Literatura académica sobre el tema "Stereography"

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Artículos de revistas sobre el tema "Stereography"

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Kazimi, A. "Hazardous Stereography". Journal of Vision 12, n.º 14 (27 de diciembre de 2012): 2. http://dx.doi.org/10.1167/12.14.2.

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Wasim, Muhammad. "A Comparative Study of Curvature-Based and Differential Versions of Dotter Raster-stereography Techniques". KIET Journal of Computing and Information Sciences 1, n.º 1 (14 de abril de 2021): 01–12. http://dx.doi.org/10.51153/kjcis.v4i1.37.

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Conventional Line-based Raster-stereography has been a popular technique for 3-D surface topography. However, in its application for human face screening, the problem of line breaking was observed. In order to resolve this problem, there came up a new technique called dotted raster-stereography. The previously reported version of dotted raster-stereography extracted the curvature features of human face. This paper presents a modified version, viz. differential dotted raster-stereography in which instead of curvature, differences in straight line distances between adjacent points are calculated. A comparative picture of the two versions of dotted raster-stereography techniques is presented. Results suggest that this new differential version of dotted raster-stereography algorithm is faster in execution due to its simpler implementation in software, though lower in accuracy, as compared with the previously reported curvature-based version of dotted raster stereography.
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Helseth, Lars Egil y Ingar Singstad. "Diffusers for holographic stereography". Optics Communications 193, n.º 1-6 (junio de 2001): 81–86. http://dx.doi.org/10.1016/s0030-4018(01)01246-9.

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Davis, Melody D. y William C. Darrah. "An Essential Reprint in Stereography". Art Journal 57, n.º 3 (1998): 94. http://dx.doi.org/10.2307/777979.

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Fowles, Jib. "Stereography and the Standardization of Vision". Journal of American Culture 17, n.º 2 (junio de 1994): 89–93. http://dx.doi.org/10.1111/j.1542-734x.1994.00089.x.

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SHOJI, Tetsuya, Katsunori OKAYA, Katsuto GOTO y Shigeru OTSUKA. "Binocular scanning electron microscope for simultaneous stereography." Mineralogical Journal 13, n.º 4 (1986): 195–201. http://dx.doi.org/10.2465/minerj.13.195.

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Toker, Leona. "Literary Stereography: Nabokov Drawing and Reading Maps". Partial Answers: Journal of Literature and the History of Ideas 19, n.º 2 (2021): 361–69. http://dx.doi.org/10.1353/pan.2021.0020.

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Ito, Masaaki, Ken Hashimoto, Kaoru Katsuumi y Yoshio Sato. "Pathogenesis of Monilethrix: Computer Stereography and Electron Microscopy". Journal of Investigative Dermatology 95, n.º 2 (agosto de 1990): 186–94. http://dx.doi.org/10.1111/1523-1747.ep12477967.

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Pu, Yi-Ying, Jian-Wen Dong, Bing-Chu Chen, Yuan-Zhi Liu y He-Zhou Wang. "Three-dimensional imaging with monocular cues using holographic stereography". Optics Letters 35, n.º 19 (28 de septiembre de 2010): 3279. http://dx.doi.org/10.1364/ol.35.003279.

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Klinge, U., M. M�ller, C. Br�cker y V. Schumpelick. "Application of three-dimensional stereography to assess abdominal wall mobility". Hernia 2, n.º 1 (marzo de 1998): 11–14. http://dx.doi.org/10.1007/bf01207767.

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Tesis sobre el tema "Stereography"

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Arlauskaitė, Dainora. "Vojerizmas fotografijoje". Bachelor's thesis, Lithuanian Academic Libraries Network (LABT), 2011. http://vddb.laba.lt/obj/LT-eLABa-0001:E.02~2011~D_20110802_143304-44757.

