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视差聚散成分的适应性改变:一项独立成分分析研究。

Adaptive modification of disparity vergence components: an independent component analysis study.

作者信息

Semmlow John L, Yuan Weihong

机构信息

Department of Surgery (Bioengineering), Robert Wood Johnson Medical School/UMDNJ, New Brunswick, NJ 08903, USA.

出版信息

Invest Ophthalmol Vis Sci. 2002 Jul;43(7):2189-95.

Abstract

PURPOSE

Although a disparity vergence stimulus produces a smooth exponential-like response, considerable experimental evidence indicates that it is the product of at least two motor components: a pulselike transient component and a steplike sustained component. Recently, a new application of independent component analysis (ICA) has been used to decompose the vergence step response into these underlying components. Other recent experiments have shown that the vergence system is capable of rapidly modifying its dynamic characteristics (short-term adaptation) when exposed to specially designed "adapting" stimuli. Adapted responses were characterized by faster dynamics, often featuring large overshoots. In this study, ICA was used to examine changes in the underlying components produced by dynamic adaptation.

METHODS

Disparity vergence eye movements in response to identical step stimuli were obtained from four subjects both in normal (baseline) conditions and after modification by adaptive training stimuli. ICA-based component decomposition was applied to vergence step-response data sets in both normal and adapted conditions to estimate, and compare activation patterns of the two underlying components.

RESULTS

An eigenvector analysis indicated that both normal and adapted vergence responses contained two major components. ICA analysis showed that the enhanced dynamics seen in adapted responses was due to an increase in pulse component amplitude. In addition, the step component of adapted responses often showed double-step behavior in the later portion of the response. Finally, the magnitude of adaptation appeared to be related to the unadapted response dynamics.

CONCLUSIONS

The adaptive process does not evoke additional components, but modifies the two components that are present under normal conditions. Double steps seen in the step component were attributed to an interaction between pulse and step neural mechanisms. The generation of an enhanced pulse component interfered with the production of the step component. Under this scenario, the reduced initial-step component was then compensated by the generation of a second-step component, probably mediated by an internal feedback mechanism.

摘要

目的

尽管视差聚散刺激会产生类似平滑指数的反应,但大量实验证据表明,它是至少两个运动成分的产物:一个类似脉冲的瞬态成分和一个类似阶梯的持续成分。最近,独立成分分析(ICA)的一种新应用已被用于将聚散阶梯反应分解为这些潜在成分。其他近期实验表明,当暴露于专门设计的“适应”刺激时,聚散系统能够迅速改变其动态特性(短期适应)。适应后的反应表现为更快的动态变化,通常具有较大的超调量。在本研究中,使用ICA来检查动态适应所产生的潜在成分的变化。

方法

从四名受试者在正常(基线)条件下以及经适应性训练刺激修改后,获取对相同阶梯刺激的视差聚散眼球运动。基于ICA的成分分解应用于正常和适应条件下的聚散阶梯反应数据集,以估计和比较两个潜在成分的激活模式。

结果

特征向量分析表明,正常和适应后的聚散反应均包含两个主要成分。ICA分析表明,适应后反应中增强的动态变化是由于脉冲成分幅度增加所致。此外,适应后反应的阶梯成分在反应后期通常表现出双阶梯行为。最后,适应程度似乎与未适应的反应动态有关。

结论

适应过程不会引发额外的成分,而是会修改正常条件下存在的两个成分。阶梯成分中出现的双阶梯归因于脉冲和阶梯神经机制之间的相互作用。增强的脉冲成分的产生干扰了阶梯成分的产生。在这种情况下,初始阶梯成分的减少随后由第二个阶梯成分的产生进行补偿,这可能是由内部反馈机制介导的。

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