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Bibliografia

Adobe, (2020). Dimensioni e risoluzione dell’immagine. [Online]. helpx.adobe.com/it/photoshop/using/image-size-resolution.html. [Consultato il 18 novembre 2020]. Allen, R. C. & Rubin, M. L. (1981). Chromostereopsis. Survey of ophthalmology, 26(1), 22-27. Andrews, J. (1996). What was a map? The lexicographers reply. Cartographica: The

International Journal for Geographic Information and Geovisualization, 33(4), 1-12. Aree Protette Po e Collina Torinese (2015). Candidatura a Riserva MAB UNESCO “CollinaPo

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Man and Biosphere Reserve”. Aree Protette Po Piemontese (2020). Parco Naturale della Collina di Superga. [Online]. http:// www.areeprotettepotorinese.it/parco-collina-superga.php. [Consultato il 1 febbraio 2021]. Atoyan, R. V. & German, A. (2017). New Technologies in 3D Mapping. Bulletin of Geography.

Physical Geography Series, 12(1), 31-40. Atwood, P. (2019a). Rendering Relief Maps in Blender with Eevee. [Online]. https://pete2 ratwoodprojects.wordpress.com/rendering-relief-maps-in-blender-with-eevee/. [Consultato il 1 febbraio 2021]. Atwood, P. (2019b). Colouring Shaded Relief Maps in Blender. [Online]. https://peteratwoodprojects.wordpress.com/shading-relief-maps-in-blender/. [Consultato il 1 febbraio 2021]. Atwood, P. (2020). Relief Shading in Blender - Tips and Tricks with Peter Atwood. [Online]. https://www.youtube.com/watch?v=AGczLhQg8yI&t=1387s. [Consultato il 1 febbraio 2021]. Baechler, O. & Greer, X. (2020). Blender by examples. Seconda edizione. Birmingham, Packt

Publishing Ltd. Balchin, W. G. & Coleman, A. M. (1966). Graphicacy should be the fourth ace in the pack. Cartographica: The International Journal for Geographic Information and

Geovisualization, 3(1), 23-28. Bandrova, T. (2001). Designing of symbol system for 3D city maps. In 20th International

Cartographic Conference, Beijing, China (Vol. 2, pp. 1002-1010). Bandrova, T. (2001). Designing of symbol system for 3D city maps. In 20th International

Cartographic Conference, Beijing, China (Vol. 2, pp. 1002-1010). Bandrova, T. & Bonchev, S. (2013). 3D Maps–Scale, Accuracy, Level of Detail. In Proceedings of the 26th international cartographic conference (p. 16). Banerjee, S. (2020). A more detailed, colorful map. [Online]. Disponibile presso: blog.google/ products/maps/more-detailed-colorful-map. [Consultato il 18 novembre 2020]. BDTRE (2019). Guida all’uso dei dati vettoriali di BDTRE – Regione Piemonte. Benosman, R. & Kang, S. B. (2001). A brief historical perspective on panorama. In Panoramic vision (pp. 5-20). Springer, New York, NY. Bertin, J. (2010). Semiology of Graphics - Diagrams, Networks, Maps. Biljecki, F., Ledoux, H., Stoter, J. & Zhao, J. (2014). Formalisation of the level of detail in 3D city modelling. Computers, environment and urban systems, 48, 1-15. Blender (2020a). Blender by the Numbers - 2019. [Online]. https://www.blender.org/press/ blender-by-the-numbers-2019/. [Consultato il 1 febbraio 2020]. Blender (2020b). Release Notes. [Online]. https://www.blender.org/download/releases/. [Consultato il 1 febbraio 2021].

Blender (2020c). Data-Blocks. [Online]. https://docs.blender.org/manual/en/latest/files/ data_blocks.html. [Consultato il 1 febbraio 2021]. Blender (2020d). Mapping Types. [Online]. https://docs.blender.org/manual/en/2.79/editors/uv_image/uv/editing/unwrapping/mapping_types.html. [Consultato il 1 febbraio 2021]. Bordini, S. (1984). Storia del Panorama. La visione totale nella pittura del XIX secolo. Brewer, C. A. (2016). Designing Better Maps: A Guide for GIS Users. Redlands, California: Esri

Press. Brown, L. (2014). Texture shading: A new technique for depicting terrain relief. In Presentation from ICA Mountain Cartography Workshop (Vol. 24). Buchroithner, M., et. al. (2000). 3D display techniques for cartographic purposes: Semiotic aspects. International Archives of Photogrammetry and Remote Sensing, 33(B5/1; PART 5), 99-106. Buckler, W. R. (1988). Computer Generated 3-D Maps Models for Learning Contour Map

Reading. Journal of Geography, 87(2), 49-58. Buckley, A. (2008). Guidelines for minimum size for text and symbols on maps. [Online].

