Voluntary movement controlled by the surface EMG signal for tissue-engineered skeletal muscle on a gripping tool.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 23444880.
- Also identified by DOI 10.1089/ten.TEA.2012.0421 and PMC identifier 3700140.
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Abstract
We have developed a living prosthesis consisting of a living muscle-powered device, which is controlled by neuronal signals to recover some of the functions of a lost extremity. A tissue-engineered skeletal muscle was fabricated with two anchorage points from a primary rat myoblast cultured in a collagen Matrigel mixed gel. Differentiation to the skeletal muscle was confirmed in the tissue-engineered skeletal muscle, and the contraction force increased with increasing frequency of electric stimulation. Then, the tissue-engineered skeletal muscle was assembled into a gripper-type microhand. The tissue-engineered skeletal muscle of the microhand was stimulated electrically, which was then followed by the voluntary movement of the subject's hand. The signal of the surface electromyogram from a subject was processed to mimic the firing spikes of a neuromuscular junction to control the contraction of the tissue-engineered skeletal muscle. The tele-operation of the microhand was demonstrated by optical microscope observations.
Medical subject headings
- Electromyography
- Muscle, Skeletal
- Tissue Engineering