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相关概念视频

Neural Regulation01:37

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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.
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Physiology of Smell and Olfactory Pathway01:20

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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...
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Olfaction01:25

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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.
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Gustation, or the sense of taste, is intrinsically linked to the anatomical structures located on the tongue. This organ's surface, along with the entirety of the oral cavity, is adorned with stratified squamous epithelium. Evident on the tongue are elevated structures known as papillae (singular = papilla), which house the mechanisms for the transduction of gustatory stimuli. Four distinct types of papillae exist, each identified by their unique morphological attributes: the circumvallate,...
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Gustation is a chemical sense that, along with olfaction (smell), contributes to our perception of taste. It starts with the activation of receptors by chemical compounds (tastants) dissolved in the saliva. The saliva and filiform papillae on the tongue distribute the tastants and increase their exposure to the taste receptors.
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The perception of a salty flavor is facilitated by sodium ions within the oral salivary fluid. Upon consumption of a salty substance, salt crystals disassemble, leading to the liberation of its constituents—Na+ and Cl- ions. These ions subsequently dissolve into the salivary fluid present in the oral cavity. The external environment of the gustatory cells experiences an elevation in Na+ concentration, thereby establishing a potent concentration gradient. This gradient propels the...
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在第一口之前:嗅觉期望是否影响胃的感觉和功能?

Sofia Ciccarone1, Eleonora Parrotta1, Giuseppina Porciello1

  • 1Department of Psychology, Sapienza University of Rome, Rome, Italy; IRCCS Fondazione Santa Lucia, Rome, Italy.

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概括

嗅觉信号主动影响身体调节和思维. 这项研究提出,气味作为肠道感觉的预测指南,使它们成为预期驱动,并塑造我们如何解释身体内部状态.

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科学领域:

  • 神经科学是一个神经科学.
  • 生理学 生理学 生理学
  • 感官感知是一种感官感知.

背景情况:

  • 气味不仅仅是被动的感官输入;它们积极影响平衡和认知.
  • 了解嗅觉信号在整感受中的积极作用至关重要.

研究的目的:

  • 提出嗅觉信号作为胃内接收的预测先验.
  • 将肠道感觉重新定义为由期望驱动的体验.
  • 为了研究嗅觉线索如何积极塑造感官推理.

主要方法:

  • 这项研究主要是理论性的,提出了一个新的框架.
  • 它整合了来自神经科学,生理学和心理学的现有知识.

主要成果:

  • 嗅觉信号可以作为预测先验,影响胃内感受.
  • 肠道感觉被重新定义为预期驱动的体验,而不是纯粹的被动输入.
  • 这种通过嗅觉线索主动塑造感官推断具有重大意义.

结论:

  • 嗅觉输入在调节胃内感受方面发挥着积极作用.
  • 气味作为身体内部状态感知的关键调节器.
  • 这一框架为外部感官线索和内部平稳处理之间的相互作用提供了新的视角.