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Related Concept Videos

Data Collection by Experiments01:13

Data Collection by Experiments

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Data collection is a systematic method of obtaining, observing, measuring, and analyzing accurate information. An experimental study is a standard method of data collection that involves the manipulation of the samples by applying some form of treatment prior to data collection. It refers to manipulating one variable to determine its changes on another variable. The sample subjected to treatment is known as “experimental units.”
An example of the experimental method is a public...
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Measuring the Carotid to Femoral Pulse Wave Velocity (Cf-PWV) to Evaluate Arterial Stiffness05:51

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Here, a method that enables quick, efficient, and inexpensive preparation of polyacrylamide gels in a multiwell plate format is described. The method does not require any specialized equipment and could be easily adopted by any research laboratory. It would be particularly useful in research focused on understanding stiffness-dependent cell...
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Flexor tendons in the hand are commonly injured, leading to impaired hand function. However, the scar-tissue healing response is not well characterized. A murine model of flexor tendon healing is demonstrated here. This model can enhance overall understanding of the healing process and assess therapeutic approaches to improve...
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Reefshape: A System for the Efficient Collection and Automated Processing of Time-Series Underwater Photogrammetry Data for Benthic Habitat Monitoring13:35

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Related Experiment Video

Updated: Jan 20, 2026

Measuring the Carotid to Femoral Pulse Wave Velocity Cf-PWV to Evaluate Arterial Stiffness
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Measuring the Carotid to Femoral Pulse Wave Velocity Cf-PWV to Evaluate Arterial Stiffness

Published on: May 3, 2018

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FLEXOR: A support tool for efficient and seamless experiment data processing to evaluate musculo-articular stiffness.

F Paris-Garcia1, A Ruiz-Zafra2, M Noguera3

  • 1Department of Sports and Computer Science, Section of Physical Education and Sports, Faculty of Sports Sciences, University Pablo de Olavide, ES-41013 Seville, Spain.

Computer Methods and Programs in Biomedicine
|September 2, 2019
PubMed
Summary

This study introduces FLEXOR, a new software tool that automates musculo-articular stiffness (MAS) analysis. FLEXOR significantly reduces analysis time and errors, improving efficiency for sports performance and injury prevention applications.

Keywords:
Biomedical signal processingFiltering algorithmsMusculo-articular stiffnessSoftware engineering

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Related Experiment Videos

Last Updated: Jan 20, 2026

Measuring the Carotid to Femoral Pulse Wave Velocity Cf-PWV to Evaluate Arterial Stiffness
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Area of Science:

  • Biomechanics
  • Sports Science
  • Rehabilitation Engineering

Background:

  • Musculo-articular stiffness (MAS) evaluation is crucial for sports performance and injury prevention.
  • Current MAS analysis is manual, time-consuming, and prone to errors.
  • There is a need for automated, user-friendly tools for MAS data analysis and visualization.

Purpose of the Study:

  • To develop an automated software tool, FLEXOR, for efficient and accurate musculo-articular stiffness analysis.
  • To streamline the process of MAS data management and visualization.
  • To reduce the time and potential for errors associated with manual MAS analysis.

Main Methods:

  • Developed FLEXOR using mathematical methods and novel algorithms for automated data stream curve adjustment.
  • Implemented a component-based software development (CBSD) process and a 4+1 view model architecture.
  • Integrated physiological fundamentals for biomechanical measurements and included features for parameter definition, peak/valley detection, and on-the-fly results display.

Main Results:

  • Created a multiplatform software tool simplifying complex manual MAS analysis procedures.
  • Reduced processing times from hours to minutes, enhancing efficiency.
  • Validated the tool on diverse datasets, showing consistent and identical results compared to previous methods and real-time trials.

Conclusions:

  • The developed FLEXOR tool addresses a critical gap in MAS measurement analysis, management, and visualization.
  • FLEXOR empowers analysts to manage studies, explore parameters, and conduct real-time trials.
  • The software facilitates shared studies and enhances overall research capabilities in MAS evaluation.