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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Fast and slow recovery phases of goldfish behavior after transection of the optic nerve revealed by a computer image processing system.
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Fast and slow recovery phases of goldfish behavior after transection of the optic nerve revealed by a computer image processing system.

机译:计算机图像处理系统揭示了视神经横断后金鱼行为的快速恢复阶段和缓慢恢复阶段。

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As the goldfish is a common experimental animal for vision research, including psychophysical behavior, it is very important to quantitatively score fish behavior. We have previously developed a computer image processing system which can acquire the positional coordinates of goldfish moving freely in an aquarium and determine turning directions (go straight, right or left turn). In the present study, an algorithm to determine tilting angles of moving goldfish was constructed. We also made histograms for quantifying the interaction between pairs of goldfish (two-point distance). By using these histograms, we estimated the time-course of behavioral regeneration after optic nerve transection in goldfish. Control goldfish showed an equal percentage of right or left turns and maintained an upright position in a dorsoventral axis. When the optic nerve of a goldfish was unilaterally sectioned, the goldfish showed predominant turning and slight tilting toward the intact eye. The abnormal turning and tilting behaviors lasted for 10-14 days and then gradually decreased, returning to control behaviors by one month after the unilateral transection. When the optic nerve of a single goldfish was bilaterally sectioned, it did not show any preferential turning and tilting behavior, which is similar to what was observed in control goldfish. However, the trace maps showed that, after bilateral sectioning, fish preferred to cross the center of the tank, which was unlike control fish. In control pairs, one goldfish chased the other with a fixed small range of two-point distances. However, in pairs of goldfish with bilateral transection of the optic nerve, the blind goldfish behaved independently of each other, with a long two-point distance. The long two-point distance of the blind goldfish lasted for at least two months and then slowly returned to control two-point distance by four months after bilateral transection. Such fast and slow recovery in goldfish behaviors evoked after unilateral and bilateral transection of the optic nerve is discussed with respect to reconnection of regenerating optic nerves in the fish central nervous system. This computer image processing system is a useful tool with which we can quickly and easily quantify fish behavior.
机译:由于金鱼是视觉研究(包括心理生理行为)的常见实验动物,因此对鱼的行为进行定量评分非常重要。我们之前已经开发了一种计算机图像处理系统,该系统可以获取在水族馆中自由移动的金鱼的位置坐标,并确定转弯方向(向右转,向右转或向左转)。在本研究中,构造了确定运动金鱼倾斜角度的算法。我们还制作了直方图来量化金鱼对之间的相互作用(两点距离)。通过使用这些直方图,我们估计了金鱼视神经横断后行为再生的时程。对照金鱼的右转或左转百分比相等,并在背腹轴上保持直立位置。将金鱼的视神经单侧切开时,金鱼显示出明显的转向,并向完整的眼睛轻微倾斜。异常的转弯和倾斜行为持续了10-14天,然后逐渐减少,在单侧横断后一个月后恢复了控制行为。当单个金鱼的视神经被双侧切开时,它没有显示出任何优先的转向和倾斜行为,这与在对照金鱼中观察到的相似。但是,跟踪图显示,在进行双边切片之后,鱼更喜欢越过水箱中心,这与对照鱼不同。在控制对中,一条金鱼以固定的小范围两点距离追赶另一条金鱼。但是,在成对的金鱼双侧视神经横切的情况下,盲金鱼的行为彼此独立,两点之间的距离很长。盲金鱼的长两点距离持续至少两个月,然后在双侧横断后四个月缓慢恢复到控制两点距离。关于鱼中枢神经系统中再生性视神经的重新连接,讨论了视神经的单侧和双侧横断后引起的金鱼行为的这种快速和缓慢恢复。该计算机图像处理系统是有用的工具,通过它我们可以快速轻松地量化鱼类行为。

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