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Regeneration of the visual system in gastropods (Mollusca)

机译:腹足动物(软体动物)视觉系统的再生

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摘要

The topic of tissue and organ regeneration has been of interest to life scientists ever since the phenomenon was noticed. The reason for this is obvious: if one can learn what drives and controls regeneration, i.e., how lost or damaged structures can be replaced, one not only has a better chance to understand an animal's embryogenesis and evolutionary relationship with other taxa, but one would also be in a better position to treat organ loss or tissue damage in humans. In this context, the possible restitution of individual sensory neurons or nerve projections has been of special interest to us. We identified central visual projections in several gastropod species and found that: (1) projections are very extensive across the brain and (2) they have connections with other systems and organs (including, most likely, non-ocular skin photoreceptors) that may be involved in the integration of signals from different sensors. Investigations of afferent and efferent visual elements at a morphological level should help reveal the neuronal basis of a gastropod's behavioral reactions.
机译:自从发现这种现象以来,生命科学家就一直对组织和器官的再生感兴趣。这样做的原因很明显:如果可以学习驱动和控制再生的东西,即如何替换丢失或损坏的结构,则不仅有更好的机会了解动物与其他类群的胚胎发生和进化关系,而且还可以还可以更好地治疗人体器官丢失或组织损伤。在这种情况下,个体感觉神经元或神经投射的可能恢复是我们特别感兴趣的。我们确定了几种腹足动物的中央视觉投影,并发现:(1)投影在整个大脑中非常广泛,并且(2)它们与可能与之相关的其他系统和器官(包括最有可能的非眼皮肤感光器)有联系。涉及来自不同传感器的信号集成。在形态学水平上对传入和传出的视觉元素的研究应有助于揭示腹足动物行为反应的神经基础。

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