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首页> 外文期刊>ACM Transactions on Applied Perception (TAP) >2D Linear Oculomotor Plant Mathematical Model: Verification and Biometric Applications
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2D Linear Oculomotor Plant Mathematical Model: Verification and Biometric Applications

机译:二维线性动眼动植物数学模型:验证和生物识别应用

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This article assesses the ability of a two-dimensional (2D) linear homeomorphic oculomotor plant mathematical model to simulate normal human saccades on a 2D plane. The proposed model is driven by a simplified pulse-step neuronal control signal and makes use of linear simplifications to account for the unique characteristics of the eye globe and the extraocular muscles responsible for horizontal and vertical eye movement. The linear nature of the model sacrifices some anatomical accuracy for computational speed and analytic tractability, and may be implemented as two one-dimensional models for parallel signal simulation. Practical applications of the model might include improved noise reduction and signal recovery facilities for eye tracking systems, additional metrics from which to determine user effort during usability testing, and enhanced security in biometric identification systems. The results indicate that the model is capable of produce oblique saccades with properties resembling those of normal human saccades and is capable of deriving muscle constants that are viable as biometric indicators. Therefore, we conclude that sacrifice in the anatomical accuracy of the model produces negligible effects on the accuracy of saccadic simulation on a 2D plane and may provide a usable model for applications in computer science, human-computer interaction, and related fields.
机译:本文评估了二维(2D)线性同胚动眼动植物数学模型在2D平面上模拟正常人扫视的能力。所提出的模型由简化的脉冲步进神经元控制信号驱动,并利用线性简化来说明眼球和负责水平和垂直眼球运动的眼外肌的独特特征。该模型的线性性质为计算速度和分析可处理性牺牲了一些解剖学准确性,并且可以被实现为用于并行信号仿真的两个一维模型。该模型的实际应用可能包括针对眼动跟踪系统的改进的降噪和信号恢复功能,在可用性测试期间从中确定用户工作量的其他度量,以及增强的生物识别系统的安全性。结果表明该模型能够产生具有类似于正常人扫视的特性的斜扫视,并且能够推导可用作生物测定指标的肌肉常数。因此,我们得出的结论是,牺牲模型的解剖学准确性对2D平面上扫视仿真的准确性产生的影响可忽略不计,并且可能为计算机科学,人机交互以及相关领域的应用提供有用的模型。

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