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Title page for ETD etd-02252008-110213


Type of Document Master's Thesis
Author Hegarty, Meghan Sarah,
Author's Email Address mshegart@ncsu.edu
URN etd-02252008-110213
Title Design of an Intelligent Compression Stocking for Reducing Ulcer Healing Time
Degree Master of Science
Graduate Program Biomedical Engineering
Advisory Committee
Advisor Name Title
Dr. Edward Grant Committee Chair
Dr. Brooke Steele Committee Member
Dr. Carol Giuliani Committee Member
Keywords
  • compression therapy
  • venous leg ulcers
  • auscultation
  • bio-impedance
  • monitoring edema
  • monitoring blood flow velocity
Date of Defense 2008-02-20
Availability unrestricted
Abstract
Venous leg ulcers remain a problem in the United States, costing the health care industry nearly $1 billion annually. A major portion of this spending is incurred as a result of prolonged healing time. Compression therapy is known to promote recovery. This technique may be improved by allowing for dynamic customization of treatment parameters. The design of a sensing system for an intelligent compression stocking is described in this thesis. This sensing system will eventually serve as a means by which to quantify the performance of the stocking through the continuous measurement of key physiological variables. Blood flow velocity will be measured using an acoustic array, and leg volume will be quantified using bio-impedance techniques. Preliminary experiments were conducted in order to verify the responsiveness and practicality of using these technologies to monitor ulcer healing. The Edema Monitoring System was capable of resolving small changes in leg volume resulting from artificially-induced swelling. Unfortunately, the Acoustic Blood Flow Measurement System did not perform acceptably in terms of accuracy and robustness. Future directions for this technology include finding a more acceptable means by which to measure blood flow velocity, improving the sensing system by incorporating additional optimization parameters, exploring the use of alternative actuation mechanisms, and expanding its use to encompass all medical-grade compression stockings.
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