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Related Concept Videos

Functional Classification of Joints01:09

Functional Classification of Joints

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Functional Classification of Joints
The functional classification of joints is determined by the amount of mobility between the adjacent bones. Joints are functionally classified as a synarthrosis or immobile joint, an amphiarthrosis or slightly moveable joint, or as a diarthrosis, a freely moveable joint. Fibrous and cartilaginous joints can be functionally classified as either synarthroses  or amphiarthroses, whereas all synovial joints are classified as diarthroses.
Synarthrosis
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Mesh Analysis01:20

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Mesh analysis is a valuable method for simplifying circuit analysis using mesh currents as key circuit variables. Unlike nodal analysis, which focuses on determining unknown voltages, mesh analysis applies Kirchhoff's voltage law (KVL) to find unknown currents within a circuit. This method is particularly convenient in reducing the number of simultaneous equations that need to be solved.
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Protein Networks02:26

Protein Networks

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An organism can have thousands of different proteins, and these proteins must cooperate to ensure the health of an organism. Proteins bind to other proteins and form complexes to carry out their functions. Many proteins interact with multiple other proteins creating a complex network of protein interactions.
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Structural Classification of Joints01:20

Structural Classification of Joints

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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.
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Related Experiment Video

Updated: Aug 8, 2025

Author Spotlight: Advancing Research on Candida albicans Biofilm-Associated Prosthetic Joint Infections
04:37

Author Spotlight: Advancing Research on Candida albicans Biofilm-Associated Prosthetic Joint Infections

Published on: February 2, 2024

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Global Cluster Analysis and Network Visualization in Prosthetic Joint Infection: A Scientometric Mapping.

Shengjie Dong1, Fengyao Mei2,3, Jiao Jiao Li4

  • 1Orthopedic Department, Yantaishan Hospital, Yantai, China.

Orthopaedic Surgery
|March 1, 2023
PubMed
Summary

Research on prosthetic joint infection (PJI) is growing globally, with the USA leading contributions. Future studies will likely focus on PJI diagnosis and revision management.

Keywords:
BibliometricsGlobal trendProsthetic joint infectionTotal joint arthroplastyVisualized study

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Area of Science:

  • Orthopedics
  • Infectious Diseases
  • Medical Research Trends

Background:

  • Prosthetic joint infection (PJI) is a primary cause of total joint arthroplasty (TJA) failure.
  • Understanding global research trends in PJI is crucial for advancing treatment and prevention strategies.

Purpose of the Study:

  • To investigate global research trends and network visualization in prosthetic joint infection (PJI).
  • To identify key institutions, publications, and research clusters related to PJI.

Main Methods:

  • Bibliometric analysis of 7288 PJI publications from 1980-2022 using Web of Science Core Collection.
  • Network visualization using VOS viewer and R software for bibliographic coupling, co-citation, co-authorship, and co-occurrence analysis.

Main Results:

  • Global publications and research interest in PJI have steadily increased.
  • The USA leads in PJI research contributions, citations, and H-index.
  • Key research clusters include bacterial mechanisms, TJA complications, epidemiology, diagnosis, and revision surgery.

Conclusions:

  • PJI research output is projected to increase significantly.
  • The USA is the dominant contributor to PJI research.
  • Diagnosis and revision management are emerging as key areas for future PJI research.