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相关概念视频

Chemical Synapses01:26

Chemical Synapses

8.8K
Chemical synapses are specialized sites between two neurons or between a neuron and a non-neuronal cell like a muscle, glandular or sensory cell.
Because chemical synapses depend on the release of neurotransmitter molecules from synaptic vesicles to pass on their signal, there is an approximately one millisecond delay between when the axon potential reaches the presynaptic terminal and when the neurotransmitter leads to opening of postsynaptic ion channels. Additionally, this signaling is...
8.8K
Synaptic Signaling01:09

Synaptic Signaling

5.5K
Neurons communicate at synapses, or junctions, to excite or inhibit the activity of other neurons or target cells, such as muscles. Synapses may be chemical or electrical.
Most synapses are chemical, meaning an electrical impulse or action potential spurs the release of chemical messengers called neurotransmitters. The neuron sending the signal is called the presynaptic neuron, and the neuron receiving the signal is the postsynaptic neuron.
The presynaptic neuron fires an action potential that...
5.5K
Neurochemical Transmission: Sites of Drug Action01:26

Neurochemical Transmission: Sites of Drug Action

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Neurochemical transmission, the conduction of electrical impulses between neurons mediated by neurotransmitters, plays a vital role in various physiological processes. Autonomic drugs exert their effects by modulating neurotransmission within the autonomic nervous system. For instance, drugs such as hemicholinium block the precursor uptake necessary for synthesizing acetylcholine, an essential autonomic neurotransmitter. Following synthesis, neurotransmitters are stored in vesicles. Metyrosine...
2.2K
Neuronal Communication01:28

Neuronal Communication

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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...
843
The Synapse02:47

The Synapse

124.8K
Neurons communicate with one another by passing on their electrical signals to other neurons. A synapse is the location where two neurons meet to exchange signals. At the synapse, the neuron that sends the signal is called the presynaptic cell, while the neuron that receives the message is called the postsynaptic cell. Note that most neurons can be both presynaptic and postsynaptic, as they both transmit and receive information.
124.8K
Excitatory and Inhibitory Effects of Neurotransmitters01:29

Excitatory and Inhibitory Effects of Neurotransmitters

9.9K
When an action potential reaches the presynaptic axon terminal, it releases neurotransmitters from the neuron into the synaptic cleft at a chemical synapse. The released neurotransmitter can be excitatory or inhibitory. The critical criteria commonly used to determine whether a molecule is a neurotransmitter at a chemical synapse are the molecule's presence in the presynaptic neuron. Second, its release is in response to strong presynaptic depolarization. And lastly, the presence of...
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相关实验视频

Updated: Jun 25, 2025

Inhibitory Synapse Formation in a Co-culture Model Incorporating GABAergic Medium Spiny Neurons and HEK293 Cells Stably Expressing GABAA Receptors
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Inhibitory Synapse Formation in a Co-culture Model Incorporating GABAergic Medium Spiny Neurons and HEK293 Cells Stably Expressing GABAA Receptors

Published on: November 14, 2014

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双向互联网突触的神经调节.

Savanna-Rae H Fahoum1, Dawn M Blitz1

  • 1Department of Biology and Center for Neuroscience and Behavior, Miami University, Oxford, Ohio, United States.

Journal of neurophysiology
|May 22, 2024
PubMed
概括

神经通过招募神经元和增强它们的通信来协调神经网络. 这种调节了用于招募的内在特性,并加强了用于协调节律运动行为的突触连接.

科学领域:

  • 神经科学是一个神经科学.
  • 神经生物学 神经生物学 神经生物学
  • 甲类神经生理学

背景情况:

  • 灵活的神经网络是节奏运动行为和复杂的神经处理的基础.
  • 神经调节输入允许神经元在多个网络之间切换或参与.
  • 以前,Gly1-SIFamide被证明通过调节内在特性来招募神经元进入双重网络活动.

研究的目的:

  • 调查神经Gly-SIFamide是否也调节互联网突触以进行协调.
  • 确定Gly-SIFamide在口胃神经系统内侧向后部胃 (LPG) 神经元协调中的作用.

主要方法:

  • 在 (Cancer borealis) 的胃口神经系统中利用了双电极电压录音.
  • 检查LPG神经元和胃磨坊神经元 (侧胃,下心脏,背胃) 之间的突触电流.
  • 评估了Gly1-SIFamide对突触电流和神经元卷入的影响.

主要成果:

  • 在标准盐水中,LPG和胃磨坊神经元之间的突触电流是可以忽略不计的.
  • Gly-SIFamide显著增强了这些通常较弱的联网突触电流.
  • 在Gly-SIFamide应用过程中,LPG和胃磨坊神经元表现出相互吸引,证实了功能连接.
关键词:
甘1-SIFamide的使用情况中央模式发生器分级的突触传输是分级的突触传输.神经元交换神经元的交换胃口和胃口之间的关系

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Single Cell Multiplex Reverse Transcription Polymerase Chain Reaction After Patch-clamp
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Single Cell Multiplex Reverse Transcription Polymerase Chain Reaction After Patch-clamp

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Quantifying Synapses: an Immunocytochemistry-based Assay to Quantify Synapse Number
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Quantifying Synapses: an Immunocytochemistry-based Assay to Quantify Synapse Number

Published on: November 16, 2010

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相关实验视频

Last Updated: Jun 25, 2025

Inhibitory Synapse Formation in a Co-culture Model Incorporating GABAergic Medium Spiny Neurons and HEK293 Cells Stably Expressing GABAA Receptors
07:51

Inhibitory Synapse Formation in a Co-culture Model Incorporating GABAergic Medium Spiny Neurons and HEK293 Cells Stably Expressing GABAA Receptors

Published on: November 14, 2014

17.4K
Single Cell Multiplex Reverse Transcription Polymerase Chain Reaction After Patch-clamp
10:44

Single Cell Multiplex Reverse Transcription Polymerase Chain Reaction After Patch-clamp

Published on: June 20, 2018

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Quantifying Synapses: an Immunocytochemistry-based Assay to Quantify Synapse Number
18:11

Quantifying Synapses: an Immunocytochemistry-based Assay to Quantify Synapse Number

Published on: November 16, 2010

35.8K

结论:

  • 神经Gly1-SIFamide通过并行作用调解神经元切换.
  • 它调节了在第二个网络中招募的内在属性,并增强了用于协调的互联网突触.
  • 这些互补的行为使神经元能够在第二个网络中招募和协调,证明了介导的双重功能.