The Experts below are selected from a list of 6630 Experts worldwide ranked by ideXlab platform

Nadir Weibel - One of the best experts on this subject based on the ideXlab platform.

  • chroma a wearable augmented reality solution for Color Blindness
    Ubiquitous Computing, 2014
    Co-Authors: Enrico Tanuwidjaja, Derek Huynh, Kirsten Koa, Calvin Nguyen, Churen Shao, Patrick Torbett, Colleen Emmenegger, Nadir Weibel
    Abstract:

    Color Blindness is a highly prevalent vision impairment that inhibits people's ability to understand Colors. Although classified as a mild disability, Color Blindness has important effects on the daily activity of people, preventing them from performing their tasks in the most natural and effective ways. In order to address this issue we developed Chroma, a wearable augmented-reality system based on Google Glass that allows users to see a filtered image of the current scene in real-time. Chroma automatically adapts the scene-view based on the type of Color Blindness, and features dedicated algorithms for Color saliency. Based on interviews with 23 people with Color Blindness we implemented four modes to help Colorblind individuals distinguish Colors they usually can't see. Although Glass still has important limitations, initial tests of Chroma in the lab show that Colorblind individuals using Chroma can improve their Color recognition in a variety of real-world activities. The deployment of Chroma on a wearable augmented-reality device makes it an effective digital aid with the potential to augment everyday activities, effectively providing access to different Color dimensions for Colorblind people.

  • UbiComp - Chroma: a wearable augmented-reality solution for Color Blindness
    Proceedings of the 2014 ACM International Joint Conference on Pervasive and Ubiquitous Computing, 2014
    Co-Authors: Enrico Tanuwidjaja, Derek Huynh, Kirsten Koa, Calvin Nguyen, Churen Shao, Patrick Torbett, Colleen Emmenegger, Nadir Weibel
    Abstract:

    Color Blindness is a highly prevalent vision impairment that inhibits people's ability to understand Colors. Although classified as a mild disability, Color Blindness has important effects on the daily activity of people, preventing them from performing their tasks in the most natural and effective ways. In order to address this issue we developed Chroma, a wearable augmented-reality system based on Google Glass that allows users to see a filtered image of the current scene in real-time. Chroma automatically adapts the scene-view based on the type of Color Blindness, and features dedicated algorithms for Color saliency. Based on interviews with 23 people with Color Blindness we implemented four modes to help Colorblind individuals distinguish Colors they usually can't see. Although Glass still has important limitations, initial tests of Chroma in the lab show that Colorblind individuals using Chroma can improve their Color recognition in a variety of real-world activities. The deployment of Chroma on a wearable augmented-reality device makes it an effective digital aid with the potential to augment everyday activities, effectively providing access to different Color dimensions for Colorblind people.

Enrico Tanuwidjaja - One of the best experts on this subject based on the ideXlab platform.

  • chroma a wearable augmented reality solution for Color Blindness
    Ubiquitous Computing, 2014
    Co-Authors: Enrico Tanuwidjaja, Derek Huynh, Kirsten Koa, Calvin Nguyen, Churen Shao, Patrick Torbett, Colleen Emmenegger, Nadir Weibel
    Abstract:

    Color Blindness is a highly prevalent vision impairment that inhibits people's ability to understand Colors. Although classified as a mild disability, Color Blindness has important effects on the daily activity of people, preventing them from performing their tasks in the most natural and effective ways. In order to address this issue we developed Chroma, a wearable augmented-reality system based on Google Glass that allows users to see a filtered image of the current scene in real-time. Chroma automatically adapts the scene-view based on the type of Color Blindness, and features dedicated algorithms for Color saliency. Based on interviews with 23 people with Color Blindness we implemented four modes to help Colorblind individuals distinguish Colors they usually can't see. Although Glass still has important limitations, initial tests of Chroma in the lab show that Colorblind individuals using Chroma can improve their Color recognition in a variety of real-world activities. The deployment of Chroma on a wearable augmented-reality device makes it an effective digital aid with the potential to augment everyday activities, effectively providing access to different Color dimensions for Colorblind people.

