{"id":{"repo_id":"vt","oai_identifier":"oai:vtechworks.lib.vt.edu:10919/22016"},"canonical_url":"https://search.dev.ndltd.org/etd/vt/oai:vtechworks.lib.vt.edu:10919/22016","repository":{"repo_id":"vt","name":"Virginia Tech","base_url":"https://vtechworks.lib.vt.edu/oai/request"},"display":{"title":"Spatial Reading System for Individuals with Blindness","abstract":"In this research we introduce a novel reading system that enables Individuals with Blindness<br />or Severe Visual Impairment (IBSVI) to have equivalent spatial reading experience to their<br />sighted counterparts, in terms of being able to engage in different reading strategies e.g.<br />scanning, skimming, and active reading. IBSVI are enabled to read in a self-paced manner<br />with spatial access to the original layout of any electronic text document. This system<br />renders text on iPad-type devices, and reads aloud each word touched by the user\\'s finger.<br />The user could move her finger smoothly along the lines to read continuously with the<br />support of tactile landmarks. A tactile overlay on the iPad screen helps IBSVI to navigate<br />a page, furnishing a framework of tactile landmarks to give IBSVI a sense of place on the<br />page. As the user moves her finger along the tangible pattern of the overlay, the text on the<br />screen that is touched is rendered audibly to speech. The system supports IBSVI to develop<br />and maintain a cognitive map of the structure and the layout of the page. IBSVI are enabled<br />to fuse audio, tactile landmarks, and spatial information in order to read.<br />The system\\'s initial design is founded on a theoretical hypothesis. A participatory design<br />approach with IBSVI consultants was then applied to refine the initial design. The re\"fined<br />design was tested in a usability study, which revealed two major issues with the tested<br />design. These issues are related to the lack of instant feedback from the system (psycho-<br />motorical problem), and the lack of conveying the semantic level of the page structure.<br />We adapted the reader design to solve the usability problems. The improved design was<br />tested in an experience sampling study. The results showed a leap in the system usability.<br />IBSVI participants successfully self-paced read spatial text. Further reading support was<br />then added to the system to improve the user experience while reading and interacting with<br />the system. We tested the latest design of the reader system with respect to its featured<br />function of enabling self-paced reading and re-finding information. A decomposition study<br />was conducted to evaluate the main components of the system; the tactile overlay, and the<br />intelligent active reading support. The results showed that both components are required<br />to achieve the best performance in terms of efficiency, effectiveness, and spatial perception.<br />We conducted an evaluation study to compare our reader system to the state-of-the-art<br />iBook with VoiceOver. The results show that our reader system is more effective than iBook<br />with VoiceOver in finding previously read information and in estimating the layout of the<br />page, implying that IBSVI were able to construct a cognitive map for the pages they read,<br />and perform advanced reading strategies. Our goal is to to enable IBSVI to access digital<br />reading materials effectively, so that they may have equal learning opportunities as their<br />sighted counterparts.","abstract_html":"In this research we introduce a novel reading system that enables Individuals with Blindness&lt;br /&gt;or Severe Visual Impairment (IBSVI) to have equivalent spatial reading experience to their&lt;br /&gt;sighted counterparts, in terms of being able to engage in different reading strategies e.g.&lt;br /&gt;scanning, skimming, and active reading. IBSVI are enabled to read in a self-paced manner&lt;br /&gt;with spatial access to the original layout of any electronic text document. This system&lt;br /&gt;renders text on iPad-type devices, and reads aloud each word touched by the user\\&#x27;s finger.&lt;br /&gt;The user could move her finger smoothly along the lines to read continuously with the&lt;br /&gt;support of tactile landmarks. A tactile overlay on the iPad screen helps IBSVI to navigate&lt;br /&gt;a page, furnishing a framework of tactile landmarks to give IBSVI a sense of place on the&lt;br /&gt;page. As the user moves her finger along the tangible pattern of the overlay, the text on the&lt;br /&gt;screen that is touched is rendered audibly to speech. The system supports IBSVI to develop&lt;br /&gt;and maintain a cognitive map of the structure and the layout of the page. IBSVI are enabled&lt;br /&gt;to fuse audio, tactile landmarks, and spatial information in order to read.&lt;br /&gt;The system\\&#x27;s initial design is founded on a theoretical hypothesis. A participatory design&lt;br /&gt;approach with IBSVI consultants was then applied to refine the initial design. The re&quot;fined&lt;br /&gt;design was tested in a usability study, which revealed two major issues with the tested&lt;br /&gt;design. These issues are related to the lack of instant feedback from the system (psycho-&lt;br /&gt;motorical problem), and the lack of conveying the semantic level of the page structure.