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Kūnas įvairių mokslo šakų tyrinėjimo objektas, sunku apsiriboti ties viena sritimi ar pripaţinti tik vieną sritį kaip teisingiausią kūno suvokimui. Bet kokiu atveju ţmogus savo kūną paţysta bei formuoja per aplinka. Fotografiją taip pat yra įvaizdţio formavimo priemonė. Pati fotografija ne tik formuoja įvaizdį, bet ir formuoją patį ţmogaus poreikį vaizdiniui ir kitokį ţvilgsnį į aplinką. Diplominiame darbe nagrinėju vojerizmą, jo ryšį su fotografija. Stengiuosi surasti momentą kada paprastas ţvilgsnis tampa vojeristiniu ţiūrėjimu, ar tiesiog vojerizmas yra netskiriamas dalykas nuo fotografijos. Analizuoju vojerizmo teoriją, kaip vojerizmas atsiskleidţia fotografijoje. Nagrinėju kūno samprata, nuogą kūną fotografijoje, erotinę fotografiją, akto fotografiją Lietuvoje. Atlikdama savo uţdavinius, analizuodama literatūrą ir prototipus, siekiu uţsibrėţto tikslo, sukurti stereografijų ciklą, kuriame atsispindėtų diplominiame darbe nagrinėjami aspektai. Diplominiame darbe taip nagrinėju stereografijos sąvoka, kuri siejasi su vojerizmo ištakomis fotografijoje ir mano stereografijų ciklu. Stereografija- diplominio darbo, praktinės dalies pateikimo forma.
The body is exploration object in the vorius science discipline, it would be difficult to confine by one discipline or recognize only one discipline as the farest for body knowing. In any case human knows his body and formed whitin the enviroment. The photography as a discipline is also body formating tool. Photography itself is not only shaped the image, but also formating a requirement for the image and different gaze to enviroment. I‘m analyzed voyeur in photography, it‘s connection whit photography. Trying to find a moment when a simple looking bicome voyeuristic gaze or maby voyeurism is the main part in photography. I analyzed voyeur theory, how voyeurism reveals in photography. Describing body as a concept, naked body in photography, erotic photography, nude photography in Lithuania. Doing my tasks, analyzing literature and prototipes, try to achiev the main target, to create a stereography cycle in which reflected dealing aspects. I‘m Analyzed steregraphy concept, which pertain whit voyeurism orgins in photography and my stereography cycle. Stereography is submission form of the practical part.
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Tay, Savas. "IR Sensitive Photorefractive Polymers, The First Updateable Holographic 3D Display". Diss., The University of Arizona, 2007. http://hdl.handle.net/10150/194934.

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This work presents recent advances in the development of infra-red sensitive photorefractive polymers, and updateable near real-time holographic 3D displays based on photorefractive polymers. Theoretical and experimental techniques used for design, fabrication and characterization of photorefractive polymers are outlined. Materials development and technical advances that made possible the use of photorefractive polymers for infra-red free-space optical communications, and 3D holographic displays are presented.Photorefractive polymers are dynamic holographic materials that allow recording of highly efficient reversible holograms. The longest operation wavelength for a photorefractive polymer before this study has been 950nm, far shorter than 1550nm, the wavelength of choice for optical communications and medical imaging. The polymers shown here were sensitized using two-photon absorption, a third order nonlinear effect, beyond the linear absorption spectrum of organic dyes, and reach 40% diffraction efficiency with a 35ms response time at this wavelength. As a consequence of two-photon absorption sensitization they exhibit non-destructive readout, which is an important advantage for applications that require high signal-to-noise ratios.Holographic 3D displays provide highly realistic images without the need for special eyewear, making them valuable tools for applications that require "situational awareness" such as medical, industrial and military imaging. Current commercially available holographic 3D displays employ photopolymers that lack image updating capability, resulting in their restricted use and high cost per 3D image. The holographic 3D display shown here employs photorefractive polymers with nearly 100% diffraction efficiency and fast writing time, hours of image persistence, rapid erasure and large area, a combination of properties that has not been shown before. The 3D display is based on stereography and utilizes world's largest photorefractive devices (4x4 inch in size). It can be recorded within a few minutes, viewed for several hours without the need for refreshing and can be completely erased and updated with new images when desired, thusly comprising the first updateable holographic 3D display with memory, suitable for practical use.
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Barnett, Christopher A. "Modern lithographic techniques applied to stereographic imaging". Thesis, Loughborough University, 1993. https://dspace.lboro.ac.uk/2134/34510.

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The main aim of the research has been to produce and evaluate a high-quality diffusion screen to display projected film and television images. The screens have also been found to effectively de-pixelate LCD arrays viewed at a magnification of approximately 4x. The production process relies on the formation of localized refractive index gradients in a photopolymer. The photopolymer, specially formulated and supplied by Du Pont, is exposed to actinic light through a precision contact mask to initiate polymerization within the exposed areas. As polymerization proceeds, a monomer concentration gradient exists between the exposed and unexposed regions allowing the monomer molecules to diffuse. Since the longer polymer chains do not diffuse as readily, the molecular concentration of the material, which is related to its refractive index, is then no longer uniform. The generation of this refractive index profile can, to some extent, be controlled by careful exposure of the photopolymer through the correct mask so that the resulting diffusion screen can be tailored to suit specific viewing requirements.
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DeLeskie, Robert. "The Underwood stereograph travel system, a historical and cultural analysis". Thesis, National Library of Canada = Bibliothèque nationale du Canada, 2001. http://www.collectionscanada.ca/obj/s4/f2/dsk3/ftp05/MQ59257.pdf.

