- -

Improving Tactile Map Usability through 3D Printing Techniques: An Experiment with New Tactile Symbols

RiuNet: Repositorio Institucional de la Universidad Politécnica de Valencia

Compartir/Enviar a

Citas

Estadísticas

  • Estadisticas de Uso

Improving Tactile Map Usability through 3D Printing Techniques: An Experiment with New Tactile Symbols

Mostrar el registro completo del ítem

Gual Ortí, J.; Puyuelo Cazorla, M.; Lloveras Macia, J. (2013). Improving Tactile Map Usability through 3D Printing Techniques: An Experiment with New Tactile Symbols. Cartographic Journal. 52(1):51-57. https://doi.org/10.1179/1743277413Y.0000000046

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/63827

Ficheros en el ítem

Metadatos del ítem

Título: Improving Tactile Map Usability through 3D Printing Techniques: An Experiment with New Tactile Symbols
Autor: Gual Ortí, Jaume Puyuelo Cazorla, Marina Lloveras Macia, Joaquim
Entidad UPV: Universitat Politècnica de València. Departamento de Expresión Gráfica Arquitectónica - Departament d'Expressió Gràfica Arquitectònica
Fecha difusión:
Resumen:
Subject Area: Social Sciences Subject Category: Geography, Planning and Development [Journal's SJR quartile for this category, where Q1 means highest values and Q4 lowest values] Publisher: Maney Publishing. Publication ...[+]
Palabras clave: Tactile symbol , Visual impairment , Inclusive design , 3D printing , Tactile map I SNIP2: 0.68
Derechos de uso: Cerrado
Fuente:
Cartographic Journal. (issn: 1743-2774 ) (eissn: 1460-2202 )
DOI: 10.1179/1743277413Y.0000000046
Editorial:
Maney Publishing
Versión del editor: http://dx.doi.org/10.1179/1743277413Y.0000000046
Código del Proyecto:
info:eu-repo/grantAgreement/MICINN//DPI2008-03981/ES/ESTUDIO Y DISEÑO DE ELEMENTOS DE ORIENTACION, SOPORTES DE COMUNICACION Y OTROS ACCESORIOS PARA LA MEJORA DE LA ACCESIBILIDAD EN DISTINTOS AMBITOS DE LA INTERPRETACION DEL PATRIMONIO NATURAL Y%2FO CONST/
info:eu-repo/grantAgreement/UJI//E-2010-32/
Agradecimientos:
The work reported here is part of the research project 'Estudio y diseno de elementos de orientacion, soportes de comunicacion y otros accesorios para la mejora de la accesibilidad en distintos ambitos de interpretacion ...[+]
Tipo: Artículo

References

Chua, C. K., Leong, K. F., & Lim, C. S. (2003). Rapid Prototyping. doi:10.1142/5064

Goodrick B. (1987). A map user guide to reading tactual and low vision maps. Division of National Mapping, Department of Resources and Energy. Canberra, Australia.

Gual J, Puyuelo M and Lloveras J. (2011). ‘Three-dimensional tactile symbols. Relief maps for the visually impaired’, inDiversity and Unity: Proceedings of IASDR 2011, the 4th World Conference on Design Research, International Association of Societies of Design Research (IASDR) and Delft University of Technology, Faculty of Industrial Design Engineering, Delft, The Netherlands, pp. D05-1-D05-4 [+]
Chua, C. K., Leong, K. F., & Lim, C. S. (2003). Rapid Prototyping. doi:10.1142/5064

Goodrick B. (1987). A map user guide to reading tactual and low vision maps. Division of National Mapping, Department of Resources and Energy. Canberra, Australia.

Gual J, Puyuelo M and Lloveras J. (2011). ‘Three-dimensional tactile symbols. Relief maps for the visually impaired’, inDiversity and Unity: Proceedings of IASDR 2011, the 4th World Conference on Design Research, International Association of Societies of Design Research (IASDR) and Delft University of Technology, Faculty of Industrial Design Engineering, Delft, The Netherlands, pp. D05-1-D05-4

Gual J, Puyuelo M and Lloveras J. (2012). ‘Analysis of Volumetric Tactile Symbols Produced with 3D Printing’, inACHI 2012, The Fifth International Conference on Advances in Computer–Human Interactions, pp. 60–67, Valencia, Jan 30–Feb 4.

Nolan CY and Morris JE. (1971). Improvement of tactual symbols for blind children. Final Report. Department of Health, Education, and Welfare, US Office of Education, Bureau of Education for the Handicapped and American Printing House for the Blind, Inc. Lousville, KY, USA.

Jehoel, S., McCallum, D., Rowell, J., & Ungar, S. (2006). An empirical approach on the design of tactile maps and diagrams: The cognitive tactualization approach. British Journal of Visual Impairment, 24(2), 67-75. doi:10.1177/0264619606063402

Jehoel S, Dinar S, McCallum D, Rowell J and Ungar S. (2005). ‘A scientific Approach to Tactile Map Design: Minimum Elevation of Tactile Map Symbols’, inXXII International Cartographic Conference, A Coruña, Jul 9–16.

Keates, S., & Clarkson, J. (2004). Countering design exclusion. doi:10.1007/978-1-4471-0013-3

McCallum, D., Ungar, S., & Jehoel, S. (2006). An evaluation of tactile directional symbols. British Journal of Visual Impairment, 24(2), 83-92. doi:10.1177/0264619606063406

Rener, R. (1993). Tactile cartography: another view of tactile cartographic symbols. The Cartographic Journal, 30(2), 195-198. doi:10.1179/000870493787860139

Rowell, J., & Ongar, S. (2003). The world of touch: an international survey of tactile maps. Part 2: design. British Journal of Visual Impairment, 21(3), 105-110. doi:10.1177/026461960302100304

Rowell, J., & Ungar, S. (2003). A Taxonomy for Tactile Symbols: Creating a Useable Database for Tactile Map Designers. The Cartographic Journal, 40(3), 273-276. doi:10.1179/000870403225012998

Rowell, J., & Ungar, S. (2003). The world of touch: an international survey of tactile maps. Part 1: production. British Journal of Visual Impairment, 21(3), 98-104. doi:10.1177/026461960302100303

Trevelyan S. (1987). Development and assessment of a tactile mobility map for the visually impaired [microform]. National Library of Canada, Ottawa, Ont., Canada.

Zhang G, Richardson M and Surana R (1997). Economic Evaluation of Rapid Prototyping in the Development of New Products. Technical Research Report. Institute for Systems Research, University of Maryland, USA.

[-]

recommendations

 

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro completo del ítem