يعرض 1 - 20 نتائج من 57 نتيجة بحث عن '"Òptica adaptativa"', وقت الاستعلام: 0.47s تنقيح النتائج
  1. 1
    Dissertation/ Thesis

    المؤلفون: Baena Gallé, Roberto

    المساهمون: University/Department: Universitat de Barcelona. Departament d'Astronomia i Meteorologia

    Thesis Advisors: rbaena@am.ub.es, Núñez de Murga, Jorge, 1955-

    المصدر: TDX (Tesis Doctorals en Xarxa)

    وصف الملف: application/pdf

  2. 2
    Dissertation/ Thesis
  3. 3
    Dissertation/ Thesis

    المؤلفون: Fernández Canales, Vidal

    Thesis Advisors: Pérez Cagigal, Manuel, Universidad de Cantabria. Departamento de Física Aplicada

    المصدر: TDR (Tesis Doctorales en Red)

    وصف الملف: application/pdf

  4. 4
    Academic Journal
  5. 5
    Conference
  6. 6
    Dissertation/ Thesis
  7. 7
    Dissertation/ Thesis
  8. 8
    Dissertation/ Thesis
  9. 9
    Academic Journal

    المؤلفون: Marzoa Domínguez, Antonio

    المساهمون: Universitat Politècnica de Catalunya. Departament de Física

    وصف الملف: 8 p.; application/pdf

    Relation: https://www.globalastronomia.com/burlar-a-la-atmosfera-la-optica-adaptativa/; Marzoa, A. Burlar a la atmósfera: la óptica adaptativa. "Astronomia", 1 Juliol 2021, núm. 265-266, p. 22-29.; http://hdl.handle.net/2117/355556

  10. 10
    Dissertation/ Thesis

    المؤلفون: García Riesgo, Francisco

    المساهمون: Santos Rodríguez, Jesús Daniel, Suárez Gómez, Sergio Luis, Física, Departamento de