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Halsban, Megan. "Stereographs as Scholarly Resources in American Academic Libraries and Special Collections". Thesis, School of Information and Library Science, 2008. http://hdl.handle.net/1901/543.

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This paper examines stereographic images as scholarly resources, and begins with a brief history of the stereograph. A discussion and review of the literature related to the stereograph as well as the preservation of photographic objects follows the introduction. In addition to the literature review, collections of stereographs at four repositories were evaluated for usability: The Keystone-Mast Archive at the University of California, Riverside; The Eliot Elisofon Archive at the Smithsonian Institution; the George Eastman House; the Library of Congress. The paper ends with suggestions for future work with the stereograph, in order to facilitate access and use by researchers.
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Hynd, Ryan Charles. "Minimal Surfaces in three-sphere with special spherical symmetry". Thesis, Georgia Institute of Technology, 2004. http://hdl.handle.net/1853/5104.

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We introduce the notion of special spherical symmetry and classify the complete regular minimal surfaces in the three sphere having this symmetry. We also show that the Clifford torus is the unique embedded minimal torus in three sphere possessing special spherical symmetry.
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Chávez, De la Cruz Raysa Milagros. "Análisis de estabilidad de talud en areniscas mediante el método empírico Hazard índex, cinemático y equilibrio límite en la carretera Tarapoto – Yurimaguas". Bachelor's thesis, Universidad Peruana de Ciencias Aplicadas (UPC), 2020. http://hdl.handle.net/10757/652580.

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La estabilidad de las pendientes rocosas se considera crucial para la seguridad pública en las carreteras, así como también para la seguridad del personal y los equipos que trabajan en los cortes de roca. La inestabilidad y fallas en taludes rocosos se producen debido a muchos factores, como la geometría, las discontinuidades geológicas, el material del talud, y las condiciones climáticas severas. Así también como las cargas externas, las fuertes precipitaciones y la sismicidad que podrían jugar un papel importante en la falla. En esta tesis se desarrolla el método cinemático y el método empírico de “Índice de Riesgo” (tomado del inglés “Hazard Índex”) para la evaluación de la estabilidad del talud en la carretera Tarapoto- Yurimaguas, donde el talud corresponde a una roca residual tipo arenisca de baja resistencia, con alta precipitación por ser zona tropical y ubicada dentro de una zona sísmica. Se identifican los posibles tipos de falla mediante el análisis cinemático basado en la dirección del rumbo y buzamiento de las discontinuidades, se analiza las fallas encontradas con respecto al factor sísmico, y la condición de la estabilidad con el método empírico “Hazard Index” con respecto al factor de precipitación para así identificar la condición de estabilidad y mostrar el resultado. La tesis destaca algunas limitaciones de los métodos utilizados.
The stability of rocky slopes is considered crucial for public safety on the roads, as well as for the safety of personnel and teams working on rock cuts. Rock slope instability and failure occur due to many factors such as geometry, geological discontinuities, slope material, and severe weather conditions. As well as external loads, heavy precipitation, and seismicity that could play an important role in the failure. In this thesis we develop the kinematic method and the empirical method of "hazard Index" for evaluating the stability of the slope on the Tarapoto-Yurimaguas road, where the slope corresponds to a residual rock Low resistance sandstone type, with high precipitation as it is a tropical zone and located within a seismic zone. Possible types of failure are identified through kinematic analysis based on the direction of heading and dip of the discontinuities, the failures found are analyzed with respect to the seismic factor, and the condition of stability with the empirical method "Hazard Index" with respect to to the precipitation factor to identify the stability condition and show the result. The thesis highlights some limitations of the methods used.
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Ho, Chiu-shek. "Stereographic projection and mapping of engineering geology case study near Jordan Valley, Hong Kong /". Click to view the E-thesis via HKUTO, 2007. http://sunzi.lib.hku.hk/hkuto/record/B38848673.

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Ho, Chiu-shek y 何照碩. "Stereographic projection and mapping of engineering geology: case study near Jordan Valley, Hong Kong". Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2007. http://hub.hku.hk/bib/B38848673.

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Brooker, Julian P. "Eye movement controlled synthetic depth of field blurring in stereographic displays of virtual environments". Thesis, University of Reading, 2003. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.413506.

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Libros sobre el tema "Stereography"

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3D, sutereo o koete: 3D, beyond the stereography. Tōkyō: Tōkyō-to Rekishi Bunka Zaidan, 1996.

