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| Реферат RUS | Литература | Полный текст |
Егорова А.В., Тонконогий С.В., Бай Л.
Исследование эффективности ультразвуковой биометрии в хирургии возрастной катаракты
1. Бочаров В.Е. Ультразвуковая микрохирургия катаракты (факоэмульсификация): Дис. … канд. мед. наук. – М., 1976. – С. 72-77.
2. Byrne S. Standardized echography. Part I: A-scan examinations procedures // Int. Ophthalmol. Clin. – 1979. – Vol. 19, №4. – P. 267-281.
3. Connors R., Boseman P., Olson R. Accuracy and reproducibility of biometry using partial coherence interferometry // J. Cataract Refract. Surg. – 2002. – Vol. 28, №2. – P. 235-238.
4. Drexler W., Findl O., Menapace R. et al. Partial Coherence interferometry: a novel approach to biometry in cataract surgery // Am. J. Ophthalmol. – 1998. – Vol. 126, №4. – P. 524-534.
5. Fercher A., Hitzenberger C., Drexler W. et al. In vivo optical coherence tomography // Am. J. Ophthalmol. – 1993. – Vol. 116, №1. – P. 113-114.
6. Findl O., Kriechbaum K., Sacu S. et al. Influence of operator experience on the performance of ultrasound biometry compared to optical biometry before cataract surgery // J. Cataract Refract. Surg. – 2003. – Vol. 29, №10. – P. 1950-1955.
7. Haigis W., Lege B., Miller N., Schneider B. Comparison of immersion ultrasound biometry and partial coherence interferometry for intraocular lens calculation according to Haigis // Graefes Arch. Clin. Exp. Ophthalmol. – 2000. – Vol. 238, №9. – P. 765-773.
8. Holladay J.T. International intraocular lens & implant registry // J. Cataract Refract. Surg. – 2002. – Vol. 28, №1. – P. 152-174.
9. Holladay J.T. Standardizing constants for ultrasonic biometry, keratometry, and intraocular lens power calculation // J. Cataract Refract. Surg. – 1997. – Vol. 23, №9. – P. 1356-1370.
10. Holladay J.T., Gills J.P., Leidlein J. et al. Achieving emmetropia in extremely short eyes with two piggyback posterior chamber intraocular lenses // Ophthalmology. – 1996. – Vol. 103, №7. – P. 1118-1123.
11. Mamalis N., Spencer T.S. Complications of foldable intraocular lenses requiring explantation or secondary intervention // J. Cataract Refract. Surg. – 2001. – Vol. 27, №8. – P. 1310-1317.
12. Olsen T. Sources of error in intraocular lens power calculation // J. Cataract Refract. Surg. – 1992. – Vol. 18, №2. – P. 125-129.
13. Olsen T. The accuracy of ultrasonic determination of axial length in pseudophakic eyes // Acta Ophthalmol. – 1990. – Vol. 67, №2. – P. 141-144.
14. Ortega-Usobiaga J., Ruiz-Rizaldos A., Baviera-Sabater J. et al. A new formula to calculate the intraocular lens power in short eyes // Congress of the ESCRS, XX. – Nice, France, 2002. – P. 184.
15. Oshika Т., Imamura A., Amano S. et al. Piggyback foldable intraocular lens implantation in patients with microphthalmos // J. Cataract Refract. Surg. – 2001. – Vol. 27, №6. – P. 841-844.
16. Schmidbauer J.M., Apple D.J., Auffarth G.U. et al. Complication profiles of posterior chamber intraocular lenses IOL. An analysis of 586 foldable and 2077 rigid explanted intraocular lenses // Ophthalmology. – 2001. – Vol. 98, №11. – P. 1029-1035.
2. Byrne S. Standardized echography. Part I: A-scan examinations procedures // Int. Ophthalmol. Clin. – 1979. – Vol. 19, №4. – P. 267-281.
3. Connors R., Boseman P., Olson R. Accuracy and reproducibility of biometry using partial coherence interferometry // J. Cataract Refract. Surg. – 2002. – Vol. 28, №2. – P. 235-238.
4. Drexler W., Findl O., Menapace R. et al. Partial Coherence interferometry: a novel approach to biometry in cataract surgery // Am. J. Ophthalmol. – 1998. – Vol. 126, №4. – P. 524-534.
5. Fercher A., Hitzenberger C., Drexler W. et al. In vivo optical coherence tomography // Am. J. Ophthalmol. – 1993. – Vol. 116, №1. – P. 113-114.
6. Findl O., Kriechbaum K., Sacu S. et al. Influence of operator experience on the performance of ultrasound biometry compared to optical biometry before cataract surgery // J. Cataract Refract. Surg. – 2003. – Vol. 29, №10. – P. 1950-1955.
7. Haigis W., Lege B., Miller N., Schneider B. Comparison of immersion ultrasound biometry and partial coherence interferometry for intraocular lens calculation according to Haigis // Graefes Arch. Clin. Exp. Ophthalmol. – 2000. – Vol. 238, №9. – P. 765-773.
8. Holladay J.T. International intraocular lens & implant registry // J. Cataract Refract. Surg. – 2002. – Vol. 28, №1. – P. 152-174.
9. Holladay J.T. Standardizing constants for ultrasonic biometry, keratometry, and intraocular lens power calculation // J. Cataract Refract. Surg. – 1997. – Vol. 23, №9. – P. 1356-1370.
10. Holladay J.T., Gills J.P., Leidlein J. et al. Achieving emmetropia in extremely short eyes with two piggyback posterior chamber intraocular lenses // Ophthalmology. – 1996. – Vol. 103, №7. – P. 1118-1123.
11. Mamalis N., Spencer T.S. Complications of foldable intraocular lenses requiring explantation or secondary intervention // J. Cataract Refract. Surg. – 2001. – Vol. 27, №8. – P. 1310-1317.
12. Olsen T. Sources of error in intraocular lens power calculation // J. Cataract Refract. Surg. – 1992. – Vol. 18, №2. – P. 125-129.
13. Olsen T. The accuracy of ultrasonic determination of axial length in pseudophakic eyes // Acta Ophthalmol. – 1990. – Vol. 67, №2. – P. 141-144.
14. Ortega-Usobiaga J., Ruiz-Rizaldos A., Baviera-Sabater J. et al. A new formula to calculate the intraocular lens power in short eyes // Congress of the ESCRS, XX. – Nice, France, 2002. – P. 184.
15. Oshika Т., Imamura A., Amano S. et al. Piggyback foldable intraocular lens implantation in patients with microphthalmos // J. Cataract Refract. Surg. – 2001. – Vol. 27, №6. – P. 841-844.
16. Schmidbauer J.M., Apple D.J., Auffarth G.U. et al. Complication profiles of posterior chamber intraocular lenses IOL. An analysis of 586 foldable and 2077 rigid explanted intraocular lenses // Ophthalmology. – 2001. – Vol. 98, №11. – P. 1029-1035.
Страница источника: 81-83
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