    مصطلحات موضوعية: Óptica Adaptativa (OA), Frentes de onda

  11. 11
    Dissertation/ Thesis
  12. 12
    Academic Journal

    المؤلفون: Tomás-Juan, Javier

    وصف الملف: application/pdf

    Relation: http://revistas.lasalle.edu.co/index.php/sv/article/view/2497/2435; Alió, J. L., Abdou, A. A., Soria, F., Javaloy, J., Fernández- Buenaga, R., Nagy, Z. Z. et al. (2013). Femtosecond laser cataract incision morphology and corneal higher-order aberration analysis. J. Refract. Surg., 29 (9), 590-595.; Applegate, R. A., Howland, H. C., Sharp, R. P., Cottingham, A. J. y Yee, R. W. (1998). Corneal aberrations and visual performance after radial keratotomy. J. Refractive. Surg., 14 (4), 397-407.; Arines, J., Pailos, E., Prado, P. y Bará, S. (2009). The contribution of the fixational eye movements to the variability of the measured ocular aberration. Ophthalmic. Physiol. Opt., 29 (3), 281-287.; Artal, P. (2002). Optic aberrations in the eye and new intraocular lens. Microcirugía Ocular, 4, 50-58.; Benito, A., Redondo, M. y Artal, P. (2011). Temporal evolution of ocular aberrations following laser in situ keratomileusis. Ophthalmic. Physiol. Opt., 31 (4), 421-428.; Carvalho, L. A. (2005). Accuracy of Zernike polynomials in characterizing optical aberrations and the corneal surface of the eye. Invest. Ophthalmol. Vis. Sci, 46 (6), 1915-1926.; Cuioca, A. (2005). Caracterización de las aberraciones del frente de onda en el ojo humano mejicano. Tesis doctoral. Puebla: Universidad de las Américas Puebla.; Díaz-Doutón, F., Benito, A., Pujol, J., Arjona, M., Güell, J. L. y Artal, P. (2006). Comparison of the retinal image quality with a Hartmann-Shack wavefront sensor and a double-pass instrument. Invest. Ophthalmol. Vis. Sci., 47 (4), 1710-1716.; Gambra, E., Sawides, L., Dorronsoro, C. y Marcos, S. (2009). Accommodative lag and fluctuations when optical aberrations are manipulated. J. Vis., 9 (6), 4.1-15.; Guang-ming, D. (2006). Comparison of wavefront reconstructions With Zernike polynomials and fourier transforms. J. Refract. Surg., 22 (9), 943-948.; Hindman, H. B., McCally, R. L., Myrowitz, E., Terry, M. A., Stark, W. J., Weinberg, R. S. et al. (2007). Evaluation of deep lamellar endothelial keratoplasty surgery using scatterometry and wavefront analyses. Ophthalmology, 114 (11), 2006-2012.; Holladay, J. T., Piers, P. A., Koranyi, G., Van Der Mooren, M. y Norrby, N. E. (2002). A new intraocular lens design to reduce spherical aberration of pseudophakic eyes. J. Refract. Surg., 18 (6), 683-691.; Porter, J., Queener, H., Lin, J., Thorn, K. y Abdul, A. S. (2006). Adaptive optics for vision science principles, practices, design, and applications. Hoboken: John Willey & Soons, Inc.; Jinabhai A., O’Donnell, C. y Radhakrishnan, H. (2012). Changes in refraction, ocular aberrations, and corneal structure after suspending rigid gas-permeable contact lens wear in keratoconus. Cornea, 31 (5), 500-508.; Kanda, H., Kobayashi, M., Mihashi, T., Morimoto, T., Nishida, K. y Fujikado, T. (2012). Serial measurements of accommodation by open-field Hartmann-Shack wavefront aberrometer in eyes with accommodative spasm. Jpn. J. Ophthalmol., 56 (6), 617-623.; Klyce, S. D., Karon, M. D. y Smolek, M. K. (2004). Advantages and disadvantages of the Zernike expansion for representing wave aberration of the normal and aberrated eye. J. Refract. Surg., 20 (5), S537-41.; Lekhanont, K., Chuckpaiwong, V., Vongthongsri, A. y Sangiampornpanit, T. (2014). Effects of sodium hyaluronate on wavefront aberrations in dry eye patients. Optom. Vis. Sci., 91 (1), 39-46.; López, N. y Castejón, J. F. (2006). Estudio de las aberraciones oculares y su corrección mediante lentes de contacto hidrofílicas en ojos normales y muy aberrados. Tesis doctoral. Recuperado de http://hdl.handle.net/10201/172.; López-Gil, N., Fernández-Sánchez, V., Legras, R., Montés- Micó, R., Lara, F. y Nguyen-Khoa, J. L. (2008). Accommodation-related changes in monochromatic aberrations of the human eye as a function of age. Invest. Ophthalmol. Vis. Sci., 49 (4), 1736-1743.; López-Miguel, A., Martínez-Almeida, L., González-García, M. J., Coco-Martín, M. B., Sobrado-Calvo, P. y Maldonado, M. J. (2013). Precision of higher-order aberration measurements with a new Placido-disk topographer and Hartmann-Shack wavefront sensor. J. Cataract. Refract. Surg., 39 (2), 242-249.; Luque, S., Arjona, M., Pujol, L., Sanbria, F., Güell, J., Sisquella, M. et al. (2002). Determinación de la calidad óptica del ojo humano mediante la técnica de doble paso. Microcirugía Ocular, 4.; McAlinden, C., McCartney, M. y Moore, J. (2011). Mathematics of Zernike polynomials: a review. Clin. Experiment. Ophthalmol., 39 (8), 820-827.; Miháltz, K., Kovács, I., Kránitz, K., Erdei, G., Németh, J. y Nagy, Z. Z. (2011). Mechanism of aberration balance and the effect on retinal image quality in keratoconus: optical and visual characteristics of keratoconus. J. Cataract. Refract. Surg., 37 (5), 914-922.; Miháltz, K., Kránitz, K., Kovács, I., Takács, A., Németh, J. y Nagy, Z. Z. (2010). Shifting of the line of sight in keratoconus measured by a hartmann-shack sensor. Ophthalmology, 117 (1), 41-48.; Mihashi, T. (2003). Higher-order wavefront aberrations induced