Human locomotion has been described as being generated by an impulsive (burst-like) excitation of groups of musculotendon units, with timing dependent on the biomechanical goal of the task. Despite this view being supported by many experimental observations on specific locomotion tasks, it is still unknown if the same impulsive controller (i.e., a low-dimensional set of time-delayed excitastion primitives) can be used as input drive for large musculoskeletal models across different human locomotion tasks. For this purpose, we extracted, with non-negative matrix factorization, five non-negative factors from a large sample of muscle electromyograms in two healthy subjects during four motor tasks. These included walking, running, sidestepping,...
This work presents the design of a novel neuromusculoskeletal model (NMS) of the human lower limb to...
In the last two decades, in silico approaches based on neuromusculoskeletal modeling and simulation ...
Humans are highly adept at modifying muscle activation patterns within a step to walk at various spe...
Human locomotion has been described as being generated by an impulsive (burst-like) excitation of gr...
Humans can efficiently walk across a large variety of terrains and locomotion conditions with little...
© 2015 Gonzalez-Vargas, Sartori, Dosen, Torricelli, Pons and Farina. Humans can efficiently walk acr...
In this paper, we present an under-actuated model of human walking, comprising only a soleus muscle ...
The human body is an outstandingly complex machine including around 1000 muscles and joints acting s...
The neural control of human locomotion is not fully understood. As current experimental techniques p...
Human locomotion requires a complex interplay of the mechanical, sensor, neural and motor systems of...
Human locomotion requires a complex interplay of the mechanical, sensor, neural and motor systems of...
An emerging approach to design locomotion assistive devices deals with reproducing desirable biologi...
The human body is an outstandingly complex machine including around 1000 muscles and joints acting s...
UnrestrictedPrecise control of posture is necessary for the success of any motor actions. The strate...
This work presents the design of a novel neuromusculoskeletal model (NMS) of the human lower limb to...
This work presents the design of a novel neuromusculoskeletal model (NMS) of the human lower limb to...
In the last two decades, in silico approaches based on neuromusculoskeletal modeling and simulation ...
Humans are highly adept at modifying muscle activation patterns within a step to walk at various spe...
Human locomotion has been described as being generated by an impulsive (burst-like) excitation of gr...
Humans can efficiently walk across a large variety of terrains and locomotion conditions with little...
© 2015 Gonzalez-Vargas, Sartori, Dosen, Torricelli, Pons and Farina. Humans can efficiently walk acr...
In this paper, we present an under-actuated model of human walking, comprising only a soleus muscle ...
The human body is an outstandingly complex machine including around 1000 muscles and joints acting s...
The neural control of human locomotion is not fully understood. As current experimental techniques p...
Human locomotion requires a complex interplay of the mechanical, sensor, neural and motor systems of...
Human locomotion requires a complex interplay of the mechanical, sensor, neural and motor systems of...
An emerging approach to design locomotion assistive devices deals with reproducing desirable biologi...
The human body is an outstandingly complex machine including around 1000 muscles and joints acting s...
UnrestrictedPrecise control of posture is necessary for the success of any motor actions. The strate...
This work presents the design of a novel neuromusculoskeletal model (NMS) of the human lower limb to...
This work presents the design of a novel neuromusculoskeletal model (NMS) of the human lower limb to...
In the last two decades, in silico approaches based on neuromusculoskeletal modeling and simulation ...
Humans are highly adept at modifying muscle activation patterns within a step to walk at various spe...