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相关概念视频

Neural Control of Respiration01:18

Neural Control of Respiration

2.4K
The neural regulation of respiration is a meticulously coordinated process primarily controlled by the respiratory centers located within the brainstem. These centers, composed of specialized neurons, transmit nerve impulses that control the contraction and relaxation of our respiratory muscles.
Respiratory Centers in the Brainstem
Two primary areas comprise the respiratory center: the medullary respiratory center in the medulla oblongata and the pontine respiratory group in the pons. The...
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Other Factors Affecting Respiration Centers01:17

Other Factors Affecting Respiration Centers

845
Breathing is primarily an involuntary activity regulated by the brainstem respiratory centers. However, it can also be consciously controlled, allowing us to hold our breath or take deeper breaths when needed. This voluntary control is facilitated by the cerebral motor cortex, which bypasses the medullary centers to stimulate the respiratory muscles directly.
However, the ability to hold one's breath voluntarily is not limitless. When the CO2 concentration in the blood reaches a critical...
845
Physiological Control of Respiration01:23

Physiological Control of Respiration

2.1K
Introduction
Breathing, a seemingly passive process, is regulated by the respiratory center in the brainstem. This center coordinates the involuntary control of respirations, which means it occurs without conscious effort, ensuring a smooth and uninterrupted pattern.
Regulation of Ventilation
The body maintains ventilation by monitoring levels of carbon dioxide (CO2), oxygen (O2), and hydrogen ion concentration (pH) in the arterial blood. Among these factors, the level of CO2 plays a crucial...
2.1K
Physiology of Respiration II: Neurogenic Control of Respiration01:22

Physiology of Respiration II: Neurogenic Control of Respiration

643
The neurogenic control of respiration coordinates various neural networks and pathways to regulate breathing rate and depth, meeting the body's oxygen and carbon dioxide exchange requirements. This system adapts to physiological and environmental conditions, ensuring optimal breathing patterns.
Central Control
The brainstem is the primary site of central control, hosting respiratory centers:
643
Mechanism of Breathing II: Expiration01:23

Mechanism of Breathing II: Expiration

1.1K
The Physiology of Expiration: A Seamless Respiratory Process
Expiration, or exhaling, is a complex physiological process that begins as the inspiratory muscles begin to relax. This relaxation triggers a series of events that epitomize the efficiency of the respiratory system.
Mechanism of Expiration:
1.1K
Breathing01:05

Breathing

59.2K
The process of breathing, inhaling and exhaling, involves the coordinated movement of the chest wall, the lungs, and the muscles that move them. Two muscle groups with important roles in breathing are the diaphragm, located directly below the lungs, and the intercostal muscles, which lie between the ribs. When the diaphragm contracts, it moves downward, increasing the volume of the thoracic cavity and creating more room for the lungs to expand. When the intercostal muscles contract, the ribs...
59.2K

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相关实验视频

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Minimally Invasive Murine Laryngoscopy for Close-Up Imaging of Laryngeal Motion During Breathing and Swallowing
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Minimally Invasive Murine Laryngoscopy for Close-Up Imaging of Laryngeal Motion During Breathing and Swallowing

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呼声的呼吸控制

Steffen R Hage1,2

  • 1Neurobiology of Social Communication, Department of Otolaryngology-Head and Neck Surgery, Hearing Research Centre, University of Tübingen, Medical Center, Tübingen, Germany.

Science (New York, N.Y.)
|March 7, 2024
PubMed
概括

研究人员发现了一个关键的脑干电路, 这项发现有助于我们更好地了解喉中的声呼吸控制.

科学领域:

  • 神经科学
  • 呼吸系统生理学
  • 语言科学

背景情况:

  • 语音与呼吸协调是发言的基础.
  • 这种协调的基础的神经机制仍然不完全理解.
  • 大脑干在整合呼吸和喉功能方面起着至关重要的作用.

研究的目的:

  • 识别和描述负责声呼吸协调的大脑干中的特定神经回路.
  • 阐明这个电路在呼吸过程中控制喉活动的作用.

主要方法:

  • 在动物模型中使用体内电生理记录.
  • 使用光遗传和化学遗传技术来操纵神经活动.
  • 进行喉电肌图和呼吸监测.

主要成果:

  • 在大脑干中发现了一种新的神经元群.
  • 证明这个电路的激活直接调节喉肌肉活动.
  • 显示这种电路对于同步喉抽取/吸收与呼吸阶段至关重要.

结论:

  • 一个关键的脑干电路声喉呼吸协调已经揭示.
  • 这条电路提供了呼吸控制中心和喉运动系统之间的关键联系.

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  • 了解这个电路可以让我们了解语音产生的神经基础以及语音障碍的潜在治疗目标.