&lt;br /&gt;We adapted the reader design to solve the usability problems. The improved design was&lt;br /&gt;tested in an experience sampling study. The results showed a leap in the system usability.&lt;br /&gt;IBSVI participants successfully self-paced read spatial text. Further reading support was&lt;br /&gt;then added to the system to improve the user experience while reading and interacting with&lt;br /&gt;the system. We tested the latest design of the reader system with respect to its featured&lt;br /&gt;function of enabling self-paced reading and re-finding information. A decomposition study&lt;br /&gt;was conducted to evaluate the main components of the system; the tactile overlay, and the&lt;br /&gt;intelligent active reading support. The results showed that both components are required&lt;br /&gt;to achieve the best performance in terms of efficiency, effectiveness, and spatial perception.&lt;br /&gt;We conducted an evaluation study to compare our reader system to the state-of-the-art&lt;br /&gt;iBook with VoiceOver. The results show that our reader system is more effective than iBook&lt;br /&gt;with VoiceOver in finding previously read information and in estimating the layout of the&lt;br /&gt;page, implying that IBSVI were able to construct a cognitive map for the pages they read,&lt;br /&gt;and perform advanced reading strategies. Our goal is to to enable IBSVI to access digital&lt;br /&gt;reading materials effectively, so that they may have equal learning opportunities as their&lt;br /&gt;sighted counterparts.","abstract_has_math":false,"creators":["Elglaly, Yasmine Nader Mohamed"],"institution":"Virginia Tech","degree_name":"Ph. D.","degree_level":"doctoral","degree_discipline":"Computer Science and Applications","degree_department":"Computer Science","school":null,"contributors":[],"advisors":[],"committee_chairs":["Quek, Francis K. H."],"committee_members":["Ehrich, Roger W.","Gracanin, Denis","Smith-Jackson, Tonya L.","Rizk, Mohamed Rizk Mohamed"],"year":2013,"date_issued":"2013-05-06","date_published":"2013-05-06","updated_at":"2026-07-22T22:18:55Z","subjects":["Active reading","Audio rendering","Spatial cognition","Multimodality","Blindness","Touch devices","Assistive technology"],"languages":[],"rights":["In Copyright"],"rights_urls":["http://rightsstatements.org/vocab/InC/1.0/"],"identifier_entries":[{"key":"dc:identifier.other","label":"Dc Identifier Other","values":["vt_gsexam:479"],"render_values":[{"text":"vt_gsexam:479","href":null,"code":true}]}]},"links":{"outbound_url":"http://hdl.handle.net/10919/22016","outbound_label":"Handle","outbound_source":"dc:identifier.uri"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor.committeechair","label":"Committee Chair","values":["Quek, Francis K. 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IBSVI are enabled to read in a self-paced manner<br />with spatial access to the original layout of any electronic text document. This system<br />renders text on iPad-type devices, and reads aloud each word touched by the user\\'s finger.<br />The user could move her finger smoothly along the lines to read continuously with the<br />support of tactile landmarks. A tactile overlay on the iPad screen helps IBSVI to navigate<br />a page, furnishing a framework of tactile landmarks to give IBSVI a sense of place on the<br />page. As the user moves her finger along the tangible pattern of the overlay, the text on the<br />screen that is touched is rendered audibly to speech. The system supports IBSVI to develop<br />and maintain a cognitive map of the structure and the layout of the page. IBSVI are enabled<br />to fuse audio, tactile landmarks, and spatial information in order to read.<br />The system\\'s initial design is founded on a theoretical hypothesis. A participatory design<br />approach with IBSVI consultants was then applied to refine the initial design. The re\"fined<br />design was tested in a usability study, which revealed two major issues with the tested<br />design. These issues are related to the lack of instant feedback from the system (psycho-<br />motorical problem), and the lack of conveying the semantic level of the page structure.<br />We adapted the reader design to solve the usability problems. The improved design was<br />tested in an experience sampling study. The results showed a leap in the system usability.<br />IBSVI participants successfully self-paced read spatial text. Further reading support was<br />then added to the system to improve the user experience while reading and interacting with<br />the system. We tested the latest design of the reader system with respect to its featured<br />function of enabling self-paced reading and re-finding information. A decomposition study<br />was conducted to evaluate the main components of the system; the tactile overlay, and the<br />intelligent active reading support. The results showed that both components are required<br />to achieve the best performance in terms of efficiency, effectiveness, and spatial perception.