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February 1, 1989Proceedings of the National Academy of Sciences191 citationsOpen Access

Fourier analysis of cell motility: correlation of motility with metastatic potential.

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APAlan W. PartinJSJoseph S. SchoenigerJMJames L. Mohler

Key Points

  • This research aims to quantify different types of cell motility using Fourier analysis to correlate with metastatic potential.
  • Developed a computerized system for quantifying cell motility using Fourier analysis.
  • Assessed cell motility factors such as cell shape changes, translation, and size across tumor cell lines of rat prostatic cancer.
  • Analyzed the correlation of pseudopodal extension with metastatic potential.
  • Fourier motility coefficients for pseudopodal extension showed a strong correlation with metastatic potential.
  • Quantitative measurements of cell motility were successfully established.
  • This analysis supports further investigation into cellular behaviors related to tumor biology.

Abstract

We report the development of a computerized, mathematical system for quantitating the various types of cell motility. This Fourier analysis method simultaneously quantifies for individual cells (i) temporal changes in cell shape represented by cell ruffling, undulation, and pseudopodal extension, (ii) cell translation, and (iii) average cell size and shape. This spatial-temporal Fourier analysis was tested on a series of well-characterized animal tumor cell lines of rat prostatic cancer to study in a quantitative manner the correlation of cell motility with increasing in vivo metastatic potential. Fourier motility coefficients measuring pseudopodal extension correlated best with metastatic potential in the cell lines studied. This study demonstrated that Fourier analysis provides quantitative measurement of cell motility that may be applied to the study of biological processes. This analysis should aid in the study of the motility of individual cells in various areas of cellular and tumor biology.

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Cite This Study

Partin et al. (1989) studied this question.

synapsesocial.com/papers/6a0db22fe51d8d6d0c09ce0bhttps://doi.org/10.1073/pnas.86.4.1254
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