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Applied Optics|February 2, 2010
Possibility of a phase contrast electron microscopeD F Parsons, H M JohnsonBiophysical Journal|February 1, 1970
X-ray diffraction of myelin membrane. II. Determination of the phase angles of the frog sciatic nerve by heavy atom labeling and calculation of the electron density distribution of the membraneC K Akers, D F ParsonsBiochimica Et Biophysica Acta|May 11, 1977
Uncoupled-induced changes in mitochondrial structure detected by small-angle x-ray scatteringC A Mannella, D F ParsonsBiophysical Journal|October 1, 1972
Reply to "myelin membrane structure as revealed by x-ray diffraction" by David HarkerC K Akers, D F ParsonsCell Biophysics|December 1, 1990
The relative merits of direct morphometry of reconstructions of whole cells, and statistical morphometry by stereology of random sections of cellsD F Parsons, M Marko, A LeithTissue & Cell|January 1, 1991
Organelle rearrangement and cell volume changes during squeezing invasion of peritoneal elastic lamina by targeted murine breast carcinoma cellsD F Parsons, M Marko, A LeithTissue & Cell|January 1, 1983
Inflammation with restricted lysosomal proteolysis during early ascites carcinoma invasion of mouse parietal peritoneum. A medium and high-voltage electron microscopic and cytochemical studyD F Parsons, M Marko, K J WansorProceedings of the National Academy of Sciences of the United States of America|December 1, 1974
Electron diffraction of wet phospholipid bilayersS W Hui, D F Parsons, M CowdenTissue & Cell|January 1, 1985
Shape changes and polarization of cells migrating through tissue. A high-voltage electron microscope and computer graphics study of serial thick sectionsD F Parsons, M Marko, M Radermacher, et al.Cancer Research|July 1, 1984
Organ-cultured epithelial tissue as an in vitro model for invasion: quantitation and high-voltage electron microscopy of tumor cell attachmentP G Sacks, K J Wansor, D F ParsonsPageof 6