Disponibile presso: esri.com/arcgis-blog/products/product/mapping/guidelines-forminimum-size-for-text-and-symbols-on-maps/. [Consultato il 18 novembre 2020] Buziek, G. (2000). Legend designs for noninteractive cartographic animations. Computers &

Geosciences, 26(1), 21-28. Cabezos-Bernal, P. M. & Cisneros-Vivó, J. J. (2015). Representing the city, the chorographic tradition from the renaissance to the present day. In Verdiani, G., et. al. (eds.) architecture, archaeology and contemporary city planning “State of knowledge in the digital age” - Proceedings of the 2015 workshop (p. 22) Capitanio, C., Bini, M. & Francini, C. (2015). Firenze dal Centro alle Colline, Belvedere e percorsi panoramici. Carrera, C., et. al. (2017). Map-reading skill development with 3D technologies. Journal of

Geography, 116(5), 197-205. Cimnaghi, E., Delmonte, A., Zanetta, E. & Ostellino, I. (2014). Aree Protette del Po e della

Collina Torinese: studi propedeutici alla Candidatura MAB-Man and the Biosphere. In

E3S Web of Conferences (Vol. 2, p. 03006). EDP Sciences. Corboz, A. (1994). The Sprawling City. catálogo da exposição Cities: from the Balloon to the

Satellite, Barcelona, Centre de Arte Contemporània, Angle Editorial, 35-38. Darbyshire, J. E. & Jenny, B. (2017). Natural-color maps via coloring of bivariate grid data.

Computers & Geosciences, 106, 130-138. Dent, B. D. (1999). Cartography: Thematic Map Design. Donati Sarti, G. (2020). Classificazione morfologica semi-automatica in ambiente GIS attraverso l’uso del topographic position index (TPI). Donati Sarti, G. (2021). La ‘Tranquillity Map’ della regione Toscana – Uno strumento per la valutazione della qualità dei luoghi. In: Zetti, I. (ed.) Il valore essenziale dell’errore.

DIDAPress, Firenze, pp. 62–73. ESRI, (2016) Cell size of raster data. [Online]. Disponibile presso: desktop.arcgis.com/en/arcmap/10.3/manage-data/raster-and-images/cell-size-of-raster-data.htm. [Consultato il 18 novembre 2020]. Evans, R. E. (2011). A bird’s-eye view of modernity: the synoptic view in nineteenth-century cityscapes (Doctoral dissertation, Carleton University). Friedman, D. (2001). “ Fiorenza”: Geography and Representation in a Fifteenth Century City

View. Zeitschrift für Kunstgeschichte, 64(H. 1), 56-77.

Gröger, G., Kolbe, T. H., Nagel, C. & Häfele, K. H. (2012). OGC city geography markup language (CityGML) encoding standard. Grusec, J. E. (1994). Social learning theory and developmental psychology: The legacies of

Robert R. Sears and Albert Bandura. Gumster, J. (2016). Blender Editor Types. [Online]. https://www.dummies.com/web-desio gn-development/blender-editor-types/. [Consultato il 1 febbraio 2021]. Häberling, C. (1999). Symbolization in topographic 3D maps: Conceptual aspects for user-oriented design. In 19th International Cartographic Conference (pp. 1037-1044). Häberling, C. (2002). 3D map presentation–a systematic evaluation of important graphic aspects. In Proceedings of ICA Mountain Cartography Workshop” Mount Hood (Vol. 11). Häberling, C. (2003). Topographische 3D-Karten: Thesen für kartographische

Gestaltungsgrundsätze (Doctoral dissertation, ETH Zurich). Häberling, C. (2004). Highly Focussed Selected Design Aspects and Graphic Variables for 3D

