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Perception of Sign Language and its application to visual communications for deaf people.

机译:手语的感知及其在聋人视觉交流中的应用。

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摘要

Video communication systems for deaf people are limited in terms of quality and performance. Analysis of visual attention mechanisms for sign language may enable optimization of video coding systems for deaf users. Eye-movement tracking experiments were conducted with profoundly deaf volunteers while watching sign language video clips. Deaf people are found to fixate mostly on the facial region of the signer to pick up small detailed movements associated with facial expression and mouth shapes. Lower resolution, peripheral vision is used to process information from larger, rapid movements of the signer in the video clips. A coding scheme that gives priority to the face of the signer may be applied to improve perception of video quality for sign language communication. Visual perception is the process of acquiring knowledge about environmental objects and events by extracting information from the light they emit or reflect (Palmer, 2002). How we “see” remains an active research challenge for vision scientists and specialists. Understanding the detection, recognition, and interpretation of visual information could have a tremendous impact on how we present and use visual information and on the design of information systems. The challenge is to understand how visual information can be presented so that its use can be optimized for the observer. Of all the senses, vision is relied on most heavily for sensory input about the environment (Hendee & Wells, 1997). This is particularly true for deaf people who rely on visual communication of information using sign language and/or lip reading. The aim of this research is to investigate how deaf people see sign language. The rationale for this is that an understanding of how deaf people observe sign language could enable video communication systems, for example, video conferencing, to be optimized. In this study, we examine the influence of sign language video content on the attention mechanisms of deaf viewers and the implications for design of video communications systems for deaf people. We review the quality requirements for sign language video communication and what is known about scene perception and the eye gaze of deaf people observing sign language. An experiment is presented, using eye tracking, to investigate how deaf people perceive sign language video and this is discussed in the context of improving sign language video communication quality.
机译:用于聋人的视频通信系统在质量和性能方面受到限制。对手语视觉注意机制的分析可能使聋人用户的视频编码系统最优化。在观看手语视频剪辑时,对失聪的志愿者进行了眼动跟踪实验。发现聋人主要固定在签名者的面部区域上,以拾取与面部表情和嘴形有关的细微动作。分辨率较低的外围视觉用于处理来自视频剪辑中签名者的较大,快速运动的信息。可以将赋予签名者面部优先的编码方案应用于改善用于手语通信的视频质量的感知。视觉感知是通过从环境物体和事件发出或反射的光中提取信息来获取有关环境物体和事件的知识的过程(Palmer,2002)。对于视力科学家和专家,我们如何“看待”仍然是一项积极的研究挑战。理解视觉信息的检测,识别和解释可能对我们呈现和使用视觉信息的方式以及信息系统的设计产生巨大影响。挑战是要了解如何呈现视觉信息,以便可以为观察者优化视觉信息的使用。在所有感官中,视觉主要依赖于环境的感官输入(Hendee&Wells,1997)。对于依赖于使用手语和/或唇读的视觉传达信息的聋人来说尤其如此。这项研究的目的是调查聋人如何看手语。这样做的理由是,了解聋人如何观察手语可以使视频通信系统(例如视频会议)得到优化。在这项研究中,我们研究了手语视频内容对聋人观众注意力机制的影响以及对聋人视频通信系统设计的影响。我们审查了手语视频通信的质量要求,以及有关聋人观看手语的场景感知和视线的已知知识。提出了一项使用眼动追踪的实验,以调查聋人如何看待手语视频,并在提高手语视频通信质量的背景下对此进行了讨论。

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