神经科学
刺激
脑深部刺激
纹状体
运动皮层
生物
医学
多巴胺
内科学
疾病
帕金森病
作者
Rahul Munshi,Shahnaz Qadri,Qian Zhang,Idoia Castellanos-Rubio,Pablo del Pino,Arnd Pralle
出处
期刊:eLife
[eLife Sciences Publications Ltd]
日期:2017-08-15
卷期号:6
被引量:168
摘要
Establishing how neurocircuit activation causes particular behaviors requires modulating the activity of specific neurons. Here, we demonstrate that magnetothermal genetic stimulation provides tetherless deep brain activation sufficient to evoke motor behavior in awake mice. The approach uses alternating magnetic fields to heat superparamagnetic nanoparticles on the neuronal membrane. Neurons, heat-sensitized by expressing TRPV1 are activated with magnetic field application. Magnetothermal genetic stimulation in the motor cortex evoked ambulation, deep brain stimulation in the striatum caused rotation around the body-axis, and stimulation near the ridge between ventral and dorsal striatum caused freezing-of-gait. The duration of the behavior correlated tightly with field application. This approach provides genetically and spatially targetable, repeatable and temporarily precise activation of deep-brain circuits without the need for surgical implantation of any device.
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