Mountain Maps. In Ica Mountain Cartography Workshop. ICC-ICA. Häberling, C., Bär, H. & Hurni, L. (2008). Proposed cartographic design principles for 3D maps: a contribution to an extended cartographic theory. Cartographica: The International

Journal for Geographic Information and Geovisualization, 43(3), 175-188. Hajek, P., Jedlička, K. & Čada, V. (2016). Principles of Cartographic Design for 3D Maps–Focused on Urban Areas. In 6th International Conference on Cartography and GIS Proceedings (Vol. 1, pp. 297-307). Haverkamp-Begemann, E. (1969). The Spanish views of Anton van den Wyngaerde. Master

Drawings, 375-450. Hébert, J. R. & Dempsey, P. E. (1984). Panoramic maps of cities in the United States and

Canada: a checklist of maps in the collections of the Library of Congress, Geography and

Map Division. Hell, B. (2001). Catalogue for the exhibition Mountains All Round: Folding Panoramas or the

Quest to See All. Innsbruck: Alpenverein Museum. Hite, M. (2014). Shaded relief with BlenderGIS. [Online]. https://wanderingcartographer. wordpress.com/2014/11/14/shaded-relief-with-blendergis-part-1/. [Consultato il 1 febbraio 2021]. Hite, M. (2019). Shaded relief with BlenderGIS (2020). [Online]. https://wanderingcartographer.wordpress.com/2019/11/08/making-shaded-relief-with-blendergis-2019/. [Consultato il 1 febbraio 2021] Hodgkiss, A. G. (1973). The Bildkarten of Hermann Bollmann. Cartographica: The International

Journal for Geographic Information and Geovisualization, 10(2), 133-145. Hornsby, S. J. (2017). Picturing America: The Golden Age of Pictorial Maps. University of

Chicago Press. Hsu, M. L. (1979). The cartographer’s conceptual process and thematic symbolization. The

American Cartographer, 6(2), 117-127. Huffman, D. (2014). Shaded Relief in Blender. In Presentation from ICA Mountain Cartography

Workshop (Vol. 24). Huffman, D. (2018). The Power of Appearances. Cartographic Perspectives, (90), 71-81. Huffman, D. (2019). Creating Shaded Relief in Blender. [Online]. https://somethingaboutmaps.wordpress.com/2017/11/16/creating-shaded-relief-in-blender/. [Consultato il 1 febbraio 2021]. Ilia, I., et al. (2013). Landform classification using GIS techniques. The case of Kimi municipality area, Euboea Island, Greece. Bulletin of the Geological Society of Greece, 47(1), 264-274.

Imhof, E. (1975). Positioning names on maps. The American Cartographer, 2(2), 128-144. Imhof, E. (1982). Cartographic Relief Presentation, edited and translated by HJ Steward from

Imhof s Kartographische Gelandedarstellung (Berlin 1965). International Cartographic Association. (2003). A Strategic Plan for the International

Cartographic Association 2003–2011: As Adopted by the ICA General Assembly 200308-16. Jenks, G. F. & Brown, D. A. (1966). Three-dimensional map construction. Science, 154(3751), 857-864. Jenness, J. (2006). Topographic Position Index (tpi_jen.avx) extension for ArcView 3.x, v. 1.2. Jenny, B. (2004). Bringing traditional panorama projections from the painter’s canvas to the digital realm. In Proceedings of the 4th ICA Mountain Cartography Workshop, Nuria,

Spain (pp. 151-157). Jenny, B. (2006). Design of a panorama map with plan oblique and spherical projection. In 5th

ICA Mountain Cartography Workshop, Bohinj, Slovenia (pp. 121-128). Jenny, B. & Kelso, N. V. (2007). Color design for the color vision impaired. Cartographic perspectives, (58), 61-67. Jenny, B. & Patterson, T. (2007). Introducing plan oblique relief. Cartographic perspectives, (57), 21-40. Jenny, B. & Patterson, T. (2020). Aerial perspective for shaded relief. Cartography and

Geographic Information Science, 1-8. Jenny, B., Jenny, H. & Hurni, L. (2011). Terrain generalization with multi-scale pyramids constrained by curvature. Cartography and Geographic Information Science, 38(2), 110-116. Jenny, H. (2011). Geometric design alternatives for computer-generated 3D maps inspired by hand-painted panoramas (Doctoral dissertation, ETH Zurich). Jenny, H., Jenny, B. & Hurni, L. (2010). Interactive design of 3D maps with progressive projection. The Cartographic Journal, 47(3), 211-221. Jenny, H., Jenny, B., Cartwright, W. E. & Hurni, L. (2011). Interactive local terrain deformation inspired by hand-painted panoramas. The Cartographic Journal, 48(1), 11-20. Jenny. B. (2020). Email inviata a Giulio Donati Sarti, 1 novembre. Jobst, M. & Döllner, J. (2008). Better perception of 3d-spatial relations by viewport variations.

