心房颤动
超声波
医学
内科学
心脏病学
自主神经系统
纳米颗粒
调制(音乐)
压电
心率
材料科学
纳米技术
物理
放射科
声学
血压
作者
Jiapeng Han,Yuanzheng Zhang,Xiaofei Wang,Guocheng Zhang,Zhiyao Yu,Changyi Wang,Tianyou Xu,Zhen Zhou,Xiaomeng Yang,Xiaoxing Jin,Chenzhe Liu,Liping Zhou,Yueyi Wang,Baopeng Tang,Shishang Guo,Hong Jiang,Lilei Yu
摘要
piezoelectric nanoparticle group had reduced ventricular rates in the sinus rhythm and atrial fibrillation models after stimulating the IRGP by applying ultrasound. In addition, transient stimulation by BTNPs did not lead to sustained neuronal excitation in the IRGP. The activation of the BTNPs did not induce inflammation or thermal damage effects in the IRGP. Ultrasound-mediated BTNP neuromodulation can significantly reduce the ventricular rate by stimulating the IRGP. Thus, ultrasound-mediated BTNP neuromodulation is a potential therapy for atrial fibrillation rate control.
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