Zakotnik J, Matheson T, Dürr V. Co-contraction and passive forces facilitate load compensation of aimed limb movements. Journal of Neuroscience. 2006;26(19):4995-5007.Vertebrates and arthropods are both capable of load compensation during aimed limb movements, such as reaching and grooming. We measured the kinematics and activity of individual motoneurons in loaded and unloaded leg movements in an insect. To evaluate the role of active and passive musculoskeletal properties in aiming and load compensation, we used a neuromechanical model of the femur-tibia joint that transformed measured extensor and flexor motoneuron spikes into joint kinematics. The model comprises three steps: first, an activation dynamics module that determines the time...
As a first step towards the integration of information on neural control, biomechanics and isolated ...
Page KL, Zakotnik J, Dürr V, Matheson T. Motor control of aimed limb movements in an insect. Journal...
Zill SN, Dallmann CJ, Büschges A, Chaudhry S, Schmitz J. Force dynamics and synergist muscle activat...
Ache JM, Matheson T. Passive resting state and history of antagonist muscle activity shape active ex...
Matheson T, Dürr V. Load compensation in targeted limb movements of an insect. Journal of Experiment...
© 2018 Elsevier Ltd In large limbs, changing motor neuron activity typically controls within-movemen...
Ache JM, Matheson T. Passive joint forces are tuned to limb use in insects and drive movements witho...
Dallmann C, Hoinville T, Dürr V, Schmitz J. A load-based mechanism for inter-leg coordination in ins...
Background: Limb movements are generally driven by active muscular contractions working with and aga...
SummaryBackgroundLimb movements are generally driven by active muscular contractions working with an...
SummaryA new kind of passive force has been discovered in the joints of insects, one that is a large...
Animals rely on an adaptive coordination of legs during walking. However, which specific mechanisms ...
In legged animals, the muscle system has a dual function: to produce forces and torques necessary to...
<div><p>In legged animals, the muscle system has a dual function: to produce forces and torques nece...
Page KL, Zakotnik J, Dürr V, Matheson T. The motor control of aimed limb movements in an insect. Jou...
As a first step towards the integration of information on neural control, biomechanics and isolated ...
Page KL, Zakotnik J, Dürr V, Matheson T. Motor control of aimed limb movements in an insect. Journal...
Zill SN, Dallmann CJ, Büschges A, Chaudhry S, Schmitz J. Force dynamics and synergist muscle activat...
Ache JM, Matheson T. Passive resting state and history of antagonist muscle activity shape active ex...
Matheson T, Dürr V. Load compensation in targeted limb movements of an insect. Journal of Experiment...
© 2018 Elsevier Ltd In large limbs, changing motor neuron activity typically controls within-movemen...
Ache JM, Matheson T. Passive joint forces are tuned to limb use in insects and drive movements witho...
Dallmann C, Hoinville T, Dürr V, Schmitz J. A load-based mechanism for inter-leg coordination in ins...
Background: Limb movements are generally driven by active muscular contractions working with and aga...
SummaryBackgroundLimb movements are generally driven by active muscular contractions working with an...
SummaryA new kind of passive force has been discovered in the joints of insects, one that is a large...
Animals rely on an adaptive coordination of legs during walking. However, which specific mechanisms ...
In legged animals, the muscle system has a dual function: to produce forces and torques necessary to...
<div><p>In legged animals, the muscle system has a dual function: to produce forces and torques nece...
Page KL, Zakotnik J, Dürr V, Matheson T. The motor control of aimed limb movements in an insect. Jou...
As a first step towards the integration of information on neural control, biomechanics and isolated ...
Page KL, Zakotnik J, Dürr V, Matheson T. Motor control of aimed limb movements in an insect. Journal...
Zill SN, Dallmann CJ, Büschges A, Chaudhry S, Schmitz J. Force dynamics and synergist muscle activat...