By Ladislaus Marton
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Integrates a large diversity of physics, algorithms, and sensing strategies for improvement of clever platforms together with frequency area processing, adaptive filtering, wavenumber structures and sign processing purposes, detailing adaptive least-squared errors modeling.
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Moody, M. F. (1967). J . Mol. Biol. 25, 167. Moody, M. F. (1971). Phil. Trans. R. London, Ser. B 261, 181. Ohlendorf, D. , Collins, M. , and Banaszak, L. J. (1975). J . Mol. Biol. 99, 143. Radi, G. (1970). , Sect. A 26, 41. , and von Bassewitz, D. B. (1973). J. Ultrastruct. Res. 45, 356. Scherzer, 0. (1965). In “Quantitative Electron Microscopy” (G. F. Bahr and E. M. ), p. 59. Williams & Wilkins, Baltimore, Maryland. 42 G. DONELLI AND L. PAOLETTI Shamir, J. (1972). I n “Optical Transforms” (H. ), p.
N 1v2 cos(2w) = 1 If the residual astigmatism is completely correct we shall find C , = 0 and the points of the v w plane whose coordinates satisfy Eq. (70) will be found on circumferences centered on the origin. In the presence of astigmatism, from Eq. (70) it can be verified that there are two perpendicular directions on the v w plane along which the zero values of the CTF have respectively maximum and minimum distances from the origin. It is for this reason that the bandwidth of the frequencies transferred with the same contrast is different according to the direction on the spatial frequency plane.
1970). Lect. Inr. Summer Sch. , Erice, April, 1970. Lipson, H. (1972). ” Academic Press, New York. Markham, R. (1968). Methods Yirol. 4, 503. Marton, L. L. (1965). I n “Quantitative Electron Microscopy” (G. F. Bahr and E. M. ), p. 1. Williams & Wilkins, Baltimore, Maryland. Misell, D. L. (1973). Adu. Electron. Electron Phys. 32, 64. , Katerban, K. , and Thon, F. (1968). , Proc. Eur. Reg. Con& 4th, Rome 1, 125. Moody, M. F. (1967). J . Mol. Biol. 25, 167. Moody, M. F. (1971). Phil. Trans. R. London, Ser.