In the last years, several studies have been focused on understanding how the central nervous system controls muscles to perform a specific motor task. Although it still remains an open question, muscle synergies have come to be an appealing theory to explain the modular organization of the central nervous system. Even though the neural encoding of muscle synergies remains controversial, a large number of papers demonstrated that muscle synergies are robust across different tested conditions, which are within a day, between days, within a single subject, and between subjects that have similar demographic characteristics. Thus, muscle synergy theory has been largely used in several research fields, such as clinics, robotics, and sports. The ...
Groups of muscles are recruited in various combinations to perform smooth, controlled limb movements...
Neuromechanics seeks to understand how muscles, sense organs, motor pattern generators, and brain in...
Neuromechanics seeks to understand how muscles, sense organs, motor pattern generators, and brain in...
In the last years, several studies have been focused on understanding how the central nervous system...
Since understanding how the human brain generates neural commands to control muscles during motor t...
The central nervous system (CNS) is believed to utilize specific predefined modules, called muscle s...
In this paper we review the works related to muscle synergies that have been carried-out in neurosci...
Muscle synergies are neural coordinative structures that function to alleviate the computational bur...
Human–robot interfaces may play a key role in helping people with motor impairments, especially ch...
Muscle redundancy allows the central nervous system (CNS) to choose a suitable combination of muscle...
Muscle synergies are neural coordinative structures that function to alleviate the computational bur...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
The musculoskeletal structure of the human and animal body provides multiple solutions for performin...
A fundamental challenge in neuroscience is understanding how the central nervous system (CNS) succee...
Advanced measurement systems and techniques from neuroscience are used in this work to extrapolate r...
Groups of muscles are recruited in various combinations to perform smooth, controlled limb movements...
Neuromechanics seeks to understand how muscles, sense organs, motor pattern generators, and brain in...
Neuromechanics seeks to understand how muscles, sense organs, motor pattern generators, and brain in...
In the last years, several studies have been focused on understanding how the central nervous system...
Since understanding how the human brain generates neural commands to control muscles during motor t...
The central nervous system (CNS) is believed to utilize specific predefined modules, called muscle s...
In this paper we review the works related to muscle synergies that have been carried-out in neurosci...
Muscle synergies are neural coordinative structures that function to alleviate the computational bur...
Human–robot interfaces may play a key role in helping people with motor impairments, especially ch...
Muscle redundancy allows the central nervous system (CNS) to choose a suitable combination of muscle...
Muscle synergies are neural coordinative structures that function to alleviate the computational bur...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
The musculoskeletal structure of the human and animal body provides multiple solutions for performin...
A fundamental challenge in neuroscience is understanding how the central nervous system (CNS) succee...
Advanced measurement systems and techniques from neuroscience are used in this work to extrapolate r...
Groups of muscles are recruited in various combinations to perform smooth, controlled limb movements...
Neuromechanics seeks to understand how muscles, sense organs, motor pattern generators, and brain in...
Neuromechanics seeks to understand how muscles, sense organs, motor pattern generators, and brain in...