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Biophysical Journal|February 1, 1970
X-ray diffraction of myelin membrane. I. Optimal conditions for obtaining unmodified small angle diffraction data from frog sciatic nerveC K Akers, D F ParsonsBiophysical 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 ParsonsBiophysical Journal|October 1, 1972
Reply to "myelin membrane structure as revealed by x-ray diffraction" by David HarkerC K Akers, D F ParsonsLancet (London, England)|November 4, 1989
Telecommunication discussion groups for health services and medical researchD F ParsonsCell Biophysics|December 1, 1988
Electron microscopy, electron diffraction, and element analysis of wet biological specimensD F ParsonsAnnals of the New York Academy of Sciences|January 1, 1986
The usefulness of the high voltage electron microscope in biomedical ultrastructure analysisD F ParsonsScience (New York, N.Y.)|November 1, 1974
Structure of wet specimens in electron microscopy. Improved environmental chambers make it possible to examine wet specimens easilyD F ParsonsTumour Biology : the Journal of the International Society for Oncodevelopmental Biology and Medicine|January 1, 1993
Tumor cell interactions with stromal elastin and type I collagen: the consequences of specific adhesion and proteolysisD F ParsonsBiochimica Et Biophysica Acta|October 17, 1977
Small-angle X-ray scattering from mitochondriaC A Mannella, D F ParsonsCell Biophysics|October 1, 1988
Resolution as a function of accelerating voltage in electron microscopy of semithick biological specimensR W Cole, D F ParsonsPageof 6