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Kuzmichev, Kirill. The third dimension: Russia of Alexander II in the French stereography. [United States?]: www.stereoviewme, 2017.

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Luca, Tiago. Planetary Cinema. NL Amsterdam: Amsterdam University Press, 2021. http://dx.doi.org/10.5117/9789463729628.

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The story is now familiar. In the late 1960s humanity finally saw photographic evidence of the Earth in space for the first time. According to this narrative, the impact of such images in the consolidation of a planetary consciousness is yet to be matched. This book tells a different story. It argues that this narrative has failed to account for the vertiginous global imagination underpinning the media and film culture of the late nineteenth century and beyond. Panoramas, giant globes, world exhibitions, photography and stereography: all promoted and hinged on the idea of a world made whole and newly visible. When it emerged, cinema did not simply contribute to this effervescent globalism so much as become its most significant and enduring manifestation. Planetary Cinema proposes that an exploration of that media culture can help us understand contemporary planetary imaginaries in times of environmental collapse. Engaging with a variety of media, genres and texts, the book sits at the intersection of film/media history and theory/philosophy, and it claims that we need this combined approach and expansive textual focus in order to understand the way we see the world.
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Arizona stereographs, 1865-1930. Nevada City, California: Carl Mautz Publishing, 2014.

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Boyd, Robert S. The Great War through Keystone stereographs. New Bern, NC: Trafford, 2002.

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J, Lisle Richard, ed. Stereographic projection techniques in structural geology. Oxford: Butterworth-Heinemann, 1996.

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1944-, Juhl Paul C., ed. Iowa stereographs: Three-dimensional visions of the past. Iowa City: University of Iowa Press, 1997.

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R, Leyshon Peter y Leyshon Peter R, eds. Stereographic projection techniques for geologists and civil engineers. 2a ed. Cambridge, UK: Cambridge University Press, 2004.

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Palmquist, Peter E. Return to El Dorado: A century of California stereographs from the collection of Peter Palmquist. Riverside, CA: California Museum of Photography, University of California, 1986.

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Cyganek, Bogus¿aw. Komputerowe przetwarzanie obrazo w tro jwymiarowych. Warszawa: Akademicka Oficyna Wydawnicza EXIT, 2002.

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Capítulos de libros sobre el tema "Stereography"

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van Baarle, Kristof. "Capturing Bodies as Objects: Stereography and the Diorama at Work in Kris Verdonck’s ISOS". En Media Archaeology and Intermedial Performance, 173–91. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-99576-2_8.

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Agterberg, Frits. "Stereographic Projections". En Encyclopedia of Mathematical Geosciences, 1–4. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-26050-7_317-1.

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Freeden, Willi, M. Zuhair Nashed y Michael Schreiner. "Stereographic Shannon-Type Sampling". En Spherical Sampling, 149–74. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-71458-5_6.

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Lee, Nam-Hoon. "Stereographic Projection and Inversions". En Geometry: from Isometries to Special Relativity, 47–85. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-42101-4_3.

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Grochla, Krzysztof y Arkadiusz Sochan. "Adaptive Streaming of Stereographic Video". En Computer Networks, 87–94. Berlin, Heidelberg: Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-642-02671-3_10.

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(Pim) Bil, W. L. "Modeling Space by Stereographic Rejection". En Lecture Notes in Geoinformation and Cartography, 21–42. Berlin, Heidelberg: Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-12670-3_2.

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Sochen, Nir A. y Ron Kimmel. "Combing a Porcupine via Stereographic Direction Difusion". En Scale-Space and Morphology in Computer Vision, 308–16. Berlin, Heidelberg: Springer Berlin Heidelberg, 2001. http://dx.doi.org/10.1007/3-540-47778-0_28.

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Isaev, Alexander. "The Stereographic Projection. Conformal Maps. The Open Mapping Theorem". En Springer Undergraduate Mathematics Series, 17–23. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-68170-2_3.

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Kuchelmeister, Volker. "Universal Capture through Stereographic Multi-perspective Recording and Scene Reconstruction". En Advances in Multimedia Information Processing - PCM 2009, 974–81. Berlin, Heidelberg: Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-642-10467-1_91.

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Yavartanoo, Mohsen, Eu Young Kim y Kyoung Mu Lee. "SPNet: Deep 3D Object Classification and Retrieval Using Stereographic Projection". En Computer Vision – ACCV 2018, 691–706. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-20873-8_44.