In Sebillo, M., Vitiello, G. & Schaefer, G. (Eds.). Visual Information Systems. Web-Based

Visual Information Search and Management: 10th International Conference, VISUAL 2008, Salerno, Italy, September 11-12, 2008, Proceedings (Vol. 5188). Springer. Jobst, M. & Germanchis, T. (2007). The employment of 3D in cartography - An overview.

In Cartwright, W., et. al. (eds.) Multimedia Cartography (pp. 217-228). Springer, Berlin,

Heidelberg. Kaiser, M.K. (1991). Perceiving environmental properties from motion information: minimal conditions. In Ellis, S.R. (ed.) Pictorial communication in virtual and real environments (pp. 51-64). Kent, B. R. (2015). 3D scientific visualization with blender. San Rafael, CA: Morgan & Claypool

Publishers. Kimerling, J. (2011). DEM resolution, output map pixel density, and largest appropriate map scale. [Online]. Disponibile presso: esri.com/arcgis-blog/products/product/imagery/ dem-resolution-output-map-pixel-density-and-largest-appropriate-map-scale/. [Consultato il 18 novembre 2020]. Knust, C. & Buchroithner, M. F. (2014). Principles and terminology of true-3D geovisualisation. The Cartographic Journal, 51(3), 191-202.

Kraak, M. (1988). Computer-assisted cartographical three-dimensional imaging techniques (Ph. D. Thesis). Kraak, M. J. (1989). Computer-assisted cartographical 3D imaging techniques. Threedimensional applications in geographical information systems, 99-114. Kraak, M. J. (1993). Three-dimensional map design. The Cartographic Journal, 30(2), 188-194. Kraak, M. J. & Fabrikant, S. I. (2017). Of maps, cartography and the geography of the International

Cartographic Association. International Journal of Cartography, 3(sup1), 9-31. Kraak, M. J. & Ormeling, F. (2010). Cartography: visualization of spatial data . Guilford Press. Leonowicz, A. M., Jenny, B. & Hurni, L. (2010). Automated reduction of visual complexity in small-scale relief shading. Cartographica: The International Journal for Geographic

Information and Geovisualization, 45(1), 64-74. Library of Congress (2012). Panoramic Mapping. [Online]. Disponibile presso: https://www. loc.gov/collections/panoramic-maps/articles-and-essays/panoramic-mapping/ [Consultato il 23 settembre 2020]. Mandolesi, L. (2020). Da QGIS a Blender. [Online]. https://www.youtube.com/watch?v=XAUn c831V-Nk. [Consultato il 1 febbraio 2020]. Micalizzi, P. (2011). Parte Terza: Secoli XVII-XVIII. In Cadinu, M. (ed.) I punti di vista e le vedute di città dal XIII al XX secolo. Venezia, Fondazione Cini, Isola di San Giorgio Maggiore. Monmonier, M. (2018). How to lie with maps. University of Chicago Press. Montello, D. R. (2002). Cognitive map-design research in the twentieth century: Theoretical and empirical approaches. Cartography and Geographic Information Science, 29(3), 283-304. Moore, K. (1999). VRML and Java for Interactive 3D Cartography. In Cartwright, W., et al. (eds)

Multimedia Cartography (pp. 205-216). Springer, Berlin, Heidelberg. Neisser, U. (1978). Perceiving, anticipating, and imagining. University of Minnesota Press,

Minneapolis. Nighbert, J. S. (2000). Using remote sensing imagery to texturize layer tinted relief.

