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Synchronization of sacral skin blood flow oscillations in response to local heating.

, and . EMBC, page 1753-1756. IEEE, (2011)

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Effect of Spinal Cord Injury on Nonlinear Complexity of Skin Blood Flow Oscillations., , and . HCI (8), volume 6768 of Lecture Notes in Computer Science, page 345-355. Springer, (2011)Effects of Muscle Fatigue and Recovery on Complexity of Surface Electromyography of Biceps Brachii., , , , , and . Entropy, 23 (8): 1036 (2021)Application of Multiscale Sample Entropy in Assessing Effects of Exercise Training on Skin Blood Flow Oscillations in People with Spinal Cord Injury., , , , , , and . Entropy, 25 (4): 690 (April 2023)Using recurrence network approach to quantify nonlinear dynamics of skin blood flow in response to loading pressure., and . EMBC, page 4196-4199. IEEE, (2012)Multifractal analysis of nonlinear complexity of sacral skin blood flow oscillations in older adults., , , and . Medical Biol. Eng. Comput., 49 (8): 925-934 (2011)Assessing skin blood flow function in people with spinal cord injury using the time domain, time-frequency domain and deep learning approaches., and . Biomed. Signal Process. Control., (July 2023)Synchronization of sacral skin blood flow oscillations in response to local heating., and . EMBC, page 1753-1756. IEEE, (2011)Enhanced phase synchronization of blood flow oscillations between heated and adjacent non-heated sacral skin., and . Medical Biol. Eng. Comput., 50 (10): 1059-1070 (2012)Using Multiscale Entropy to Assess the Efficacy of Local Cooling on Reactive Hyperemia in People with a Spinal Cord Injury., , , , , and . Entropy, 21 (1): 90 (2019)Assessing complexity of heart rate variability in people with spinal cord injury using local scale exponents., , , , , and . EMBC, page 6381-6384. IEEE, (2014)