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関連する概念動画

Structural Joints: Synovial Joints01:16

Structural Joints: Synovial Joints

7.4K
Synovial joints are the most common type of joint in the body. A key structural characteristic for a synovial joint is the presence of a joint cavity. This fluid-filled space is where the articulating surfaces of the bones contact each other. Also, unlike fibrous or cartilaginous joints, the articulating bone surfaces at a synovial joint are not directly connected to each other with fibrous connective tissue or cartilage. This gives the bones of a synovial joint the ability to move smoothly...
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Joints01:26

Joints

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Joints, also called articulations or articular surfaces, are points at which ligaments or other tissues connect adjacent bones. Joints permit movement and stability, and can be classified based on their structure or function.
Structural joint classifications are based on the material that makes up the joint as well as whether or not the joint contains a space between the bones. Joints are structurally classified as fibrous, cartilaginous, or synovial.
Fibrous Joints Are Immovable
The bones of a...
35.9K
Development of the Limb Synovial Joints01:07

Development of the Limb Synovial Joints

2.4K
Joints form during embryonic development in conjunction with the formation and growth of the associated bones. The embryonic tissue that gives rise to all bones, cartilage, and connective tissues of the body is called mesenchyme.
The mesenchymal stem cells differentiate into chondrocytes that form the hyaline cartilage, and later the cartilaginous model of the bone. This model further transforms into a bone. This process is known as endochondral ossification.
During development, the limbs...
2.4K
Introduction to Joints00:58

Introduction to Joints

5.0K
The adult human body usually has 206 bones, and except for the hyoid bone in the neck, each bone is connected to at least one other bone. Joints are the location where bones come together. Many joints allow for movement between the bones. At these joints, the articulating surfaces of the adjacent bones can move smoothly against each other. However, the bones of other joints may be joined by connective tissue or cartilage. These joints are designed for stability and provide little or no...
5.0K
Structural Classification of Joints01:20

Structural Classification of Joints

7.5K
Joints, also known as articulations, are classified based on their structural characteristics, i.e., based on whether the articulating surfaces of the adjacent bones are directly connected by fibrous connective tissue or cartilage, or whether the articulating surfaces contact each other within a fluid-filled joint cavity. These differences serve to divide the joints of the body into three structural classifications.
A fibrous joint is where the adjacent bones are united by fibrous connective...
7.5K
Knee Joint01:23

Knee Joint

3.4K
The knee joint is the most complicated joint in the body. It consists of three articulations– two tibiofemoral and one patellofemoral. As is characteristic of synovial joints, the knee joint has a thin articular capsule that partially surrounds this joint cavity. Additionally, several ligaments, muscles, and cartilaginous structures support the movement of the knee.
A total of seven ligaments support the knee joint. The patellar ligament, which is also attached to the quadriceps femoris...
3.4K

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A Friction Testing-Bioreactor Device for Study of Synovial Joint Biomechanics, Mechanobiology, and Physical Regulation
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シノビア界面: 細胞から人間への交差点にある.

Peter Mandl1

  • 1Division of Rheumatology, Medical University of Vienna, Vienna, Austria; Ludwig Boltzmann Institute of Arthritis and Rehabilitation, Vienna, Austria.

Annals of anatomy = Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft
|February 15, 2026
PubMed
まとめ

炎症性関節炎でシノヴィアル炎症を検出することは,非常に難しいことです. 将来の進歩には,シノビウムを多次元的なインターフェースとして評価するハイブリッドアプローチが必要です.

科学分野:

  • レウマトロジーと免疫学
  • バイオメディカルエンジニアリング
  • クリニカル・メディシン 臨床医学

背景:

  • シノビウムは,関節内の免疫的,機械的,感覚的,解剖学的信号を統合する.
  • リウマティック疾患におけるシノヴィアル炎症は,複雑な生物学的および臨床的プロセスである.
  • シノビティスの検出とモニタリングのための現在の方法は,信頼性と臨床結果の相関性において制限があります.

研究 の 目的:

  • シノビウムを多次元的なインターフェースとして枠組づけるために.
  • シノビア炎症の臨床検出とモニタリングにおける課題を探求する.
  • 炎症性関節炎における疾患活動の評価のための将来の方向性を提案する.

主な方法:

  • 細胞モデル,臨床検査,イメージング研究からの証拠のレビュー.
  • 免疫・シナヴィアル・ストロマル相互作用の分析.
  • 新興監視戦略の統合.

主要な成果:

  • 臨床的共同評価は,中程度の信頼性と患者の報告との限られた合意を示しています.
  • 超音波やMRIのようなイメージング方式は,シノビティスの可視化を改善しますが,臨床的結果を一貫して改善していません.
キーワード:
シノヴィアルインターフェイスシノビチス症候群 (シノビチス)画像処理はイメージング共同評価について炎症のモニタリング 炎症のモニタリング患者によって報告されたアウトカム.

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A 3D System for Culturing Human Articular Chondrocytes in Synovial Fluid
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Author Spotlight: Isolation and Culture of Primary Synovial Macrophages and Fibroblasts from Murine Arthritis Tissue
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A 3D System for Culturing Human Articular Chondrocytes in Synovial Fluid
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  • 改善された検出と効果的な治療的意思決定の間には依然としてギャップが残っています.
  • 結論:

    • シノビウムは,生物学,解剖学,知覚,技術を結びつける多次元的なインターフェースとして機能します.
    • 炎症性関節炎における将来の進歩は,ハイブリッド評価アプローチに依存します.
    • 単一の手法を越えて,インターフェースベースの評価へと移行することは,疾患の活動モニタリングにとって極めて重要です.