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Actas de conferencias sobre el tema "Stereography"

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Artamonov, D. A., N. G. Vlasov y S. E. Shtanko. "Image reconstruction by ruled stereography". En Optical Information Science and Technology, editado por Andrei L. Mikaelian. SPIE, 1998. http://dx.doi.org/10.1117/12.302484.

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Bergeron, Michael A. "Simplicity vs. Flexibility; an Integrated System Approach to Stereography". En SMPTE Stereoscopic 3D Conference. IEEE, 2010. http://dx.doi.org/10.5594/m001401.

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Saneyoshi, Keiji, Keiji Hanawa, Makoto Kaneko y Haruki Kobayashi. "Gas Flow Investigation by Stereography in Spark Ignition Engine". En International Congress & Exposition. 400 Commonwealth Drive, Warrendale, PA, United States: SAE International, 1991. http://dx.doi.org/10.4271/910476.

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Miyazawa, Atsushi, Motonaga Ishii, Kazunori Okuzawa y Ryuuichi Sakamoto. "Real-time interactive 3D computer stereography for recreational applications". En Electronic Imaging 2008, editado por Andrew J. Woods, Nicolas S. Holliman y John O. Merritt. SPIE, 2008. http://dx.doi.org/10.1117/12.766127.

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Heindel, Theodore J., Terrence C. Jensen y Joseph N. Gray. "Visualizing Fluid Flows With X-Rays". En ASME/JSME 2007 5th Joint Fluids Engineering Conference. ASMEDC, 2007. http://dx.doi.org/10.1115/fedsm2007-37023.

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There are several methods available to visualize fluid flows when one has optical access. However, when optical access is limited to near the boundaries or not available at all, alternative visualization methods are required. This paper will describe flow visualization using an X-ray system that is capable of digital X-ray radiography, digital X-ray stereography, and digital X-ray computed tomography (CT). The unique X-ray flow visualization facility will be briefly described, and then flow visualization of various systems will be shown. Radiographs provide a two-dimensional density map of a three dimensional process or object. Radiographic images of various multiphase flows will be presented. When two X-ray sources and detectors simultaneously acquire images of the same process or object from different orientations, stereographic imaging can be completed; this type of imaging will be demonstrated by trickling water through packed columns and by absorbing water in a porous medium. Finally, local time-averaged phase distributions can be determined from X-ray computed tomography (CT) imaging, and this will be shown by comparing CT images from two different gas-liquid sparged columns.
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Lushnikov, D. S., A. Y. Zherdev, S. B. Odinokov, V. V. Markin y A. V. Smirnov. "The schemes and methods for producing of the visual security features used in the color hologram stereography". En SPIE Optics + Optoelectronics, editado por Miroslav Hrabovský, John T. Sheridan y Antonio Fimia. SPIE, 2017. http://dx.doi.org/10.1117/12.2264914.

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Vasilca, Doina. "COMPARISON BETWEEN THE 1970 STEREOGRAPHIC PROJECTION AND A DOUBLE-STEREOGRAPHIC PROJECTION". En 19th SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings. STEF92 Technology, 2019. http://dx.doi.org/10.5593/sgem2019/2.2/s11.092.

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Heller, J. y T. Pajdla. "Stereographic rectification of omnidirectional stereo pairs". En 2009 IEEE Conference on Computer Vision and Pattern Recognition (CVPR). IEEE, 2009. http://dx.doi.org/10.1109/cvprw.2009.5206530.

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von Smekal, Lorenz, Dhagash B. Mehta y Andre Sternbeck. "Lattice Landau Gauge via Stereographic Projection". En VIIIth Conference Quark Confinement and the Hadron Spectrum. Trieste, Italy: Sissa Medialab, 2012. http://dx.doi.org/10.22323/1.077.0048.

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Goode, Georgianna D. y Michael L. Philips. "Voice Controlled Stereographic Video Camera System". En OE/LASE '89, editado por Scott S. Fisher y Woodrow E. Robbins. SPIE, 1989. http://dx.doi.org/10.1117/12.952869.

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Informes sobre el tema "Stereography"

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Wang, Xiao H., Walter F. Good, Carl R. Fuhrman, Howard E. Rockett y David Gur. Development and Evaluation of Stereographic Display for Lung Cancer Screening. Fort Belvoir, VA: Defense Technical Information Center, diciembre de 2006. http://dx.doi.org/10.21236/ada462882.

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Wiley, Ernest A. y James J. Koshmann. Conversion of Contoured Polar Stereographic Projected Data into the Environmental Acoustic Interactive Data System (EAIDS). Fort Belvoir, VA: Defense Technical Information Center, mayo de 1992. http://dx.doi.org/10.21236/ada252847.

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