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Biodynamical Eye Movements Models for Pupil and Eye Plant

机译:学生和眼科植物的生物动力眼动模型

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The biodynamic of the eye comprise a widely range of voluntary and involuntary movements. Together these movements perform one of the main processes in the human vision that is to put an image in the retina with the accurate focus. These movements are controlled by the intrinsic and extrinsic eye muscles. Understanding the process of how of each one of this muscles contribute and were altered by other systems in the body is one of the main goals of the bio-medical engineering researchers. Models presented in this work pretend to make an approach in the behavior of two important physiological eye reactions, the pupil response and saccadic eye movements. In the first case a mathematical model was developed to show the effect in pupil diameter caused by blinks, hippus, and sounds stimuli. This response is absolutely involuntary and it is related directly by the sympathetic and parasympathetic nervous system functions. On the other case, for saccadic movements was designed a electronic active model that generate electrical signals according to horizontal eye movements and was intended to emulate the biodynamic rotatory properties of a human eye plant caused by neurologic activation signals on the lateral and medial extrinsic muscles. Properties of the mechanical eye plant, such as viscosity, inertia and elasticity were also included. Some advantages of these models lie in its response and the ease of obtaining continuous records for the dynamics eye response in a signal that features make possible its application in biomedical areas, also including specialists such as Neuro-ophthalmologists, ophthalmologists and optometrist, and even for medical education.
机译:眼睛的生物动力学包括广泛的自愿和非自愿运动。这些动作共同执行了人类视觉中的主要过程之一,即以准确的焦点将图像放置在视网膜上。这些运动是由内在和外在的眼肌控制的。生物医学工程研究人员的主要目标之一就是了解这种肌肉中的每一个肌肉是如何贡献和被其他系统改变的过程。这项工作中提出的模型假装对两种重要的生理性眼部反应,即瞳孔反应和眼跳运动进行了研究。在第一种情况下,开发了一个数学模型来显示眨眼,河马和声音刺激对瞳孔直径的影响。这种反应绝对是非自愿的,与交感神经和副交感神经系统功能直接相关。在另一种情况下,为进行眼跳运动设计了一个电子主动模型,该模型根据水平眼部运动产生电信号,并旨在模拟人眼植物的生物动力旋转特性,该生物动力旋转特性是由外侧和内侧外在肌肉上的神经系统激活信号引起的。还包括机械眼科设备的特性,例如粘度,惯性和弹性。这些模型的一些优势在于其响应能力,以及易于获得动态眼响应信号的连续记录的特点,这些特征使其可以在生物医学领域中应用,包括神经眼科医生,眼科医生和验光师在内的专家,甚至用于医学教育。

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