Cartographic Perspectives, (36), 93-93. Norman, D. A. & Draper, S. W. (1986). User centered system design; new perspectives on human-computer interaction. L. Erlbaum Associates Inc.. Nuti, L. (1994). The perspective plan in the sixteenth century: the invention of a representational language. The Art Bulletin, 76(1), 105-128. Nuti, L. (2010). La rappresentazione della città: ricerche, soluzioni, prototipi. Oettermann, S. & Schneider, D. L. (1997). The panorama: history of a mass medium (Vol. 2, pp. 22-32). New York: Zone Books. Oimoen, M. J. (2000, November). An effective filter for removal of production artifacts in US

Geological Survey 7.5-minute digital elevation models. In Proceedings of the Fourteenth

International Conference on Applied Geologic Remote Sensing (pp. 06-08). Orefice, G. (2011). Firenze dal pallone. In Cadinu, M. (ed.) I punti di vista e le vedute di città dal

XIII al XX secolo. Venezia, Fondazione Cini, Isola di San Giorgio Maggiore. Ormeling, F. J. (1982). International cartography. The Cartographic Journal, 19(1), 85-85. Ostellino, I. (2010). Un parco fluviale intorno a Torino: dal Fiume Po al progetto di area metropolitana “Corona Verde”. In Cavaliere, A., e Ostellino, I. (eds.), Parchi metropolitani. Pisa,

Edizioni ETS. Parco fluviale del Po Torinese (2009). Dal bilancio sociale 2005 ai progetti per il futuro. Pasewaldt, S., Semmo, A., Trapp, M. & Döllner, J. (2012). Towards comprehensible digital 3d maps (pp. 261-276).

Pasewaldt, S., Semmo, A., Trapp, M. & Döllner, J. (2014). Multi-perspective 3D panoramas.

International Journal of Geographical Information Science, 28(10), 2030-2051. Patterson, T. (1999). Designing 3D Landscapes. In Cartwright, W., et al. (eds) Multimedia

Cartography (pp. 217-229). Springer, Berlin, Heidelberg. Patterson, T. (2000). A view from on high: Heinrich Berann’s panoramas and landscape visualization techniques for the US National Park Service. Cartographic Perspectives, 36(2000), 38-65. Patterson, T. (2001a). DEM manipulation and 3-D terrain visualization: Techniques used by the US National Park Service. Cartographica: The International Journal for Geographic

Information and Geovisualization, 38(1-2), 89-101. Patterson, T. (2001b). Creating Swiss-style shaded relief in Photoshop. [Online]. Disponibile presso: shadedrelief.com/shading/Swiss.html [Consultato il 18 novembre 2020]. Patterson, T. (2002). Getting real: Reflecting on the new look of National Park Service maps.

Cartographic perspectives, (43), 43-56. Patterson, T. (2004). Resolution bumping GTOPO30 in Photoshop. [Online]. Disponibile presso: shadedrelief.com/bumping/bumping.html [Consultato il 18 novembre 2020]. Patterson, T. (2005). Looking closer: A guide to making bird’s-eye views of national park service cultural and historical sites. Cartographic Perspectives, (52), 59-75. Patterson, T. (2016). Making 3D Terrain Maps. [Online]. Disponibile presso: shadedrelief. com/3D_Terrain_Maps/ [Consultato il 18 novembre 2020]. Patterson, T. (2018). Designing 3D Terrain Maps. In Tutić, D., Patterson, T., Petrovič, D., (eds.)

Proceedings of the 11th ICA Mountain Cartography Workshop, Hvar, Croatia, pp. 65-77. Patterson, T. & Center, H. F. (2015). Relief Presentation on US National Park Service Maps.

Chapter excerpt from: Mountain Cartography, 16. Patterson, T. & Kelso, N. V. (2004). Hal Shelton revisited: Designing and producing natural-color maps with satellite land cover data. Cartographic Perspectives, (47), 28-55. Patterson, T. (2014). Terrain Texture Shader. [Online]. Disponibile presso: shadedrelief.com/ texture_shading/. [Consultato il 18 novembre 2020]. Patterson, T. (2020). A more detailed, colorful map. [Online]. Disponibile presso: shadedrelief. com/texture_shading/. [Consultato il 18 novembre 2020]. Patton, D. K., Lobben, A. K. & Pape, B. M. (2005). Mapping cities and towns in the late nineteenth and early twentieth centuries: a look at plat, Sanborn, and panoramic mapping activities in Michigan. The Michigan Historical Review, 93-122. Peterson, G. N. (2014). GIS cartography: a guide to effective map design. CRC Press. Peterson, M. P. (1994). Cognitive issues in cartographic visualization. In MacEachren, A.M. & Fraser Taylor, D.R. (eds.) Visualization in Modern Cartography (Vol. 2, pp. 27-43).