  • UbiComp - Chroma: a wearable augmented-reality solution for Color Blindness
    Proceedings of the 2014 ACM International Joint Conference on Pervasive and Ubiquitous Computing, 2014
    Co-Authors: Enrico Tanuwidjaja, Derek Huynh, Kirsten Koa, Calvin Nguyen, Churen Shao, Patrick Torbett, Colleen Emmenegger, Nadir Weibel
    Abstract:

    Color Blindness is a highly prevalent vision impairment that inhibits people's ability to understand Colors. Although classified as a mild disability, Color Blindness has important effects on the daily activity of people, preventing them from performing their tasks in the most natural and effective ways. In order to address this issue we developed Chroma, a wearable augmented-reality system based on Google Glass that allows users to see a filtered image of the current scene in real-time. Chroma automatically adapts the scene-view based on the type of Color Blindness, and features dedicated algorithms for Color saliency. Based on interviews with 23 people with Color Blindness we implemented four modes to help Colorblind individuals distinguish Colors they usually can't see. Although Glass still has important limitations, initial tests of Chroma in the lab show that Colorblind individuals using Chroma can improve their Color recognition in a variety of real-world activities. The deployment of Chroma on a wearable augmented-reality device makes it an effective digital aid with the potential to augment everyday activities, effectively providing access to different Color dimensions for Colorblind people.

Derek Huynh - One of the best experts on this subject based on the ideXlab platform.

  • chroma a wearable augmented reality solution for Color Blindness
    Ubiquitous Computing, 2014
    Co-Authors: Enrico Tanuwidjaja, Derek Huynh, Kirsten Koa, Calvin Nguyen, Churen Shao, Patrick Torbett, Colleen Emmenegger, Nadir Weibel
    Abstract:

    Color Blindness is a highly prevalent vision impairment that inhibits people's ability to understand Colors. Although classified as a mild disability, Color Blindness has important effects on the daily activity of people, preventing them from performing their tasks in the most natural and effective ways. In order to address this issue we developed Chroma, a wearable augmented-reality system based on Google Glass that allows users to see a filtered image of the current scene in real-time. Chroma automatically adapts the scene-view based on the type of Color Blindness, and features dedicated algorithms for Color saliency. Based on interviews with 23 people with Color Blindness we implemented four modes to help Colorblind individuals distinguish Colors they usually can't see. Although Glass still has important limitations, initial tests of Chroma in the lab show that Colorblind individuals using Chroma can improve their Color recognition in a variety of real-world activities. The deployment of Chroma on a wearable augmented-reality device makes it an effective digital aid with the potential to augment everyday activities, effectively providing access to different Color dimensions for Colorblind people.

  • UbiComp - Chroma: a wearable augmented-reality solution for Color Blindness
    Proceedings of the 2014 ACM International Joint Conference on Pervasive and Ubiquitous Computing, 2014
    Co-Authors: Enrico Tanuwidjaja, Derek Huynh, Kirsten Koa, Calvin Nguyen, Churen Shao, Patrick Torbett, Colleen Emmenegger, Nadir Weibel
    Abstract:

    Color Blindness is a highly prevalent vision impairment that inhibits people's ability to understand Colors. Although classified as a mild disability, Color Blindness has important effects on the daily activity of people, preventing them from performing their tasks in the most natural and effective ways. In order to address this issue we developed Chroma, a wearable augmented-reality system based on Google Glass that allows users to see a filtered image of the current scene in real-time. Chroma automatically adapts the scene-view based on the type of Color Blindness, and features dedicated algorithms for Color saliency. Based on interviews with 23 people with Color Blindness we implemented four modes to help Colorblind individuals distinguish Colors they usually can't see. Although Glass still has important limitations, initial tests of Chroma in the lab show that Colorblind individuals using Chroma can improve their Color recognition in a variety of real-world activities. The deployment of Chroma on a wearable augmented-reality device makes it an effective digital aid with the potential to augment everyday activities, effectively providing access to different Color dimensions for Colorblind people.

Colleen Emmenegger - One of the best experts on this subject based on the ideXlab platform.

  • chroma a wearable augmented reality solution for Color Blindness
    Ubiquitous Computing, 2014
    Co-Authors: Enrico Tanuwidjaja, Derek Huynh, Kirsten Koa, Calvin Nguyen, Churen Shao, Patrick Torbett, Colleen Emmenegger, Nadir Weibel
    Abstract:

    Color Blindness is a highly prevalent vision impairment that inhibits people's ability to understand Colors. Although classified as a mild disability, Color Blindness has important effects on the daily activity of people, preventing them from performing their tasks in the most natural and effective ways. In order to address this issue we developed Chroma, a wearable augmented-reality system based on Google Glass that allows users to see a filtered image of the current scene in real-time. Chroma automatically adapts the scene-view based on the type of Color Blindness, and features dedicated algorithms for Color saliency. Based on interviews with 23 people with Color Blindness we implemented four modes to help Colorblind individuals distinguish Colors they usually can't see. Although Glass still has important limitations, initial tests of Chroma in the lab show that Colorblind individuals using Chroma can improve their Color recognition in a variety of real-world activities. The deployment of Chroma on a wearable augmented-reality device makes it an effective digital aid with the potential to augment everyday activities, effectively providing access to different Color dimensions for Colorblind people.

