Chapter 2 – PHASE CONTRAST AND INTERFERENCE MICROSCOPY IN CYTOLOGY
暂无分享,去创建一个
[1] R. Barer,et al. Refractive Index of Concentrated Protein Solutions , 1954, Nature.
[2] G. Adair,et al. The specific refraction increments of serum-albumin and serum-globulin. , 1930, The Biochemical journal.
[3] T. Caspersson,et al. A scanning interference microscope arrangement. , 1954, Experimental cell research.
[4] A. Engström,et al. A method for the determination of the mass of extremely small biological objects , 1950 .
[5] A. Wilska. A New Method of Light Microscopy , 1953, Nature.
[6] C. R. Austin,et al. The development of the rat spermatid. , 1951, Journal. Royal Microscopical Society.
[7] H. Hopkins. RESEARCH NOTES: A Note on the Theory of Phase-Contrast Images , 1953 .
[8] Experimentelle und theoretische Untersuchungen zur Abbildung nichtabsorbierender Objekte , 1950 .
[9] F. Zernike. Phase contrast, a new method for the microscopic observation of transparent objects , 1942 .
[10] A. Engström,et al. A Comparison between the X-Ray Absorption and Optical Interference Methods for the Mass Determination of Biological Structures , 1953, Nature.
[11] R. Barer,et al. Refractometry of Living Cells , 1952, Nature.
[12] R. Muller. [Improvement of phase-contrast microscopy by the use of media with optimal refractive indices]. , 1956, Mikroskopie.
[13] D J MASON,et al. NUCLEAR DIVISION AS OBSERVED IN LIVE BACTERIA BY A NEW TECHNIQUE , 1956, Journal of bacteriology.
[14] J. Dan. Sperm entrance in echinoderms; observed with the phase contrast microscope. , 1950, The Biological bulletin.
[15] H. G. Davies,et al. An integrator for measuring the dry mass of cells and isolated components. , 1956, Experimental cell research.
[16] S. Moeschlin. Phasenkontrastuntersuchungen in der Hämatologie , 1949 .
[17] G. Adair,et al. The determination of the isoelectric and isoionic points of haemoglobin from measurements of membrane potentials. , 1934, The Biochemical journal.
[18] F. Gurd,et al. Preparation and Properties of Serum and Plasma Proteins. XXV. Composition and Properties of Human Serum β-Lipoprotein1,2,3 , 1950 .
[19] S. H. Armstrong,et al. Preparation and properties of serum and plasma proteins; the refractive properties of the proteins of human plasma and certain purified fractions. , 1947, Journal of the American Chemical Society.
[20] J. Mitchison,et al. The growth of single cells. I. Schizosaccharomyces pombe. , 1957, Experimental cell research.
[21] R. C. Faust. Multiple-beam interference microscopy , 1952, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[22] G. C. Nutting,et al. Molecular Weight of Lactoglobulin, Ovalbumin, Lysozyme and Serum Albumin by Light Scattering2 , 1951 .
[23] R. Pulvertaft. The effect of antibiotics on growing cultures of Bacterium coli. , 1952, The Journal of pathology and bacteriology.
[24] L. Dienes. The Significance of the Large Bodies and the Development of L Type of Colonies in Bacterial Cultures , 1942, Journal of bacteriology.
[25] L. G. Longsworth,et al. The specific refractive increment of some purified proteins. , 1948, Journal of the American Chemical Society.
[26] L. Hewitt. Effect of cultural conditions on bacterial cytology. , 1951, Journal of general microbiology.
[27] R. Barer. Determination of Dry Mass, Thickness, Solid and Water Concentration in Living Cells , 1953, Nature.
[28] K. O. Pedersen. Ultracentrifugal and electrophoretic studies on the milk proteins: The lactoglobulin of Palmer. , 1936, The Biochemical journal.
[29] A. Wilska,et al. Observations with the anoptral microscope. , 1954, Mikroskopie.
[30] G. Svensson. A scanning interference microphotometer. , 1957, Experimental cell research.
[31] G. Adair,et al. THE REFRACTOMETRIC DETERMINATION OF HEMOGLOBIN , 1923 .