Academic Press. Petrovic, D. (2003). Cartographic design in 3D maps. In 21st International Cartographic

Conference, Durban, South Africa. Popescu, O. & Stefan-Gorin, J. (2016). The first cities of the world in a bird’s-eye view.

Urbanism. Architecture. Constructions/Urbanism. Arhitectura. Constructii, 7(3). Powell, O. (2020a). Blender Landscape Tutorial 1. [Online]. https://www.youtube.com/ watch?v=oeVUWTSkAlk&feature=emb_title. [Consultato il 1 febbraio 2021]. Powell, O. (2020b). Blender Landscape Tutorial 2 - Trees. [Online]. https://www.youtube. com/watch?v=aCKMm6qkSUE&feature=emb_title. [Consultato il 1 febbraio 2021]. Preppernau, C. A. & Jenny, B. (2015). Three-dimensional versus conventional volcanic hazard maps. Natural Hazards, 78(2), 1329-1347.

Proffitt, D.R. & Kaiser, M.K. (1991). Knowing. In Ellis, S.R. (ed.) Pictorial communication in virtual and real environments (pp. 43-46). Rees, R. (1980). Historical links between cartography and art. Geographical review, 61-78. Regione Piemonte (2020). Piano d’Area del Parco Fluviale del Po. [Online]. https://www. regione.piemonte.it/web/temi/ambiente-territorio/biodiversita-aree-naturali/parchi/piano-darea-parco-fluviale-po. [Consultato il 1 febbraio 2021]. Robinson, A. H. (1960). Elements of cartography, 2nd ed. Soil Science, 90(2), 147. Robinson, A. H. & Petchenik, B. B. (1976). The nature of maps: Essays toward understanding maps and mapping (pp. 16-17). Chicago: University of Chicago Press. Robinson, A. H. (1985). Elements of Cartography, 5th ed. New York: Wiley. Robinson, A. H., Morrison, J. L., Muehrcke, P. C., Kimerling, A. & Guptill, S. C. (1995). Elements of cartography (No. 526 E4). Roth, R. E. (2017). Visual variables. International Encyclopedia of Geography: People, the

Earth. Environment and Technology. John Wiley & Sons, Ltd, Oxford, UK. Russell, G. & Miles, R. (1991). Volumetric visualization of 3D data. In Ellis, S.R. (ed.) Pictorial communication in virtual and real environments (pp. 140-146). Schobesberger, D. (2007). Evaluating the Effectiveness of 2D vs. 3D Trailhead Maps at Zion

National Park, Utah. Schobesberger, D. & Patterson, T. (2007). Evaluating the effectiveness of 2d vs. 3d trailhead maps. In Mountain Mapping and Visualisation: Proceedings of the 6th ICA Mountain

Cartography Workshop (pp. 201-205). Schulz, J. (1978). Jacopo de’Barbari’s view of Venice: Map making, city views, and moralized geography before the year 1500. The Art Bulletin, 60(3), 425-474. Seipel, S. (2013). Evaluating 2D and 3D geovisualisations for basic spatial assessment.

Behaviour & Information Technology, 32(8), 845-858. Siddiqui, Y. (2011). Automating the correction of USGS digital elevation models using fourier analysis and the mean profile filter. In ASPRS 2011 Annual Conference Milwaukee,

Wisconsin May (pp. 1-5). SiTI (2015). Biosphere Reserve Nomination Form. Slocum, T. A., McMaster, R. M., Kessler, F. C., Howard, H. H. & McMaster, R. B. (2013). Thematic

Cartography and Geographic Visualization. (3rd ed.) Prentice Hall. Snyder, J. P. (1981). The perspective map projection of the Earth. The American Cartographer, 8(2), 149-160. Snyder, J. P. & Voxland, P. M. (1989). An album of map projections (No. 1453). US Government

Printing Office. Sony, (2013). Focal length, angle of view and perspective. [Online]. Disponibile presso: www.sony.com/electronics/focal-length-angle-of-view-perspective [Consultato il 18 novembre 2020]. Stadler, H. (2013). Alpi. [Online]. in: Dizionario storico della Svizzera (DSS) Disponibile presso: https://hls-dhs-dss.ch/it/articles/008569/2013-07-17/ [Consultato il 23 settembre 2020]. Stroffolino, D. (2012). L’Europa “a volo d’uccello”: dal Cinquecento ad Alfred Guesdon. Ed.

