新皮质的直接电刺激的神经群体动态
Jordan L Hickman1,2,3, Grant Hughes1,3, Eashan Sahai1
1Department of Biophysics and Physiology, University of Colorado Anschutz Medical Campus, Aurora, Colorado, USA.
bioRxiv : the preprint server for biology
|November 24, 2025
概括
电脑刺激电脑刺激
科学领域:
- 神经科学是一个神经科学.
- 神经调节是一种神经调节.
- 计算神经科学是一种神经科学.
背景情况:
- 内电刺激对于神经科学研究和临床神经调节至关重要.
- 了解电场如何与神经组织相互作用并影响知觉是一个重要的知识差距.
研究的目的:
- 研究电场与神经组织接触的空间和时间动态.
- 确定刺激参数,神经激活模式和感知结果之间的关系.
主要方法:
- 利用三个直角的Neuropixels探针进行高分辨率的3D记录,记录小鼠视觉皮层中的细胞外电压和尖峰.
- 应用了不同幅度的电刺激,并分析了与解剖结构相关的神经反应.
主要成果:
- 唤起的潜能显示出不对称的扩散和随幅度的亚线性增长,受大脑解剖学的影响.
- 直接的神经激活是稀疏的 (<5%的神经元),选择性的极性和振幅,并招募特定的神经元类型 (源附近的神经元,金字塔神经元异型).
- 稀少的直接尖导致广泛的皮质调制 (>50%的神经元) 和弱的感知检测,独立于振幅.
结论:
- 神经解剖学和时空激活模式,而不是峰值计数,是刺激生理和感知效应的关键决定因素.
- 这些发现有助于设计仿生,多接触的神经假体,以实现更有效的神经调节.
相关概念视频
Action Potentials
Overview
Action Potential
Neurons communicate by firing action potentials—the electrochemical signal that is propagated along the axon. The signal results in the release of neurotransmitters at axon terminals, thereby transmitting information to the nervous system. An action potential is a specific "all-or-none" change in membrane potential that results in a rapid spike in voltage.
Membrane potential in neurons
Neurons typically have a resting membrane potential of about -70 millivolts (mV). When they receive...
Membrane potential in neurons
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Sensory Functions of the Skin
The skin is the largest organ of the human body and plays a crucial role in our sensory perception. It contains a vast network of sensory receptors that contribute to the skin's protective function by perceiving physical, biological, and environmental cues and generating relevant responses.
There are two main categories of receptors on the skin: capsulated and non-capsulated. The non-capsulated ones are mainly the pain receptors. The capsulated ones can be further categorized based on the...
There are two main categories of receptors on the skin: capsulated and non-capsulated. The non-capsulated ones are mainly the pain receptors. The capsulated ones can be further categorized based on the...
Action Potential
Neurons communicate by firing action potentials—the electrochemical signal that is propagated along the axon. The signal results in the release of neurotransmitters at axon terminals, thereby transmitting information to the nervous system. An action potential is a specific "all-or-none" change in membrane potential that results in a rapid spike in voltage.
Membrane potential in neurons
Neurons typically have a resting membrane potential of about -70 millivolts (mV). When they receive...
Membrane potential in neurons
Neurons typically have a resting membrane potential of about -70 millivolts (mV). When they receive...
Neuronal Communication
Neurons, the fundamental units of the brain and nervous system, communicate through complex electrochemical signals that underpin all cognitive and bodily functions. This communication is primarily facilitated by a process involving the generation and propagation of an action potential along the axon of the neuron. When the internal electrical charge of a neuron surpasses a certain threshold, an action potential is triggered. This rapid change in voltage travels swiftly along the axon to the...


