DocumentCode :
591869
Title :
Bio-electromechanical Model of the Muscle Spindle
Author :
Silva, R. ; Tabouillot, T.
Author_Institution :
Integrated Biosci. Lab., Univ. Simon Bolivar, Caracas, Venezuela
fYear :
2012
fDate :
7-9 Nov. 2012
Firstpage :
143
Lastpage :
146
Abstract :
This work offers a biomimetic, mechatronic linear model for the passive behavior of dynamic nuclear bag fibers of the muscle spindle, capable of transducing joint position and velocity into an electrical signal, similar to that of the afferent anulospiral fibers. We built a mechatronic joint system, composed of a dashpot and a spring in series (Maxwell System) and mechanically coupled the spring to a frequency-modulated oscillator via a variable resistor. The system was capable of sensing the speed of the joint and converting it into a frequency modulated signal in a way similar to that reproduced by the dynamic nuclear bag fibers of the muscle spindle. We were able to prove the concept that the dynamic nuclear bag fibers, effectively behave like a Maxwell system. This is a very simple design that can easily be incorporated into biorobotic systems, greatly improving the accurate positioning of a mechanical joint if it is moving at a measurable speed.
Keywords :
bioelectric phenomena; biomechanics; biomedical equipment; biomimetics; mechatronics; medical robotics; muscle; oscillators; position control; resistors; velocity control; velocity measurement; Maxwell system; afferent anulospiral fibers; bioelectromechanical model; biomimetic model; biorobotic systems; dashpot; dynamic nuclear bag fibers; electrical signal velocity; frequency modulated signal; frequency-modulated oscillator; mechanical coupling; mechanical joint positioning; mechatronic joint system; mechatronic linear model; muscle spindle; passive behavior; speed sensing; spring; transducing joint position; variable resistor; Biological system modeling; Educational institutions; Joints; Muscles; Optical fiber sensors; Robot sensing systems; Springs; Muscle Spindle; biomimetic; electro-mechanical model;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Andean Region International Conference (ANDESCON), 2012 VI
Conference_Location :
Cuenca
Print_ISBN :
978-1-4673-4427-2
Type :
conf
DOI :
10.1109/Andescon.2012.41
Filename :
6424138
Link To Document :
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