Scientifiche Italiane. Tagil, S. & Jenness, J. (2008). GIS-based automated landform classification and topographic, landcover and geologic attributes of landforms around the Yazoren Polje, Turkey. Terribilini, A. (2001). Entwicklung von Arbeitsabläufen zur automatischen Erstellung von interaktiven, vektorbasierten topographischen 3D-Karten (Doctoral dissertation, ETH

Zurich).

Turnbull, D. (1996). Cartography and science in early modern Europe: Mapping the construction of knowledge spaces. Imago Mundi, 48(1), 5-24. Tyner, J. A. (2010). Principles of Map Design. New York. UNESCO (2021). MAB. [Online]. http://www.unesco.it/it/ItaliaNellUnesco/Detail/186. [Consultato il 1 febbraio 2021]. Verhoeven, G. (2018). Resolving some spatial resolution issues: part 1: between line pairs and sampling distance. AARGNEWS, (57), 25-34. W3C (2008). Web Content Accessibility Guidelines (WCAG) 2.0. [Online]. Disponibile presso: w3.org/TR/WCAG20/. [Consultato il 18 novembre 2020]. Ward, K. (1979). Cartography in the Round—The Orthographic Projection. The Cartographic

Journal, 16(2), 104-116. Warnaby, G. (2012). ‘Spatial stories’: Maps and the marketing of the urban experience. In

Mapping Cultures (pp. 201-215). Palgrave Macmillan, London. Weiss, A. (2001). Topographic positions and landforms analysis (conference poster). ESRI

International User Conference. San Diego, CA; 9-13. Wichmann, F. A., Sharpe, L. T. & Gegenfurtner, K. R. (2002). The contributions of color to recognition memory for natural scenes. Journal of Experimental Psychology: Learning,

Memory, and Cognition, 28(3), 509. Wood, J., Kirschenbauer, S., Döllner, J., Lopes, A. & Bodum, L. (2005). Using 3D in visualization. In Dykes, J., MacEachren, A. M. & Kraak, M. J. (eds.) Exploring geovisualization (pp. 293-312). Elsevier. Wood, M. (2001). The mountain panorama and its significance in the Scottish context. Cartographica: The International Journal for Geographic Information and

Geovisualization, 38(1-2), 103-118. Wood, M. & McCrorie, I. (1993). Panorama maps: an old magic on a new digital plane. In

Mesenburg P. (ed.) Proceedings of the 16th International cartographic Conference, Koln,

Germany (pp. 103-113). Wood, M., Pearson, D., Calder, C. (2007). Comparing the effects of different 3D representations on human wayfinding. In Gartner G., et al. (eds) Location Based Services and

TeleCartography (pp. 345-356). Springer, Berlin, Heidelberg. Wood, M., Pearson, D. G., Calder, C. & Miller, D. (2005). The comparative effects of 2D and 3D representations on human wayfinding. In 22nd International Cartographic Conference,

A Coruna, pp. 9-16. WTTC (2020). Economic Impact Reports. [Online]. https://wttc.org/Research/Economic-

Impact. [Consultato il 1 febbraio 2021].

Ringraziamenti

Desidero ringraziare tutte le persone che hanno contribuito alla mia formazione, personale e professionale. Vorrei ringraziare innanzitutto il Professore Gabriele Garnero per aver creduto in questo progetto, per i suoi preziosi consigli, il suo continuo supporto e la sua pazienza durante la realizzazione dell’intera ricerca. Un grazie speciale va ai miei amici di una vita e a quelli che ho incontrato lungo il percorso accademico. Se state leggendo questi ringraziamenti significa che avete fatto parte del mio viaggio e colgo questa occasione per dirvi quanto mi senta fortunato ad aver condiviso del tempo con voi. Infine voglio dedicare questo lavoro alla mia famiglia, fonte di continuo sostegno. Grazie per avermi insegnato a vedere sempre il lato positivo della vita.

Giulio

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