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相关概念视频

Physiology of Smell and Olfactory Pathway01:20

Physiology of Smell and Olfactory Pathway

8.2K
Humans detect odors with the help of specialized cells located in the upper part of the nasal cavity, called olfactory receptor neurons (ORNs). ORNs possess hair-like structures called cilia, which are receptive to sensations from the inhaled air. When an odorant molecule binds to a specific receptor on the cell of the cilia, it leads to a series of events that ultimately cause the ORN to send electrical signals to the olfactory bulb in the brain through the olfactory nerves.
The olfactory...
8.2K
Olfaction01:25

Olfaction

44.3K
The sense of smell is achieved through the activities of the olfactory system. It starts when an airborne odorant enters the nasal cavity and reaches olfactory epithelium (OE). The OE is protected by a thin layer of mucus, which also serves the purpose of dissolving more complex compounds into simpler chemical odorants. The size of the OE and the density of sensory neurons varies among species; in humans, the OE is only about 9-10 cm2.
The olfactory receptors are embedded in the cilia of the...
44.3K
Olfactory Receptors: Location and Structure01:03

Olfactory Receptors: Location and Structure

9.1K
The process of olfaction, also known as the sense of smell, is a sophisticated chemical response system. The specialized sensory neurons that facilitate this process, known as olfactory receptor neurons, are situated in an upper segment of the nasal cavity, known as the olfactory epithelium. Olfactory sensory neurons are bipolar, with their dendrites extending from the epithelium's apex into the mucus that lines the nasal cavity. Airborne molecules, when inhaled, traverse the olfactory...
9.1K
Functional Brain Systems: Limbic System01:15

Functional Brain Systems: Limbic System

2.4K
The limbic system, often called the "emotional brain," is a complex set of structures located deep within the brain. The intricate network of the limbic system supports a wide range of psychological functions, from emotional regulation to memory formation and sensory processing. This functional brain region encompasses specific parts of the diencephalon and the cerebrum, integrating the higher mental functions of the cerebral cortex with the primitive emotional responses of the deep brain...
2.4K
Physiology of Emotion01:20

Physiology of Emotion

675
The physiology of emotions is a multifaceted process involving the autonomic nervous system, brain structures, hormones, and neurotransmitters. This intricate interplay dictates how emotions manifest in the body and influence behavior.
Autonomic Nervous System
The autonomic nervous system (ANS) plays a critical role in emotional responses by regulating involuntary physiological functions. It consists of two main components: the sympathetic and parasympathetic systems. The sympathetic system...
675
Neural Regulation01:37

Neural Regulation

39.2K
Digestion begins with a cephalic phase that prepares the digestive system to receive food. When our brain processes visual or olfactory information about food, it triggers impulses in the cranial nerves innervating the salivary glands and stomach to prepare for food.
39.2K

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相关实验视频

Updated: Jun 14, 2025

A Lateralized Odor Learning Model in Neonatal Rats for Dissecting Neural Circuitry Underpinning Memory Formation
10:42

A Lateralized Odor Learning Model in Neonatal Rats for Dissecting Neural Circuitry Underpinning Memory Formation

Published on: August 18, 2014

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侵略被释放:从气味到大脑的神经回路

Rhea Singh1, Kyle Gobrogge2

  • 1The Mortimer B. Zuckerman Mind Brain Behavior Institute, Department of Neuroscience, Columbia University, New York, NY 10027, USA.

Brain sciences
|August 29, 2024
PubMed
概括

这篇评论探讨了控制动物侵略性的神经回路,重点关注嗅觉线索和大脑区域. 了解这些途径是开发攻击性障碍新疗法的关键.

科学领域:

  • 神经科学是一个神经科学.
  • 行为生物学 行为生物学

背景情况:

  • 侵略性对于生存至关重要,但其失调导致了人类的重大负担.
  • 过去的研究在神经电路分辨率方面遇到了局限性,阻碍了对侵略机制的理解.

研究的目的:

  • 审查挑起侵略的刺激和检测,重点关注动物的嗅觉系统.
  • 检查核心攻击区域,它们的相互作用和前额叶皮层连接.
  • 讨论认知控制在调节侵略和潜在治疗干预方面的作用.

主要方法:

  • 审查近期光遗传学,药物遗传学,单细胞RNA测序和体内电生理学的进展.
  • 分析动物攻击电路,包括嗅觉通路和前额叶皮层集成.
  • 探索认知控制机制和治疗策略.

主要成果:

  • 最近的技术进步为侵略的神经基础提供了新的见解.
  • 已经确定了参与侵略的特定神经通路和大脑区域.
  • 人们越来越了解前额叶皮质在调节侵略方面的作用.

结论:

  • 对动物攻击电路的专注理解为新的治疗策略提供了基础.
关键词:
攻击性 侵略性 攻击性中间杏仁体 (MeA) 的前额叶皮层前额叶皮层动物 动物 动物腹部前乳母细胞核 (PMv)腹中介质下丘脑 (VMHvl) 的情况

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In-depth Physiological Analysis of Defined Cell Populations in Acute Tissue Slices of the Mouse Vomeronasal Organ
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In-depth Physiological Analysis of Defined Cell Populations in Acute Tissue Slices of the Mouse Vomeronasal Organ

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A Lateralized Odor Learning Model in Neonatal Rats for Dissecting Neural Circuitry Underpinning Memory Formation
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In-depth Physiological Analysis of Defined Cell Populations in Acute Tissue Slices of the Mouse Vomeronasal Organ
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  • 针对特定的神经通路为治疗侵略性障碍提供了潜在的潜力.
  • 对认知控制机制的进一步研究可以为临床干预提供信息.