Ekes M
Planta. 2014; 94(1):37-46.
PMID: 24496815
DOI: 10.1007/BF00386607.
Nir I, Poljakoff-Mayber A, Klein S
Plant Physiol. 1970; 45(2):173-7.
PMID: 16657298
PMC: 396376.
DOI: 10.1104/pp.45.2.173.
Frederiks W, Vreeling-Sindelarova H
Histochem J. 2002; 33(6):345-53.
PMID: 11758811
DOI: 10.1023/a:1012427224822.
Van den Munckhof R
Histochem J. 1996; 28(6):401-29.
PMID: 8863047
DOI: 10.1007/BF02331433.
Beard M, NOVIKOFF A
J Cell Biol. 1969; 42(2):501-18.
PMID: 5792337
PMC: 2107674.
DOI: 10.1083/jcb.42.2.501.
The use of ferricyanide for the light and electron microscopic demonstration of succinic dehydrogenase activity.
Kerpel-Fronius S, Hajos F
Histochemie. 1968; 14(4):343-51.
PMID: 5741851
DOI: 10.1007/BF00304258.
The intramitochondrial localization of succinate-yellow tetrazolium reductase with the electron microscope.
Castelletto de Fanchiotti , Jones G, Bradbury S
Histochemie. 1971; 27(1):28-35.
PMID: 5565034
DOI: 10.1007/BF00263365.
The ultrastructural distribution of succinic dehydrogenase activity in the supraoptico-neurohypophyseal system of the rat.
Hajos F, Priymak E
Histochemie. 1970; 24(2):120-6.
PMID: 5481257
DOI: 10.1007/BF00277603.
Histochemistry of lactic dehydrogenase in heart and pectoralis muscles of rat.
Baba N, Sharma H
J Cell Biol. 1971; 51(3):621-35.
PMID: 5128351
PMC: 2108042.
DOI: 10.1083/jcb.51.3.621.
[Formazan stability and reoxidation in enbedding media under the effects of the electron microscopy preparative technic].
WOHLRAB F, Fuchs U
Histochemie. 1967; 11(2):171-9.
PMID: 4881163
DOI: 10.1007/BF00571723.
[Problems of the electron microscopic demonstration of succinic dehydrogenase with the osmiophilic tetrazolium salt TC-NBT].
Egger G
Histochemie. 1972; 30(1):60-72.
PMID: 4560579
DOI: 10.1007/BF00303936.
Cytochrome oxidase activity of mitochondria in sensory nerve endings of mouse palatal rugae.
HANKER J, DIXON A, Moore 3rd H
J Anat. 1973; 116(Pt 1):93-102.
PMID: 4360099
PMC: 1271552.
Electron histochemical observation of succinic dehydrogenase activity in various parts of neurons.
Hajos F, Kerpel-Fronius S
Exp Brain Res. 1969; 8(1):66-78.
PMID: 4309222
DOI: 10.1007/BF00234926.
Nondroplet ultrastructural demonstration of cytochrome oxidase activity with a polymerizing osmiophilic reagent, diaminobenzidine (DAB).
Seligman A, Karnovsky M, Wasserkrug H, HANKER J
J Cell Biol. 1968; 38(1):1-14.
PMID: 4300067
PMC: 2107464.
DOI: 10.1083/jcb.38.1.1.
Ultrastructural demonstration of cytochrome oxidase activity by the Nadi reaction with osmiophilic reagents.
Seligman A, PLAPINGER R, Wasserkrug H, Deb C, HANKER J
J Cell Biol. 1967; 34(3):787-800.
PMID: 4293007
PMC: 2107183.
DOI: 10.1083/jcb.34.3.787.
Histochemical fibre types in the mammalian diaphragm.
Davies A, Gunn H
J Anat. 1972; 112(Pt 1):41-60.
PMID: 4263892
PMC: 1271342.
Mitochondrial antibodies in primary biliary cirrhosis. I. Localization of the antigen to mitochondrial membranes.
Berg P, Doniach D, Roitt I
J Exp Med. 1967; 126(2):277-90.
PMID: 4165742
PMC: 2138313.
DOI: 10.1084/jem.126.2.277.
An x-ray microanalytical study of the ferricyanide reaction for the electron cytochemical demonstration of succinate dehydrogenase activity in isolated mitochondria.
Weavers B
Histochem J. 1974; 6(2):121-31.
PMID: 4133343
DOI: 10.1007/BF01011801.
Studies in succinate dehydrogenase histochemistry.
Andersen H, Hoyer P
Histochemie. 1973; 35(2):173-88.
PMID: 4122733
DOI: 10.1007/BF00306043.
[Methods for the electron microscopic demonstration of succinate-tetrazolium salt reductase with TC].
Egger G
Histochemie. 1973; 33(4):3568-9.
PMID: 4119245
DOI: 10.1007/BF00306262.