[32] J. Dyson,et al. An Interferometer Microscope for the Accurate Measurement of Optical Thickness , 1953, Nature.
[33] A. Ogston,et al. Osmotic pressures and sedimentation velocity of Gastrophilus methaemoglobin. , 1946, Biochemical Journal.
[34] C. R. Austin. The formation, growth, and conjugation of the pronuclei in the rat egg. , 1951, Journal of the Royal Microscopical Society.
[35] R. Hill. Thermal Measurements on Small Transient Systems , 1952, Nature.
[36] G. Lomakka. A recording function transformer and integrator for microspectrographic use. , 1955, Experimental cell research.
[37] H. G. Davies,et al. Interference Microscopy and Mass Determination , 1952, Nature.
[38] A. J. Hale,et al. A COMPARISON OF NUCLEAR DRY WEIGHTS DETERMINED BY CHEMICAL AND BY INTERFEROMETRIC METHODS , 1956, The Journal of biophysical and biochemical cytology.
[39] W. G. Hutchinson,et al. THE FORMATION AND DEVELOPMENT OF LARGE BODIES IN PROTEUS VULGARIS OX-19 I , 1951, Journal of bacteriology.
[40] J. Dyson. An interferometer microscope , 1950, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[41] H. Stempen. DEMONSTRATION OF THE CHROMATINIC BODIES OF ESCHERICHIA COLI AND PROTEUS VULGARIS WITH THE AID OF THE PHASE CONTRAST MICROSCOPE , 1950, Journal of bacteriology.
[42] M. Stefanini,et al. Studies on platelets. X. Morphologic characteristics of megakaryocytes by phase contrast microscopy in normals and in patients with idiopathic thrombocytopenic purpura. , 1953, Blood.
[43] C. E. Clifton,et al. NUCLEAR CHANGES IN LIVING CELLS OF A VARIANT OF BACILLUS ANTHRACIS , 1952, Journal of bacteriology.
[44] R. Blandau,et al. Observations on the formation of the second polar body in the rat ovum , 1951, The Anatomical record.
[45] R. Barer. Interference Microscopy and Mass Determination , 1952, Nature.
[46] C. R. Austin,et al. Phase-contrast microscopy in the study of fertilization and early development of the rat egg. , 1948, Journal. Royal Microscopical Society.
[47] A. D. Gardner. Morphological Effects of Penicillin on Bacteria , 1940, Nature.
[48] Pfeiffer Hh. Process of refraction of cytoplasm during mitosis , 1951 .
[49] E. Klieneberger. The natural occurrence of pleuropneumonia‐like organism in apparent symbiosis with Strrptobacillus moniliformis and other bacteria , 1935 .
[50] G C CROSSMON,et al. Mounting media for phase microscope specimens. , 1949, Stain technology.
[51] E. Klieneberger-nobel. Origin, development and significance of L-forms in bacterial cultures. , 1949, Journal of general microbiology.
[52] E. S. Castle. THE REFRACTIVE INDICES OF WHOLE CELLS. , 1933 .
[53] R. Barer. A vector theory of phase contrast and interference contrast; III. Negative phase contrast. , 1953, Journal. Royal Microscopical Society.
[54] J. Dan. Fertilization in the medusan, Spirocodon saltatrix. , 1950, The Biological bulletin.
[55] W. G. Hutchinson,et al. The formation and development of large bodies in Proteus vulgaris OX-19. II. Comparative cytology of bacilli and large bodies. , 1951, Journal of Bacteriology.
[56] R C MELLORS,et al. Quantitative cytology and cytopathology. I. Measurement of the thickness, the volume, the hydrous mass, and the anhydrous mass of living cells by interference microscopy , 1953, Cancer.
[57] F. H. Smith. Two Half-shade Devices for Optical Polarizing Instruments , 1954, Nature.
[58] R. Pulvertaft. The L form of bacteria in relation to antibiotics. , 1953, The Journal of pathology and bacteriology.
[59] J. Carlson,et al. Protoplasmic viscosity changes in different regions of the grasshopper neuroblast during mitosis. , 1946, The Biological bulletin.
[60] L. Hewitt. Cell structure of Corynebacterium diphtheriae. , 1951, Journal of general microbiology.