by small ablation area and sub-clinical decentration in simulated corneal refractive surgery using a perturbed schematic eye model. Semin. Ophthalmol., 18 (1), 41-47.; Mimura, T., Fujimura, S., Yamagami, S., Usui, T., Honda, N., Shirakawa, R. et al. (2009). Severe hyperopic shift and irregular astigmatism after radial keratotomy. Eye. Contact. Lens., 35 (6), 345-347.; Montés-Micó, R. (2005). Medida de aberraciones ópticas en el ojo. Gaceta Óptica, 394, 10-14.; Montés-Micó, R., Alió, J. L., Muñoz, G. y Charman, W. N. (2004). Temporal changes in optical quality of air-tear film interface at anterior cornea after blink. Invest. Ophthalmol. Vis. Sci., 45 (6), 1752-1757.; Montés-Micó, R., Cerviño, A., Ferrer-Blasco, T., García- Lázaro, S. y Madrid-Costa, D. (2010). The tear film and the optical quality of the eye. Ocul. Surf., 8 (4), 185-192.; Muñoz, G., Albarrán-Diego, C., Cerviño, A., Ferrer-Blasco, T- y García-Lázaro, S. (2012). Visual and optical performance with the ReZoom multifocal intraocular lens. Eur. J. Ophthalmol., 22 (3), 356-362.; Myriam, M. C. (2007). Efecto del lente de contacto sobre las aberraciones ópticas corneales de alto orden. Ciencia & Tecnología para la Salud Visual y Ocular, 9, 9-17.; Nishi, T., Taketani, F., Ueda, T. y Ogata, N. (2013). Comparisons of amplitude of pseudoaccommodation with aspheric yellow, spheric yellow, and spheric clear monofocal intraocular lenses. Clin. Ophthalmol., 7, 2159-2164.; Okamoto, F., Yamane, N., Okamoto, C., Hiraoka, T. y Oshika, T. (2008). Changes in higher-order aberrations after scleral buckling surgery for rhegmatogenous retinal detachment. Ophthalmology, 115 (7), 1216-1221.; Rafael, N., Ricardo, R., Justiniano, A. (2011). Representation of wavefronts in free-form transmission pupils with complex Zernike polynomials. J. Optom., 4, 41-48.; Renato, A. J., Diego, L. C., Renata, S. D., Leonardo, N. P. y De Freitas, V. (2011). Impact of the wavefront analysis in refraction of keratoconus patients. Rev. Bras. Oftalmol., 70 (1), 16-22.; Rosas, A. (2005). Una aproximación a la tecnología de frentes de onda: bases de aberrometría (1 parte). Revista Sociedad Colombiana de Oftalmología, 38 (3), 68-81.; Ruiz-Alcocer, J., Madrid-Costa, D., Radhakrishnan, H., Ferrer-Blasco, T. y Montés-Micó, R. (2012). Changes in accommodation and ocular aberration with simultaneous vision multifocal contact lenses. Eye. Contact. Lens., 38 (5), 288-294.; Sabermoghaddam, A. A., Zarei-Ghanavati, S. y Abrishami, M. (2013). Effects of chalazion excision on ocular aberrations. Cornea, 32 (6), 757-760.; Schallhorn, S., Brown, M., Venter, J., Teenan, D., Hettinger, K. y Yamamoto, H. (2014). Early clinical outcomes of wavefront-guided myopic LASIK treatments using a new-generation hartmann-shack aberrometer. J. Refract. Surg., 30 (1), 14-21.; Schwiegerling, J. (2011). Scaling pseudo-Zernike expansion coefficients to different pupil sizes. Opt. Lett., 36 (16), 3076-3078.; Seery, L. S., Nau, C. B., McLaren, J. W., Baratz, K. H. y Patel, S. V. (2011). Graft thickness, graft folds, and aberrations after descemet stripping endothelial keratoplasty for fuchs dystrophy. Am. J. Ophthalmol., 152 (6), 910-916.; Shen, J. y Thibos, L. (2011). Peripheral aberrations and image quality for contact lens correction. Optom. Vis. Sci., 88 (10), 1196-1205.; Shimizu, K., Kamiya, K., Igarashi, A. y Shiratani, T. (2012). Intraindividual comparison of visual performance after posterior chamber phakic intraocular lens with and without a central hole implantation for moderate to high myopia. Am. J. Ophthalmol., 154 (3), 486-494.; Toso, A. y Morselli, S. (2012). Visual and aberrometric outcomes in eyes with an angle-supported phakic intraocular lens. J. Cataract. Refract. Surg., 38 (9), 1590-1594.; Van, O. C., Díaz-Santana, L., Bull, N., Biermann, J., Jordan, J., Lagrèze, W. et al. (2011). Light scattering and wavefront aberrations in in vivo imaging of the rat eye: a comparison study. Invest. Ophthalmol. Vis. Sci., 52 (7), 4551-4559.; Vidal, R. (2011). Understanding and Interpreting optical aberrations. Cien. Tecnol. Salud. Vis. Ocul., 9 (2), 105-122.; Villa-Collar, C., González-Méijome, J. y Gutiérrez-Ortega, R. (2009). Objective evaluation of the visual benefit in contact lens fitting after complicated Lasik. J. Refract. Surg., 25 (7), 591-598.; Visser, N., Berendschot, T. T., Verbakel, F., Tan, A. N. y Nuijts, R. M. (2011). Evaluation of the comparability and repeatability of four wavefront aberrometers. Invest. Ophthalmol. Vis. Sci., 52 (3), 1302-1311.; Yang, X., Wang, Y., Zhao, K. y Fang, L. (2011). Comparison of higher-order aberration and optical quality after Epi-LASIK and LASIK for myopia. Graefes. Arch. Clin. Exp. Ophthalmol., 249 (2), 281-288.; Yobani, B. (2011). The wavefront and its representation with Zernike polynomials. Ciencia y Tecnología para la Salud Visual y Ocular, 9 (2), 145-166.; Yu, Q., Wu, J. X., Zhang, H. N., Ye, S., Dong, S. Q. y Zhang, C. H. (2013). Aberration changes of the corneal anterior surface following discontinued use of rigid gas permeable contact lenses. International Journal of Ophthalmology, 6 (2), 178-82.; http://revistas.lasalle.edu.co/index.php/sv/article/view/2497; http://hdl.handle.net/10185/19528

