Motion of the upper limbs is often coupled to that of the lower limbs in human bipedal locomotion. It is unclear, however, whether the functional coupling between upper and lower limbs is bi-directional, i.e. whether arm movements can affect the lumbosacral locomotor circuitry. Here we tested the effects of voluntary rhythmic arm movements on the lower limbs. Participants lay horizontally on their side with each leg suspended in an unloading exoskeleton. They moved their arms on an overhead treadmill as if they walked on their hands. Hand-walking in the antero-posterior direction resulted in significant locomotor-like movements of the legs in 58% of the participants. We further investigated quantitatively the responses in a subset of the re...
The idea that the CNS may control complex interactions by modular decomposition has received conside...
During human walking, there exists a functional neural coupling between arms and legs, and between c...
There is extensive modulation of cutaneous and H-reflexes during rhythmic leg movement in humans. Me...
Motion of the upper limbs is often coupled to that of the lower limbs in human bipedal locomotion. I...
Motion of the upper limbs is often coupled to that of the lower limbs in human bipedal locomotion. I...
Motion of the upper limbs is often coupled to that of the lower limbs in human bipedal locomotion. I...
Motion of the upper limbs is often coupled to that of the lower limbs in human bipedal locomotion. I...
It has been argued that arm movements are important during human gait because they affect leg activi...
During human walking, there exists a functional neural coupling between arms and legs, and between c...
During human walking, there exists a functional neural coupling between arms and legs, and between c...
During human walking, there exists a functional neural coupling between arms and legs, and between c...
During human walking there exists a functional neural coupling between arms and legs, and between ce...
The present study examined upper and lower limb coordination during lower limb asymmetry in a split-...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65152/1/jphysiol.2007.133843.pd
The idea that the CNS may control complex interactions by modular decomposition has received conside...
The idea that the CNS may control complex interactions by modular decomposition has received conside...
During human walking, there exists a functional neural coupling between arms and legs, and between c...
There is extensive modulation of cutaneous and H-reflexes during rhythmic leg movement in humans. Me...
Motion of the upper limbs is often coupled to that of the lower limbs in human bipedal locomotion. I...
Motion of the upper limbs is often coupled to that of the lower limbs in human bipedal locomotion. I...
Motion of the upper limbs is often coupled to that of the lower limbs in human bipedal locomotion. I...
Motion of the upper limbs is often coupled to that of the lower limbs in human bipedal locomotion. I...
It has been argued that arm movements are important during human gait because they affect leg activi...
During human walking, there exists a functional neural coupling between arms and legs, and between c...
During human walking, there exists a functional neural coupling between arms and legs, and between c...
During human walking, there exists a functional neural coupling between arms and legs, and between c...
During human walking there exists a functional neural coupling between arms and legs, and between ce...
The present study examined upper and lower limb coordination during lower limb asymmetry in a split-...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65152/1/jphysiol.2007.133843.pd
The idea that the CNS may control complex interactions by modular decomposition has received conside...
The idea that the CNS may control complex interactions by modular decomposition has received conside...
During human walking, there exists a functional neural coupling between arms and legs, and between c...
There is extensive modulation of cutaneous and H-reflexes during rhythmic leg movement in humans. Me...