A synergy-based hand control is encoded in human motor cortical areas

被引:0
|
作者
Leo, Andrea [1 ,2 ]
Handjaras, Giacomo [1 ]
Bianchi, Matteo [2 ,3 ]
Marino, Hamal [2 ]
Gabiccini, Marco [2 ,3 ,4 ]
Guidi, Andrea [2 ]
Scilingo, Enzo Pasquale [2 ,5 ]
Pietrini, Pietro [1 ,2 ,6 ,7 ]
Bicchi, Antonio [2 ,3 ]
Santello, Marco [8 ]
Ricciardi, Emiliano [1 ,2 ]
机构
[1] Univ Pisa, Lab Clin Biochem & Mol Biol, Pisa, Italy
[2] Univ Pisa, Res Ctr E Piaggio, Pisa, Italy
[3] Ist Italiano Tecnol, Adv Robot Dept, Genoa, Italy
[4] Univ Pisa, Dept Civil & Ind Engn, Pisa, Italy
[5] Univ Pisa, Dept Informat Engn, Pisa, Italy
[6] Pisa Univ Hosp, Clin Psychol Branch, Pisa, Italy
[7] IMT Sch Adv Studies Lucca, Lucca, Italy
[8] Arizona State Univ, Sch Biol & Hlth Syst Engn, Tempe, AZ USA
来源
ELIFE | 2016年 / 5卷
基金
欧洲研究理事会;
关键词
POSTERIOR PARIETAL CORTEX; MONKEY PRIMARY MOTOR; FINGER MOVEMENTS; MUSCLE SYNERGIES; HUMAN BRAIN; PRINCIPAL COMPONENTS; INDIVIDUATED FINGER; SENSORIMOTOR CORTEX; MYOELECTRIC CONTROL; GRASP TRAJECTORIES;
D O I
10.7554/el.ife.13420
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
How the human brain controls hand movements to carry out different tasks is still debated. The concept of synergy has been proposed to indicate functional modules that may simplify the control of hand postures by simultaneously recruiting sets of muscles and joints. However, whether and to what extent synergic hand postures are encoded as such at a cortical level remains unknown. Here, we combined kinematic, electromyography, and brain activity measures obtained by functional magnetic resonance imaging while subjects performed a variety of movements towards virtual objects. Hand postural information, encoded through kinematic synergies, were represented in cortical areas devoted to hand motor control and successfully discriminated individual grasping movements, significantly outperforming alternative somatotopic or muscle-based models. Importantly, hand postural synergies were predicted by neural activation patterns within primary motor cortex. These findings support a novel cortical organization for hand movement control and open potential applications for brain-computer interfaces and neuroprostheses.
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页数:32
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