  • UbiComp - Chroma: a wearable augmented-reality solution for Color Blindness
    Proceedings of the 2014 ACM International Joint Conference on Pervasive and Ubiquitous Computing, 2014
    Co-Authors: Enrico Tanuwidjaja, Derek Huynh, Kirsten Koa, Calvin Nguyen, Churen Shao, Patrick Torbett, Colleen Emmenegger, Nadir Weibel
    Abstract:

    Color Blindness is a highly prevalent vision impairment that inhibits people's ability to understand Colors. Although classified as a mild disability, Color Blindness has important effects on the daily activity of people, preventing them from performing their tasks in the most natural and effective ways. In order to address this issue we developed Chroma, a wearable augmented-reality system based on Google Glass that allows users to see a filtered image of the current scene in real-time. Chroma automatically adapts the scene-view based on the type of Color Blindness, and features dedicated algorithms for Color saliency. Based on interviews with 23 people with Color Blindness we implemented four modes to help Colorblind individuals distinguish Colors they usually can't see. Although Glass still has important limitations, initial tests of Chroma in the lab show that Colorblind individuals using Chroma can improve their Color recognition in a variety of real-world activities. The deployment of Chroma on a wearable augmented-reality device makes it an effective digital aid with the potential to augment everyday activities, effectively providing access to different Color dimensions for Colorblind people.

Patrick Torbett - One of the best experts on this subject based on the ideXlab platform.

  • chroma a wearable augmented reality solution for Color Blindness
    Ubiquitous Computing, 2014
    Co-Authors: Enrico Tanuwidjaja, Derek Huynh, Kirsten Koa, Calvin Nguyen, Churen Shao, Patrick Torbett, Colleen Emmenegger, Nadir Weibel
    Abstract:

    Color Blindness is a highly prevalent vision impairment that inhibits people's ability to understand Colors. Although classified as a mild disability, Color Blindness has important effects on the daily activity of people, preventing them from performing their tasks in the most natural and effective ways. In order to address this issue we developed Chroma, a wearable augmented-reality system based on Google Glass that allows users to see a filtered image of the current scene in real-time. Chroma automatically adapts the scene-view based on the type of Color Blindness, and features dedicated algorithms for Color saliency. Based on interviews with 23 people with Color Blindness we implemented four modes to help Colorblind individuals distinguish Colors they usually can't see. Although Glass still has important limitations, initial tests of Chroma in the lab show that Colorblind individuals using Chroma can improve their Color recognition in a variety of real-world activities. The deployment of Chroma on a wearable augmented-reality device makes it an effective digital aid with the potential to augment everyday activities, effectively providing access to different Color dimensions for Colorblind people.

  • UbiComp - Chroma: a wearable augmented-reality solution for Color Blindness
    Proceedings of the 2014 ACM International Joint Conference on Pervasive and Ubiquitous Computing, 2014
    Co-Authors: Enrico Tanuwidjaja, Derek Huynh, Kirsten Koa, Calvin Nguyen, Churen Shao, Patrick Torbett, Colleen Emmenegger, Nadir Weibel
    Abstract:

    Color Blindness is a highly prevalent vision impairment that inhibits people's ability to understand Colors. Although classified as a mild disability, Color Blindness has important effects on the daily activity of people, preventing them from performing their tasks in the most natural and effective ways. In order to address this issue we developed Chroma, a wearable augmented-reality system based on Google Glass that allows users to see a filtered image of the current scene in real-time. Chroma automatically adapts the scene-view based on the type of Color Blindness, and features dedicated algorithms for Color saliency. Based on interviews with 23 people with Color Blindness we implemented four modes to help Colorblind individuals distinguish Colors they usually can't see. Although Glass still has important limitations, initial tests of Chroma in the lab show that Colorblind individuals using Chroma can improve their Color recognition in a variety of real-world activities. The deployment of Chroma on a wearable augmented-reality device makes it an effective digital aid with the potential to augment everyday activities, effectively providing access to different Color dimensions for Colorblind people.