By Leonard A Levin MD PhD, Siv F. E. Nilsson PhD, James Ver Hoeve MD, Samuel Wu MD, Paul L. Kaufman MD, Albert Alm MD
Drs. Paul L. Kaufman, Albert Alm, Leonard A Levin, Siv F. E. Nilsson, James Ver Hoeve, and Samuel Wu current the eleventh version of the vintage textual content Adler's body structure of the attention, up to date to augment your knowing of ocular functionality. This full-color, basic version captures the most recent molecular, genetic, and biochemical discoveries and gives you remarkable wisdom and perception into the body structure of the attention and its buildings. a brand new association by way of functionality, instead of anatomy, is helping you're making a higher connection among physiological ideas and scientific perform; and greater than 1,000 nice new full-color illustrations support make clear complicated options. it's also possible to entry the full contents on-line at www.expertconsult.com.Deepen your grab of the physiological ideas that underlie visible acuity, colour imaginative and prescient, ocular flow, the extraocular muscle, and masses extra. Glean the most recent wisdom within the box, together with the newest molecular, genetic, and biochemical discoveries. Make an improved connection among body structure and scientific perform by using an better medical emphasis all through, in addition to a brand new association through functionality instead of via anatomy. higher visualize all recommendations through viewing 1,000 transparent, full-color illustrations. entry the full contents on-line at expertconsult.com. the hot and more desirable Adler's makes studying the fundamental technological know-how of the attention attractive and simple
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Additional resources for Adler's Physiology of the Eye: Expert Consult - Online and Print, 11th Edition
Presbyopia. New York: Professional Press, 1987. 117. Stark L, Obrecht G. Presbyopia: recent research and reviews from the Third International symposium. New York: Professional Press, 1987. 118. Sorsby A et al. Emmetropia and its aberrations. MRC Special Rep Serv Rep 293. London: Medical Research Council, 1959. 119. Cook RC, Glasscock RE. Refractive and ocular findings in the newborn. Am J Ophthalmol 1951; 34:1407. 120. Raviola E, Wiesel TN. Animal model for myopia. N Engl J Med 1985; 312:1609. 121.
Invest Ophthalmol Vis Sci 1997; 39:120. 16. Wood ICJ, Mutti DO, Zadnik K. Crystalline lens parameters in infancy. Ophthalmol Physiol Opt 1996; 6:310. 17. Hofstetter HW. Emmetropization - biological process or mathematical artifact? Am J Optom Arch Am Acad Optom 1969; 46:447. 18. Zadnik K, Mutti DO. Development of ametropias. In: Benjamin WJ, ed. Borish’s clinical refraction. Philadelphia: WB Saunders, 1998. 19. Goss DA. Development of the ametropias. In: Benjamin WJ, ed. Borish’s clinical refraction.
00 D, prior to a Lasik treatment 4 months earlier. Presently, the visual acuity is 20/15 in daylight (3mm pupil) and 20/25 in dim light (5 mm pupil). The upper maps include refractive power maps on standard and auto scales. The bottom left shows a profile difference map which demonstrates the patient’s corneal shape compared to ‘normal’ cornea. The bottom right represents a distortion map which displays the optical quality of the cornea. Note that the 20/16 central (3 mm pupil) visual acuity predicted by the distortion map was achieved by the patient.
Adler's Physiology of the Eye: Expert Consult - Online and Print, 11th Edition by Leonard A Levin MD PhD, Siv F. E. Nilsson PhD, James Ver Hoeve MD, Samuel Wu MD, Paul L. Kaufman MD, Albert Alm MD