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Updated: May 30, 2026

Transcranial Direct Current Stimulation (tDCS) in Mice
Published on: September 23, 2018
Translational research in transcranial direct current stimulation (tDCS): a systematic review of studies in animals
Andre Russowsky Brunoni1, Felipe Fregni, Rosana Lima Pagano
1Department of Neurosciences and Behavior, Institute of Psychology, University of São Paulo, Cidade Universitária, 05508-000 Butantã, São Paulo, Brazil. brunoni@usp.br
Abstract:
Recent therapeutic human studies testing transcranial direct current stimulation (tDCS) has shown promising results, although many questions remain unanswered. Translational research with experimental animals is an appropriate framework for investigating its mechanisms of action that are still undetermined. Nevertheless, animal and human studies are often discordant. Our aim was to review tDCS animal studies, examining and comparing their main findings with human studies. We performed a systematic review in Medline and other databases, screening for animal studies in vivo that delivered tDCS. Studies in vitro and using other neuromodulatory techniques were excluded. We extracted data according to Animal Research: Reporting In Vivo Experiments (ARRIVE) guidelines for reporting in vivo animal research. Thus, we collected data on sample characteristics (size, gender, weight and specimen) and methodology (experimental procedures, experimental animals, housing and husbandry, as well as analysis). We also collected data on methods for delivering tDCS (location, size, current and current density of electrodes and electrode montage), experimental effects (polarity-, intensity- and after-effects) and safety. Only 12 of 48 potentially eligible studies met our inclusion criteria and were reviewed. Quality assessment reporting was only moderate and studies were heterogeneous regarding tDCS montage methodology, position of active and reference electrodes, and current density used. Nonetheless, almost all studies demonstrated that tDCS had positive immediate and long-lasting effects. Vis-à-vis human trials, animal studies applied higher current densities (34.2 vs. 0.4 A/m(2), respectively), preferred extra-cephalic positions for reference electrodes (60% vs. 10%, respectively) and used electrodes with different sizes more often. Potential implications for translational tDCS research are discussed.
Insights
This review of animal studies on transcranial direct current stimulation (tDCS) found promising effects, but highlighted significant differences in methodology compared to human trials. Further research is needed to reconcile these findings for effective translational applications.
Area of Science:
- Neuroscience
- Neuromodulation
- Translational Research
Background:
- Transcranial direct current stimulation (tDCS) shows therapeutic potential in human studies.
- Understanding tDCS mechanisms requires animal research, but human and animal study results often differ.
- Discordance between animal and human tDCS studies hinders translational applications.
Purpose of the Study:
- To systematically review in vivo tDCS animal studies.
- To compare findings and methodologies of animal tDCS studies with human trials.
- To identify factors contributing to discrepancies in tDCS research.
Main Methods:
- Systematic literature review of in vivo tDCS animal studies.
- Exclusion of in vitro studies and other neuromodulatory techniques.
- Data extraction following ARRIVE guidelines, focusing on methodology, tDCS parameters, effects, and safety.
Main Results:
- Only 12 of 48 eligible studies met inclusion criteria; moderate reporting quality and heterogeneity noted.
- Most studies demonstrated positive immediate and long-lasting effects of tDCS.
- Animal studies used higher current densities, more extra-cephalic reference electrodes, and varied electrode sizes compared to human trials.
Conclusions:
- Despite methodological heterogeneity, animal tDCS studies generally show positive outcomes.
- Significant differences in tDCS application (current density, electrode placement) exist between animal and human studies.
- Addressing these discrepancies is crucial for advancing translational tDCS research.

