在鱼类和虫中,由于对即将发生的碰撞有明显的视觉处理而产生的一致逃脱行为
Richard B Dewell1, Terri Carroll-Mikhail2, Margaret R Eisenbrandt1
1Department of Neuroscience, Baylor College of Medicine, Houston, TX, USA.
The Journal of physiology
|September 6, 2023
概括
在和金鱼中,视觉引导的逃生行为对加速刺激表现出不同的神经反应,但汇聚在类似的逃生触发器上. 这表明,尽管有不同的感官处理,但物种之间避免碰撞的共享原则.
科学领域:
- 神经伦理学 神经伦理学
- 比较生理学比较生理学
- 动物行为 动物行为
背景情况:
- 视觉引导的逃生行为对于各种动物物种的生存至关重要.
- 悬浮的刺激,代表接近的物体,通常用于研究逃跑反应.
- 神经元对迫在眉的刺激的反应往往涉及一个固定的角大小值触发逃跑.
研究的目的:
- 在物体加速的条件下,研究是否对逃逸行为的固定角大小值是正确的.
- 为了比较碰撞检测神经元和逃跑行为与和金鱼加速的灵敏度.
- 了解不同物种逃跑行为和避免碰撞的基础的神经计算.
主要方法:
- 设计的刺激模拟物体接近与非零加速 (加速或减速).
- 记录了虫对这些刺激的神经元反应,并根据逃跑行为触发器识别了金鱼神经元.
- 在不同的加速条件下,比较了两种物种逃跑行为触发的角大小值.
主要成果:
- 草碰撞检测神经元对加速表现出敏感性,与金鱼神经元不同.
- 草和金鱼的逃跑行为在固定角大小时被触发,基本上对加速不敏感.
- 这表明虫的下游加工与金鱼观察到的不那么敏感的逃脱反应相匹配.
结论:
- 尽管在加速刺激的感官处理方面存在差异,但和金鱼的逃避行为在类似的特征上趋同.
- 逃生行为的固定角大小值似乎是这些物种中保存的特征.
- 在接近过程中研究物体加速可以提高对神经计算的理解,以避免碰撞.
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