As a first step towards the integration of information on neural control, biomechanics and isolated muscle function, we constructed a three-dimensional musculo-skeletal model of the hind leg of the death-head cockroach Blaberus discoidalis. We tested the model by measuring the maximum force generated in vivo by the hind leg of the cockroach, the coxa-femur joint angle and the position of this leg during a behavior, wedging, that was likely to require maximum torque or moment production. The product of the maximum force of the leg and its moment arm yielded a measured coxa-femur joint moment for wedging behavior. The maximum musculo-apodeme moment predicted by summing all extensor muscle moments in the model was adequate to explain the magni...
Matheson T, Dürr V. Load compensation in targeted limb movements of an insect. Journal of Experiment...
Cruse H, Dautenhahn K, Schreiner H. Coactivation of leg reflexes in the stick insect. Biological cyb...
The force response of the locust hind leg extensor muscle to input excitation pulses is modelled. De...
Zakotnik J, Matheson T, Dürr V. Co-contraction and passive forces facilitate load compensation of ai...
SummaryA new kind of passive force has been discovered in the joints of insects, one that is a large...
Owaki D, Dürr V, Schmitz J. A hierarchical model for external electrical control of an insect, accou...
Biologists have traditionally focused on a muscle\u27s ability to generate power. By determining mus...
Determining the mechanical output of limb joints is critical for understanding the control of comple...
Sense organs that monitor forces in legs can contribute to activation of muscles as synergist groups...
Dallmann C, Dürr V, Schmitz J. Joint torques in a freely walking insect reveal distinct functions of...
Animals rely on an adaptive coordination of legs during walking. However, which specific mechanisms ...
Zill SN, Chaudhry S, Büschges A, Schmitz J. Force feedback reinforces muscle synergies in insect leg...
Recent findings of integrative studies of locomotion have revealed that the principles of exploiting...
Cruse H. Is the position of the femur tibia joint under feedback control in the walking stick insect...
Clare AJ, Blackburn LML, Harischandra N, Zakotnik J, Dürr V, Matheson T. Activation dynamics data fo...
Matheson T, Dürr V. Load compensation in targeted limb movements of an insect. Journal of Experiment...
Cruse H, Dautenhahn K, Schreiner H. Coactivation of leg reflexes in the stick insect. Biological cyb...
The force response of the locust hind leg extensor muscle to input excitation pulses is modelled. De...
Zakotnik J, Matheson T, Dürr V. Co-contraction and passive forces facilitate load compensation of ai...
SummaryA new kind of passive force has been discovered in the joints of insects, one that is a large...
Owaki D, Dürr V, Schmitz J. A hierarchical model for external electrical control of an insect, accou...
Biologists have traditionally focused on a muscle\u27s ability to generate power. By determining mus...
Determining the mechanical output of limb joints is critical for understanding the control of comple...
Sense organs that monitor forces in legs can contribute to activation of muscles as synergist groups...
Dallmann C, Dürr V, Schmitz J. Joint torques in a freely walking insect reveal distinct functions of...
Animals rely on an adaptive coordination of legs during walking. However, which specific mechanisms ...
Zill SN, Chaudhry S, Büschges A, Schmitz J. Force feedback reinforces muscle synergies in insect leg...
Recent findings of integrative studies of locomotion have revealed that the principles of exploiting...
Cruse H. Is the position of the femur tibia joint under feedback control in the walking stick insect...
Clare AJ, Blackburn LML, Harischandra N, Zakotnik J, Dürr V, Matheson T. Activation dynamics data fo...
Matheson T, Dürr V. Load compensation in targeted limb movements of an insect. Journal of Experiment...
Cruse H, Dautenhahn K, Schreiner H. Coactivation of leg reflexes in the stick insect. Biological cyb...
The force response of the locust hind leg extensor muscle to input excitation pulses is modelled. De...