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Updated: Oct 26, 2025

Optogenetic Activation of Zebrafish Somatosensory Neurons using ChEF-tdTomato
Published on: January 31, 2013
Scanned optogenetic control of mammalian somatosensory input to map input-specific behavioral outputs
Ara Schorscher-Petcu1, Flóra Takács1, Liam E Browne1
1Wolfson Institute for Biomedical Research, and Department of Neuroscience, Physiology and Pharmacology, University College London, London, United Kingdom.
Abstract:
Somatosensory stimuli guide and shape behavior, from immediate protective reflexes to longer-term learning and higher-order processes related to pain and touch. However, somatosensory inputs are challenging to control in awake mammals due to the diversity and nature of contact stimuli. Application of cutaneous stimuli is currently limited to relatively imprecise methods as well as subjective behavioral measures. The strategy we present here overcomes these difficulties, achieving 'remote touch' with spatiotemporally precise and dynamic optogenetic stimulation by projecting light to a small defined area of skin. We mapped behavioral responses in freely behaving mice with specific nociceptor and low-threshold mechanoreceptor inputs. In nociceptors, sparse recruitment of single-action potentials shapes rapid protective pain-related behaviors, including coordinated head orientation and body repositioning that depend on the initial body pose. In contrast, activation of low-threshold mechanoreceptors elicited slow-onset behaviors and more subtle whole-body behaviors. The strategy can be used to define specific behavioral repertoires, examine the timing and nature of reflexes, and dissect sensory, motor, cognitive, and motivational processes guiding behavior.
Insights
Scientists developed
Area of Science:
- Neuroscience
- Sensory Biology
- Behavioral Science
Background:
- Somatosensory stimuli are crucial for guiding behavior, reflexes, and learning.
- Controlling somatosensory inputs in awake mammals is challenging due to stimulus diversity and imprecise methods.
Purpose of the Study:
- To develop a precise method for controlling somatosensory stimuli in freely behaving mice.
- To investigate behavioral responses to optogenetically evoked nociceptor and mechanoreceptor activation.
Main Methods:
- Developed a 'remote touch' strategy using spatiotemporally precise optogenetic stimulation.
- Projected light to defined skin areas to activate specific sensory inputs.
- Mapped behavioral responses in mice to nociceptor and low-threshold mechanoreceptor activation.
Main Results:
- Sparse activation of nociceptors triggered rapid, pose-dependent protective pain behaviors.
- Activation of low-threshold mechanoreceptors elicited slower, subtler whole-body behaviors.
- Demonstrated distinct behavioral repertoires for different somatosensory inputs.
Conclusions:
- Optogenetic 'remote touch' offers precise control over somatosensory stimuli.
- This method can dissect sensory, motor, cognitive, and motivational processes.
- Enables detailed study of reflexes and behavior shaping by touch and pain.

