4.2 Article

Effects of Tactile Sensitivity on Structural Variability of Digit Forces during Stable Precision Grip

Journal

BIOMED RESEARCH INTERNATIONAL
Volume 2016, Issue -, Pages -

Publisher

HINDAWI LTD
DOI: 10.1155/2016/8314561

Keywords

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Funding

  1. National Natural Science Foundation of China [31200744]
  2. Key Research & Development Programs of Shandong Province [2015GSF118127]
  3. China Postdoctoral Science Foundation [2014M560558, 2015T80723]
  4. Postdoctoral Innovation Foundation of Shandong Province [201401012]
  5. Young Scholars Program of Shandong University
  6. Science Foundation of Qilu Hospital of Shandong University

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This study investigated the effects of fingertip tactile sensitivity on the structural variability of thumb and index finger forces during stable precision grip. Thirty right-handed healthy subjects participated in the experiment. Transient perturbation of tactile afferents was achieved by wrapping up the distal pads of the thumb or index finger with transparent polyethylene films. The time-dependent structure of each digit force and the variability of interdigit force correlation were examined by detrended fluctuation analysis (DFA) and detrended cross-correlation analysis (DCCA), respectively. Results showed that the tactile sensitivity affected.. DFA of the vertical shear force Fx (F-3,F-239 = 6.814, p < 0.001) and alpha(DCCA) of Fx (chi(2) = 16.440, p < 0.001). No significant difference was observed in.. DFA or.. DCCA of the normal forces produced by the thumb or index finger. These results suggested that with blurred tactile sensory inputs the central nervous system might decrease the vertical shear force flexibility and increase the interdigit shear force coupling in order to guarantee a stable grip control of an object against gravity. This study shed light on the feedback and feed-forward strategies involved in digit force control and the role of SA-II afferent fibers in regulation of vertical shear force variability for precision grip.

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