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首页> 外文期刊>The Journal of Experimental Biology >Pre-receptor profile of sensory images and primary afferent neuronal representation in the mormyrid electrosensory system
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Pre-receptor profile of sensory images and primary afferent neuronal representation in the mormyrid electrosensory system

机译:mormyrid电感应系统中的感觉图像的受体前轮廓和初级传入神经元表示

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Afferent responses to the fish's own electric organ discharge were explored in the electrosensory lobe of the mormyrid fish Gnathonemus petersii. In order to understand the neural encoding of natural sensory images, responses were examined while objects of different conductivities were placed at different positions along the skin of the fish, i.e. at different points within, and also outside, peripheral receptive fields. The presence of an object in the fish's self-generated electric field produces local modulation of transcutaneous current density. Measurement of the local electric organ discharge shows that object images formed at the electroreceptive sensory surface have an opposing center-surround, 'Mexican hat' profile. This is a pre-receptor phenomenon intrinsic to the physical nature of the sensory stimulus that takes place prior to neural lateral inhibition and is independent of such central inhibition.Stimulus intensity is encoded in the latency and number of action potentials in the response of primary afferent fibers. It is also reflected in changes in the amplitude and area of extracellular field potentials recorded in the deep granular layer of the electrosensory lobe. Since the object image consists of a redistribution of current density over the receptive surface, its presence is coded by change in the activity of receptors over an area much larger than the skin surface facing the object. We conclude that each receptor encodes information coming from the whole scene in a manner that may seem ambiguous when seen from a single point and that, in order to extract specific object features, the brain must process the electric image represented over the whole sensory surface.
机译:探究了有丝鱼Gnathonemus petersii的电感应叶对鱼自身电器官放电的传入反应。为了理解自然感觉图像的神经编码,在将不同电导率的物体沿鱼皮放置在不同位置时,即在周围感受野内外的不同点处,检查了响应。鱼的自生电场中存在物体会产生经皮电流密度的局部调节。对局部电器官放电的测量表明,在电感受性表面形成的物体图像具有相反的中心环绕“墨西哥帽”轮廓。这是在神经侧向抑制之前发生的感觉刺激的物理性质固有的受体前现象,与这种中枢抑制无关。刺激强度被编码为初级传入反应的潜伏期和动作电位数量纤维。它也反映在电传感叶的深颗粒层中记录的细胞外场电势的振幅和面积的变化中。由于物体图像由电流密度在接受表面上的重新分布组成,因此其存在是通过在比面对物体的皮肤表面大得多的区域上的受体活动的变化来编码的。我们得出的结论是,每个受体对来自整个场景的信息进行编码的方式从单点来看似乎是模棱两可的,并且为了提取特定的对象特征,大脑必须处理整个感觉表面上表示的电子图像。

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