Title :
Ultrasound based muscle kinematics measurement with tracklet stitching
Author :
Otto, Paul ; Sikdar, Sujit ; Hyun Soo Im ; Gavelli, Frances
Author_Institution :
Dept. of Electr. & Comput. Eng., George Mason Univ., Fairfax, VA, USA
Abstract :
The objective of this study is to develop and validate an ultrasound (US) tissue tracking algorithm for measuring muscle velocity. This algorithm is designed to (1) be applicable to a wide variety of muscles, (2) overcome the limitations of previously published methods that required visualization of complete muscle fascicles, and (3) use B-mode imagery from commercially-available equipment that can be applied in a clinical office-type setting. This is accomplished by combining multiple block based tracking methods and filtering their output tracklets to create a velocity estimate. The algorithm was validated with a combination of Field II and in vivo MR velocity measurements. The average rectus femoris displacement error for the US data (average of 12 cycles) ranged from 0.7 to 6.4mm for flexion displacement and from 1.4 to 8.0mm during extension.
Keywords :
acoustic filters; biomechanics; biomedical MRI; biomedical ultrasonics; kinematics; muscle; ultrasonic imaging; velocity measurement; B-mode imagery; flexion displacement; in vivo MR velocity measurements; multiple block based tracking methods; muscle fascicles; muscle velocity measurements; rectus femoris displacement error; tracklet stitching; ultrasound based muscle kinematics measurement; ultrasound tissue tracking algorithm; Feature extraction; Muscles; Speckle; Tracking; Ultrasonic imaging; Ultrasonic variables measurement; Velocity measurement; feature tracking; speckle; tracklet; ultrasound;
Conference_Titel :
Ultrasonics Symposium (IUS), 2014 IEEE International
Conference_Location :
Chicago, IL
DOI :
10.1109/ULTSYM.2014.0468