<br />We conducted an evaluation study to compare our reader system to the state-of-the-art<br />iBook with VoiceOver. The results show that our reader system is more effective than iBook<br />with VoiceOver in finding previously read information and in estimating the layout of the<br />page, implying that IBSVI were able to construct a cognitive map for the pages they read,<br />and perform advanced reading strategies. Our goal is to to enable IBSVI to access digital<br />reading materials effectively, so that they may have equal learning opportunities as their<br />sighted counterparts."]},{"key":"dc:description.degree","label":"Dc Description Degree","values":["Ph. D."]},{"key":"dc:format.medium","label":"Dc Format Medium","values":["ETD"]},{"key":"dc:title","label":"Title","values":["Spatial Reading System for Individuals with Blindness"]}]}],"canonical_facts":{"dc:contributor.committeechair":["Quek, Francis K. H."],"dc:contributor.committeemember":["Ehrich, Roger W.","Gracanin, Denis","Smith-Jackson, Tonya L.","Rizk, Mohamed Rizk Mohamed"],"dc:contributor.department":["Computer Science"],"dc:creator":["Elglaly, Yasmine Nader Mohamed"],"dc:date.accessioned":["2013-05-07T08:00:25Z"],"dc:date.available":["2013-05-07T08:00:25Z"],"dc:date.issued":["2013-05-06"],"dc:description.abstract":["In this research we introduce a novel reading system that enables Individuals with Blindness<br />or Severe Visual Impairment (IBSVI) to have equivalent spatial reading experience to their<br />sighted counterparts, in terms of being able to engage in different reading strategies e.g.<br />scanning, skimming, and active reading. IBSVI are enabled to read in a self-paced manner<br />with spatial access to the original layout of any electronic text document. This system<br />renders text on iPad-type devices, and reads aloud each word touched by the user\\'s finger.<br />The user could move her finger smoothly along the lines to read continuously with the<br />support of tactile landmarks. A tactile overlay on the iPad screen helps IBSVI to navigate<br />a page, furnishing a framework of tactile landmarks to give IBSVI a sense of place on the<br />page. As the user moves her finger along the tangible pattern of the overlay, the text on the<br />screen that is touched is rendered audibly to speech. The system supports IBSVI to develop<br />and maintain a cognitive map of the structure and the layout of the page. IBSVI are enabled<br />to fuse audio, tactile landmarks, and spatial information in order to read.<br />The system\\'s initial design is founded on a theoretical hypothesis. A participatory design<br />approach with IBSVI consultants was then applied to refine the initial design. The re\"fined<br />design was tested in a usability study, which revealed two major issues with the tested<br />design. These issues are related to the lack of instant feedback from the system (psycho-<br />motorical problem), and the lack of conveying the semantic level of the page structure.<br />We adapted the reader design to solve the usability problems. The improved design was<br />tested in an experience sampling study. The results showed a leap in the system usability.<br />IBSVI participants successfully self-paced read spatial text. Further reading support was<br />then added to the system to improve the user experience while reading and interacting with<br />the system. We tested the latest design of the reader system with respect to its featured<br />function of enabling self-paced reading and re-finding information. A decomposition study<br />was conducted to evaluate the main components of the system; the tactile overlay, and the<br />intelligent active reading support. The results showed that both components are required<br />to achieve the best performance in terms of efficiency, effectiveness, and spatial perception.<br />We conducted an evaluation study to compare our reader system to the state-of-the-art<br />iBook with VoiceOver. The results show that our reader system is more effective than iBook<br />with VoiceOver in finding previously read information and in estimating the layout of the<br />page, implying that IBSVI were able to construct a cognitive map for the pages they read,<br />and perform advanced reading strategies. Our goal is to to enable IBSVI to access digital<br />reading materials effectively, so that they may have equal learning opportunities as their<br />sighted counterparts."],"dc:description.degree":["Ph. D."],"dc:format.medium":["ETD"],"dc:identifier.other":["vt_gsexam:479"],"dc:identifier.uri":["http://hdl.handle.net/10919/22016"],"dc:publisher":["Virginia Tech"],"dc:rights":["In Copyright"],"dc:rights.uri":["http://rightsstatements.org/vocab/InC/1.0/"],"dc:subject":["Active reading","Audio rendering","Spatial cognition","Multimodality","Blindness","Touch devices","Assistive technology"],"dc:title":["Spatial Reading System for Individuals with Blindness"],"dc:type":["Dissertation"],"thesis:degree_discipline":["Computer Science and Applications"],"thesis:degree_level":["doctoral"],"thesis:degree_name":["Ph. D."],"thesis:institution_name":["Virginia Polytechnic Institute and State University"]},"updated_at":"2026-07-22T22:18:55Z"}