By D. Rao Sanadi, Dr. Lester Packer
Booklet by way of Sanadi, D. Rao
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Extra resources for Current topics in bioenergetics Vol. 5
The modulus of the Fourier trans form is plotted so that this theoretical curve can be conveniently compared to the square root of the corrected intensity curve. X-RAY DIFFRACTION STUDIES ON MEMBRANES 29 simple ratio. Also, the assignment of phases is not necessarily straight forward, for the occurrence of a zero does not always imply a phase change. Phases for lecithin have been assigned assuming that a phase change does occur, although the actual choice was also supported by other considerations (Levine and Wilkins, 1971).
0 δ Έ a> TD "5. 08 o Reciprocal Space Coordinate X in A"1 F I G . 9. Diffracted amplitude or Fourier transform (modulus) of a symmetrical lipid bilayer. T h e lipid bilayer parameters are similar to those derived for the lipid bilayer part of the nerve membrane in the myelin sheath. The modulus of the Fourier trans form is plotted so that this theoretical curve can be conveniently compared to the square root of the corrected intensity curve. X-RAY DIFFRACTION STUDIES ON MEMBRANES 29 simple ratio.
R. W O R T H I N G T O N the two kinds of nerve myelins have the same mode of formation, they are derived from different cells, namely, the Schwann cell and the neuroglial cell. Differences in the low-angle X-ray diffraction patterns recorded from the two kinds of nerve are also evident. Peripheral nerves have been frequently studied and the structure analysis is more advanced, whereas only a few X-ray studies have been made on central nervous system nerves. Until 1966, only two orders had been recorded (Finean, 1960) but additional orders h ~ 12 have now been recorded from central nervous system nerves by Blaurock and Worthington (1969).