  13. 13

    المؤلفون: Salazar Suarez, Ferran

    المساهمون: Marzoa Domínguez, Antonio, Universitat Politècnica de Catalunya. Departament de Física, SENER, Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)

    المصدر: UPCommons. Portal del coneixement obert de la UPC
    Universitat Politècnica de Catalunya (UPC)

    وصف الملف: application/pdf

  14. 14
    Conference

    المساهمون: Universitat Politècnica de Catalunya. Doctorat en Enginyeria Òptica, Universitat Politècnica de Catalunya. Departament d'Òptica i Optometria, Universitat Politècnica de Catalunya. GOAPI - Grup d'Òptica Aplicada i Processament d'Imatge

    وصف الملف: 6 p.; application/pdf

    Relation: Azor, J. [et al.]. Diseño y caracterización de un dispositivo óptico para la evaluación de lentes intraoculares in vitro. A: Reunión Española de Optoelectrónica. "XII Reunión Española de Optoelectrónica: OPTOEL 2021: evento online: 30 de junio, 1 y 2 de julio 2021". Valencia: Comité de Optoelectrónica, 2021, p. 222-227. ISBN 978-84-18471-75-9.; http://hdl.handle.net/2117/352364

  15. 15
    Academic Journal
  16. 16
    Academic Journal

    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/dyna/article/view/54578; Universidad Nacional de Colombia Revistas electrónicas UN Dyna; Dyna; Rangel-Fonseca, Piero and Gomez-Vieyra, Armando and Malacara-Hernandez, Daniel and Wilson-Herran, Mario Cesar (2016) Automated detection of photoreceptors in in-vivo retinal images. DYNA, 83 (199). pp. 57-62. ISSN 2346-2183; https://repositorio.unal.edu.co/handle/unal/60471; http://bdigital.unal.edu.co/58803/

  17. 17
    Academic Journal

    المؤلفون: PIERO RANGEL FONSECA

    المساهمون: ARMANDO GOMEZ VIEYRA, DANIEL MALACARA HERNANDEZ, MARIO CESAR WILSON HERRAN

    المصدر: Dyna-Colombia, Vol. 83, No. 193, Págs. 57-62

    وصف الملف: application/pdf

    Relation: citation:Rangel Fonseca,P.,Gómez Vieyra,A.,Malacara Hernández,D.,Wilson Herran,M.C.2016.Detección automatizada de fotorreceptores en imágenes retinianas in-vivo.Dyna-Colombia,83(193),57-62.doi:10.15446/dyna.v83n199.54578; http://cicese.repositorioinstitucional.mx/jspui/handle/1007/1755

