Adaptation-induced modification of motion selectivity tuning in visual tectal neurons of adult zebrafish

Author:

Hollmann Vanessa1,Lucks Valerie1,Kurtz Rafael2,Engelmann Jacob1

Affiliation:

1. Active Sensing and Center of Excellence Cognitive Interaction Technology, Bielefeld University, Bielefeld, Germany; and

2. Department of Neurobiology, Bielefeld University, Bielefeld, Germany

Abstract

In the developing brain, training-induced emergence of direction selectivity and plasticity of orientation tuning appear to be widespread phenomena. These are found in the visual pathway across different classes of vertebrates. Moreover, short-term plasticity of orientation tuning in the adult brain has been demonstrated in several species of mammals. However, it is unclear whether neuronal orientation and direction selectivity in nonmammalian species remains modifiable through short-term plasticity in the fully developed brain. To address this question, we analyzed motion tuning of neurons in the optic tectum of adult zebrafish by calcium imaging. In total, orientation and direction selectivity was enhanced by adaptation, responses of previously orientation-selective neurons were sharpened, and even adaptation-induced emergence of selectivity in previously nonselective neurons was observed in some cases. The different observed effects are mainly based on the relative distance between the previously preferred and the adaptation direction. In those neurons in which a shift of the preferred orientation or direction was induced by adaptation, repulsive shifts (i.e., away from the adapter) were more prevalent than attractive shifts. A further novel finding for visually induced adaptation that emerged from our study was that repulsive and attractive shifts can occur within one brain area, even with uniform stimuli. The type of shift being induced also depends on the difference between the adapting and the initially preferred stimulus direction. Our data indicate that, even within the fully developed optic tectum, short-term plasticity might have an important role in adjusting neuronal tuning functions to current stimulus conditions.

Publisher

American Physiological Society

Subject

Physiology,General Neuroscience

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Adaptation-induced plasticity in the sensory cortex;Journal of Neurophysiology;2022-10-01

2. Calcium Imaging in the Zebrafish;Advances in Experimental Medicine and Biology;2019-10-24

3. Population adaptation in efficient balanced networks;eLife;2019-09-24

4. The speed of neuronal adaptation: A perspective through the visual cortex;European Journal of Neuroscience;2019-03-15

5. Imaging Neuronal Activity in the Optic Tectum of Late Stage Larval Zebrafish;Journal of Developmental Biology;2018-03-09

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