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A Non‐Invasive and DNA‐free Approach to Upregulate Mammalian Voltage‐Gated Calcium Channels and Neuronal Calcium Signaling via Terahertz Stimulation (Adv. Sci. 47/2024)
A Non‐Invasive and DNA‐free Approach to Upregulate Mammalian Voltage‐Gated Calcium Channels and Neuronal Calcium Signaling via Terahertz Stimulation (Adv. Sci. 47/2024)
A Non‐Invasive and DNA‐free Approach to Upregulate Mammalian Voltage‐Gated Calcium Channels and Neuronal Calcium Signaling via Terahertz Stimulation (Adv. Sci. 47/2024)
Advanced Science
Sun, Yuankun (Autor:in) / Geng, Jinli (Autor:in) / Fan, Yu (Autor:in) / Li, Yangmei (Autor:in) / Zhong, Yuan (Autor:in) / Cai, Jing (Autor:in) / Liu, Xiaodong (Autor:in) / Wang, Shaomeng (Autor:in) / Gong, Yubin (Autor:in) / Chang, Chao (Autor:in)
Advanced Science ; 11
01.12.2024
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Diversity of Mammalian Voltage-Gated Sodium Channels
British Library Conference Proceedings | 1999
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