  18. 18
    Dissertation/ Thesis

    المؤلفون: Perilla Rubio, Miguel Andrés

    المساهمون: Forero Shelton, Antonio Manu, Núñez Portela, Mayerlin

    وصف الملف: 25 páginas; application/pdf

    Relation: D. Wilding, P. Pozzi, O. Soloviev, G. Vdovin, y M. Verhaegen, "Practical guidelines for implementing adaptive optics in fluorescence microscopy", Adaptive Optics and Wavefront Control for Biological Systems IV. SPIE, feb. 23, 2018. doi:10.1117/12.2287647.; D. M. Jameson, Introduction to fluorescence. First edition, Taylor & Francis, 2014.; X. Wang y Y. Lai, "Three basic types of fluorescence microscopy and recent improvement", E3S Web of Conferences, vol. 290. EDP Sciences, p. 01031, 2021. doi:10.1051/e3sconf/202129001031.; C. Singer, "Notes on the early history of microscopy", Proceedings of the Royal Society of Medicine, vol. 7, no. Sect_Hist_Med, pp. 247-279, 1914; S. M. Opal, "A Brief History of Microbiology and Immunology", Vaccines: A Biography. Springer New York, pp. 31-56, nov. 10, 2009. doi:10.1007/978-1-4419-1108-7_3.; B. R. Masters, "Insights into the Development of Light Microscopes", in Superresolution Optical Microscopy: The Quest for Enhanced Resolution and Contrast, B. R. Masters, Ed. Cham: Springer International Publishing, 2020, pp. 41-50; B. R. Masters, "History of the Optical Microscope in Cell Biology and Medicine", eLS. Wiley, dic. 15, 2008. doi:10.1002/9780470015902.a0003082.; F. López-Muñoz, J. Boya, y C. Alamo, "Neuron theory, the cornerstone of neuroscience, on the centenary of the Nobel Prize award to Santiago Ramón y Cajal", Brain Research Bulletin, vol. 70, no. 4, pp. 391--405, Oct. 2006.; F. H. Kasten, "The Origins of Modern Fluorescence Microscopy and Fluorescent Probes", Cell Structure and Function by Microspectrofluorometry. Elsevier, pp. 3-50, 1989. doi:10.1016/b978-0-12-417760-4.50008-2.; N. Vladimirov, F. Preusser, J. Wisniewski, Z. Yaniv, R. A. Desai, A. Woehler y S. Preibisch "Dual-view light-sheet imaging through a tilted glass interface using a deformable mirror", Biomedical Optics Express, vol. 12, núm. 4. The Optical Society, p. 2186, mar. 18, 2021. doi:10.1364/boe.416737.; Mani Ratnam Rai, Chen Li, y Alon Greenbaum, "Quantitative analysis of illumination and detection corrections in adaptive light sheet fluorescence microscopy," Biomed. Opt. Express 13, 2960-2974 (2022); E. H. K. Stelzer, "Light-sheet fluorescence microscopy for quantitative biology", Nature Methods, vol. 12, núm. 1. Springer Science and Business Media LLC, pp. 23-26, dic. 30, 2014. doi:10.1038/nmeth.3219.; P. Pozzi, O. Soloviev, D. Wilding, G. Vdovin, y M. Verhaegen, "Optimal model-based sensorless adaptive optics for epifluorescence microscopy", PLOS ONE, vol. 13, núm. 3. Public Library of Science (PLoS), p. e0194523, mar. 20, 2018. doi:10.1371/journal.pone.0194523.; C. J. R. Sheppard, H. Fatemi, y M. Gu, 2The fourier optics of near-field microscopy", Scanning, vol. 17, núm. 1. Wiley, pp. 28-40, dic. 07, 2006. doi:10.1002/sca.4950170105; R. W. Cole, T. Jinadasa, y C. M. Brown, "Measuring and interpreting point spread functions to determine confocal microscope resolution and ensure quality control", Nature Protocols, vol. 6, núm. 12. Springer Science and Business Media LLC, pp. 1929-1941, nov. 10, 2011. doi:10.1038/nprot.2011.407.; Bo Zhang, Josiane Zerubia, y Jean-Christophe Olivo-Marin, "Gaussian approximations of fluorescence microscope point-spread function models," Appl. Opt. 46, 1819-1829 (2007); R.A. Abello, "Implementación de un microscopio de fluorescencia con una máscara de fase para ampliar su profundidad de campo," Monografía, Dept. de Fís., Univ. de los Andes,Bogotá, Colombia, 2022.; A. He y C. Quan, "Wavefront correction for spatial nonuniformity of the liquid crystal on silicon based spatial light modulator", Optics and Lasers in Engineering, vol. 121. Elsevier BV, pp. 377-388, oct. 2019. doi:10.1016/j.optlaseng.2019.05.010.; T. Wright, "Development of a light-sheet fluorescence microscope employing an ALPAO deformable mirror to achieve video-rate remote refocusing and volumetric imaging." PhD. Dissertation, DPY, ICL, 2022.; W. Hong et al.,"Adaptive light-sheet fluorescence microscopy with a deformable mirror for video-rate volumetric imaging", Applied Physics Letters, vol. 121, núm. 19. AIP Publishing, p. 193703, nov. 07, 2022. doi:10.1063/5.0125946.; http://hdl.handle.net/1992/69093; instname:Universidad de los Andes; reponame:Repositorio Institucional Séneca; repourl:https://repositorio.uniandes.edu.co/

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    Academic Journal
  20. 20
    Book