Animals rely on an adaptive coordination of legs during walking. However, which specific mechanisms underlie coordination during natural locomotion remains largely unknown. One hypothesis is that legs can be coordinated mechanically based on a transfer of body load from one leg to another. To test this hypothesis, we simultaneously recorded leg kinematics, ground reaction forces and muscle activity in freely walking stick insects (Carausius morosus). Based on torque calculations, we show that load sensors (campaniform sensilla) at the proximal leg joints are well suited to encode the unloading of the leg in individual steps. The unloading coincides with a switch from stance to swing muscle activity, consistent with a load reflex promoting t...
In control of walking, sensory signals of decreasing forces are used to regulate leg lifting in init...
In control of walking, sensory signals of decreasing forces are used to regulate leg lifting in init...
Zill SN, Schmitz J, Büschges A. Load sensing and control of posture and locomotion. Arthropod Struct...
Animals rely on an adaptive coordination of legs during walking. However, which specific mechanisms ...
Animals rely on an adaptive coordination of legs during walking. However, which specific mechanisms ...
Dallmann C, Hoinville T, Dürr V, Schmitz J. A load-based mechanism for inter-leg coordination in ins...
Determining the mechanical output of limb joints is critical for understanding the control of comple...
Determining the mechanical output of limb joints is critical for understanding the control of comple...
Determining the mechanical output of limb joints is critical for understanding the control of comple...
Determining the mechanical output of limb joints is critical for understanding the control of comple...
Dallmann C, Dürr V, Schmitz J. Joint torques in a freely walking insect reveal distinct functions of...
Akay T, Haehn S, Schmitz J, Büschges A. Signals from load sensors underlie interjoint coordination d...
Niemeier M, Jeschke M, Dürr V. Effect of Thoracic Connective Lesion on Inter-Leg Coordination in Fre...
Dallmann C, Dürr V, Schmitz J. Motor control of an insect leg during level and incline walking. The ...
Dürr V. Context-dependent changes in strength and efficacy of leg coordination mechanisms. Journal o...
In control of walking, sensory signals of decreasing forces are used to regulate leg lifting in init...
In control of walking, sensory signals of decreasing forces are used to regulate leg lifting in init...
Zill SN, Schmitz J, Büschges A. Load sensing and control of posture and locomotion. Arthropod Struct...
Animals rely on an adaptive coordination of legs during walking. However, which specific mechanisms ...
Animals rely on an adaptive coordination of legs during walking. However, which specific mechanisms ...
Dallmann C, Hoinville T, Dürr V, Schmitz J. A load-based mechanism for inter-leg coordination in ins...
Determining the mechanical output of limb joints is critical for understanding the control of comple...
Determining the mechanical output of limb joints is critical for understanding the control of comple...
Determining the mechanical output of limb joints is critical for understanding the control of comple...
Determining the mechanical output of limb joints is critical for understanding the control of comple...
Dallmann C, Dürr V, Schmitz J. Joint torques in a freely walking insect reveal distinct functions of...
Akay T, Haehn S, Schmitz J, Büschges A. Signals from load sensors underlie interjoint coordination d...
Niemeier M, Jeschke M, Dürr V. Effect of Thoracic Connective Lesion on Inter-Leg Coordination in Fre...
Dallmann C, Dürr V, Schmitz J. Motor control of an insect leg during level and incline walking. The ...
Dürr V. Context-dependent changes in strength and efficacy of leg coordination mechanisms. Journal o...
In control of walking, sensory signals of decreasing forces are used to regulate leg lifting in init...
In control of walking, sensory signals of decreasing forces are used to regulate leg lifting in init...
Zill SN, Schmitz J, Büschges A. Load sensing and control of posture and locomotion. Arthropod Struct...