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◇ bioRxiv2026-08-10· neuroscience

Simulation-informed low-current anodal tDCS accelerates early motor recovery after photochemically induced cortical stroke in rats

S. Morishita, S. Tanaka, E. Yamada, A. Hirata, T. Kumada

原始摘要(英文原文)· Original abstract
Animal transcranial direct current stimulation (tDCS) studies typically use intensities exceeding clinical levels, and the off-line behavioral effects of weak electric fields in rodents remain unclear. We examined whether repeated anodal tDCS, calibrated by electric-field simulation to approximate human-equivalent weak fields, facilitates motor recovery after focal photothrombotic ischemic stroke (PIT) in rats. Simulation estimated that 50 A produced a maximum field of ~1.96 V/m in the targeted motor cortex, matching clinically relevant intensities. Under isoflurane anesthesia, rats received anodal tDCS at 50 A, 250 A, or 1 mA (5 min/day, 5 days/week, 2 weeks), or sham; motor recovery was assessed weekly by beam-walking for 4 weeks. A linear mixed-effects model revealed significant time, group, and time x group effects. The 50 A group outperformed the PIT group at 1 week, and the 1 mA group at 2 weeks, with no differences thereafter. Low-current tDCS accelerates early post-stroke motor recovery, supporting weak-field neuromodulation.
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Simulation-informed low-current anodal tDCS accelerates early motor recovery after photochemically induced cortical stroke in rats — 科研速览 Science Skim