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Mechanical and neural representations of tactile information in the awake behaving rat somatosensory pathway.

机译:觉醒大鼠体感通路中的触觉信息的机械和神经表示。

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摘要

The only access we have to the outside world is through neural activity. A central question in neuroscience is: How do the patterns of neural activity which correspond to perceptions arise, and how do they represent features of the outside world? On the one hand, a central challenge for a sensory system is to form stable internal neural representations of the invariant properties of the outside world in the presence of noise and self-induced signal variations. On the other hand, it is also possible that useful information about our relationship to the outside world is present in these signal variations.;We addressed these questions using the vibrissa (whisker) system in awake, freely behaving rats. We trained rats to run on a linear track so that their vibrissae brushed against tactile stimuli placed on the sides of the track. We used high-speed, high resolution videography to measure the motion of the base of the vibrissae, which is the input to the sensory system, and simultaneously recorded neural activity in the area of primary somatosensory cortex responsive to vibrissa motion. By having access to all three parts of the sensory system (the external tactile stimulus, the vibrissa motion, and the internal neural activity), we were able to determine how information was represented in each part of the pathway.;We found that the motion of the base of the vibrissae contained information related both to the features of the textures and to the animal's own motion as it ran down the track. We were able to classify trials as belonging to one of four texture classes with significantly greater than chance performance using a single scalar measure of the vibrissa deflection power spectrum. We also found that multi-unit spiking activity in the cortex was positively correlated with the same measure of vibrissa deflection, and that trials could be classified using the neural activity. Our results suggest that cortical cells encode the integrated power of the vibrissa deflection angular velocity, and that this quantity is also a good measure of tactile information.
机译:我们对外界的唯一访问是通过神经活动。神经科学中的一个中心问题是:与感知相对应的神经活动模式是如何产生的,它们如何代表外界的特征?一方面,感觉系统面临的主要挑战是在存在噪声和自感应信号变化的情况下,形成外界不变特性的稳定内部神经表示。另一方面,在这些信号变化中也可能存在关于我们与外界关系的有用信息。我们在醒着,行为自由的老鼠中使用触须(晶须)系统解决了这些问题。我们训练了老鼠在直线轨道上奔跑,以便它们的触须能刷过轨道两侧的触觉刺激。我们使用了高速,高分辨率的摄像技术来测量触须基部的运动,触角是触觉系统的输入,同时记录了响应触触运动的主要体感皮层区域的神经活动。通过访问感觉系统的所有三个部分(外部触觉刺激,触颤运动和内部神经活动),我们能够确定信息如何在通路的每个部分中表示。触须基部的信息包含与纹理的特征以及与动物沿着轨道运行时其自身运动有关的信息。我们能够通过单次挠曲偏转功率谱的标量测量将试验归类为属于四个纹理类别之一,且其性能明显优于偶然表现。我们还发现,皮层中的多单位尖峰活动与触颤挠度的相同度量呈正相关,并且可以使用神经活动对试验进行分类。我们的研究结果表明皮质细胞编码触须偏转角速度的积分功率,并且此数量也是触觉信息的一种很好的度量。

著录项

  • 作者

    Jenks, Robert Anand.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Biology Neuroscience.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:39:48

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