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相关概念视频

Muscles for Facial Expressions01:14

Muscles for Facial Expressions

2.2K
The craniofacial muscles are a collection of approximately 20 thin skeletal muscles situated beneath the skin of the face and scalp. These muscles, primarily responsible for the vast array of human facial expressions, originate from the bones or fibrous structures of the skull and extend outwards to connect with the skin. While most skeletal muscles in the body are enveloped in thick fascia, facial muscles generally have a more delicate fascial covering, with the buccinator muscle being a...
2.2K
Facial Feedback Hypothesis01:24

Facial Feedback Hypothesis

186
Charles Darwin proposed that facial expressions are an evolutionary adaptation for communication. He argued that these expressions are not influenced by culture but are universal across species. For example, a snarling expression with exposed teeth signals a threat in many animals, including humans. Darwin also suggested that displaying an emotion can intensify the feeling. Smiling, for example, could enhance one's sense of happiness. This idea laid the foundation for understanding the role...
186
Assessment of Airway, Skin Color, and Use of Accessory Muscles01:30

Assessment of Airway, Skin Color, and Use of Accessory Muscles

1.0K
A thorough assessment of respiratory health is paramount in clinical settings to identify and manage respiratory distress and ensure adequate oxygenation. This article elaborates on the critical aspects of respiratory evaluation, including airway assessment, skin color examination, and the observation of accessory muscle use, which are integral to effectively diagnosing and managing patients with respiratory conditions.
Introduction
The initial evaluation of a patient's respiratory system...
1.0K

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相关实验视频

Updated: Jul 16, 2025

Author Spotlight: 3D Movement Assessment of Maxillary Posterior Teeth in Clear Aligner Treatment
07:32

Author Spotlight: 3D Movement Assessment of Maxillary Posterior Teeth in Clear Aligner Treatment

Published on: February 23, 2024

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在最大骨间位置和生理休息位置之间的3D面部变化.

Ingo Oblak, Nataša Ihan Hren, Miha Verdenik

    The International journal of prosthodontics
    |September 12, 2023
    PubMed
    概括

    在最大间位置 (MIP) 和生理休息位置 (RP) 之间,面部外观发生显著的变化. 3D扫描显示了面部高度,唇部位置和口腔宽度的改变,强调了 mandibular 的一致定位,以便进行准确的分析.

    科学领域:

    • 牙科 牙科是指牙科的专业.
    • 生物医学工程 生物医学工程
    • 面部解剖学 面部解剖学

    背景情况:

    • 准确的3D面部分析需要一致的患者定位.
    • 了解与下位置相关的软组织变化对于牙科和正牙治疗至关重要.

    研究的目的:

    • 评估面部软组织在最大间位置 (MIP) 和生理休息位置 (RP) 之间的变化.
    • 使用3D扫描技术量化面部参数的差异.

    主要方法:

    • 使用3D光学扫描仪在MIP和RP中获得83名志愿者的3D面部表面扫描.
    • 确定了21个头脑测量软组织地标,并使用t测试比较了面部参数 (宽度,高度,深度,角度,比率).
    • 使用最适合的方法对不同位置的面部表面差异进行了区域分析.

    主要成果:

    • 面部高度 (nasion-gnathion) 在MIP中缩短了约1.2毫米,主要是由于唇部收缩 (0.8毫米).
    • 在MIP中,口腔宽度显著增加,而其他面部宽度保持不变.
    • 唇角和上方的形弧变化;区域分析显示了下和鼻下区域的变化.

    结论:

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    Single-stage Dynamic Reanimation of the Smile in Irreversible Facial Paralysis by Free Functional Muscle Transfer
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    Last Updated: Jul 16, 2025

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  • 3D面部扫描有效地可视化了不同下位置的面部外观变化.
  • 持续的患者指导和下位置的监测对于可靠的3D面部分析至关重要.
  • 调查结果强调了在面部评估中考虑闭合位置的重要性.