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能量值在重复观看食物图像时大脑动态反应适应中的作用。

The role of energetic value in dynamic brain response adaptation during repeated food image viewing.

机构信息

The Functional Electrical Neuroimaging Laboratory, Department of Radiology, Centre Hospitalier Universitaire Vaudois, Lausanne, Switzerland.

出版信息

Appetite. 2012 Feb;58(1):11-8. doi: 10.1016/j.appet.2011.09.016. Epub 2011 Oct 8.

Abstract

The repeated presentation of simple objects as well as biologically salient objects can cause the adaptation of behavioral and neural responses during the visual categorization of these objects. Mechanisms of response adaptation during repeated food viewing are of particular interest for better understanding food intake beyond energetic needs. Here, we measured visual evoked potentials (VEPs) and conducted neural source estimations to initial and repeated presentations of high-energy and low-energy foods as well as non-food images. The results of our study show that the behavioral and neural responses to food and food-related objects are not uniformly affected by repetition. While the repetition of images displaying low-energy foods and non-food modulated VEPs as well as their underlying neural sources and increased behavioral categorization accuracy, the responses to high-energy images remained largely invariant between initial and repeated encounters. Brain mechanisms when viewing images of high-energy foods thus appear less susceptible to repetition effects than responses to low-energy and non-food images. This finding is likely related to the superior reward value of high-energy foods and might be one reason why in particular high-energetic foods are indulged although potentially leading to detrimental health consequences.

摘要

重复呈现简单物体和生物显著性物体可以导致在对这些物体进行视觉分类时行为和神经反应的适应。在反复观察食物的过程中,适应反应的机制对于超越能量需求更好地理解食物摄入特别重要。在这里,我们测量了视觉诱发电位(VEPs),并对高能量和低能量食物以及非食物图像的初始和重复呈现进行了神经源估计。我们的研究结果表明,对食物和与食物相关的物体的行为和神经反应不会因重复而均匀受到影响。虽然低能量食物和非食物的图像重复呈现会调制 VEP 及其潜在的神经源,并提高行为分类准确性,但高能量图像的反应在初始和重复出现之间基本保持不变。因此,当观看高能量食物的图像时,大脑机制似乎不太容易受到重复效应的影响,而对低能量和非食物图像的反应则更容易受到重复效应的影响。这一发现可能与高能量食物的优越奖励价值有关,这可能是高能量食物特别容易被放纵的原因之一,尽管它们可能会导致有害的健康后果。

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