longus and soleus muscles of the adult rat.. J Anat 1977 Apr;123(Pt 2):467-86.
        pubmed: 140160
      42. Suzuki A. A comparative histochemical study of the masseter muscle of the cattle, sheep, swine, dog, guinea pig, and rat.. Histochemistry 1977 Mar 4;51(2-3):121-31.
        doi: 10.1007/BF00567218pubmed: 139387google scholar: lookup
      43. Leger J, Bouveret P, Schwartz K, Swynghedauw B. A comparative study of skeletal and cardiac tropomyosins: subunits, thiol group content and biological activities.. Pflugers Arch 1976 Apr 6;362(3):271-7.
        doi: 10.1007/BF00581181pubmed: 131298google scholar: lookup