Objective: To investigate the potential of an acute bout of transcranial magnetic stimulation to induce anabolic signalling. Design: Experimental intervention on healthy subjects. Subjects: Ten healthy subjects, 5 women and 5 men (mean age 32 years; standard deviation (SD) 4). Methods: Transcranial magnetic stimulation, resulting in contraction of the quadriceps muscles, was applied at a frequency of 10 Hz for 10 s followed by 20 s of rest, repeated 40 times over 20 min. Electromyography and force data were collected for all transcranial magnetic stimulation sequences. Muscle biopsies were obtained from the vastus lateralis muscle before and 1 and 3 h after stimulation for evaluation of the molecular response of the muscle. Results: The des...
The plasticity of the brain is an increasingly important topic for physical therapists interested in...
Chronic neuropathic pain is known to alter the primary motor cortex (M1) function. Less is known abo...
Myokines are peptides known to modulate brain neuroplasticity, adipocyte metabolism, bone mineraliza...
Objective: To investigate the potential of an acute bout of transcranial magnetic stimulation to ind...
Purpose: Peripheral electrical stimulation (ES) has been used extensively to treat acute and chronic...
OBJECTIVE: There is increasing evidence that an involvement of central nervous system (CNS) can occ...
Skeletal muscle is affected in experimental autoimmune encephalomyelitis (EAE), which is a model of ...
OBJECTIVES: To evaluate, with a high spatial resolution, the blood flow variations in human skeletal...
Objective: To use transcranial magnetic stimulation and electromyography to assess the potential for...
Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction...
grantor: University of TorontoTranscranial magnetic stimulation (TCMS) and electrical stim...
Copyright © 2013 Arata Tsutaki et al. This is an open access article distributed under the Creative ...
Sarcopenia is a condition characterized by loss of mass and strength of skeletal muscle. Among the t...
Skeletal muscle is affected in experimental autoimmune encephalomyelitis (EAE), which is a model of ...
OBJECTIVE: To evaluate short- and medium-term effects of peripheral repetitive magnetic stimulation ...
The plasticity of the brain is an increasingly important topic for physical therapists interested in...
Chronic neuropathic pain is known to alter the primary motor cortex (M1) function. Less is known abo...
Myokines are peptides known to modulate brain neuroplasticity, adipocyte metabolism, bone mineraliza...
Objective: To investigate the potential of an acute bout of transcranial magnetic stimulation to ind...
Purpose: Peripheral electrical stimulation (ES) has been used extensively to treat acute and chronic...
OBJECTIVE: There is increasing evidence that an involvement of central nervous system (CNS) can occ...
Skeletal muscle is affected in experimental autoimmune encephalomyelitis (EAE), which is a model of ...
OBJECTIVES: To evaluate, with a high spatial resolution, the blood flow variations in human skeletal...
Objective: To use transcranial magnetic stimulation and electromyography to assess the potential for...
Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction...
grantor: University of TorontoTranscranial magnetic stimulation (TCMS) and electrical stim...
Copyright © 2013 Arata Tsutaki et al. This is an open access article distributed under the Creative ...
Sarcopenia is a condition characterized by loss of mass and strength of skeletal muscle. Among the t...
Skeletal muscle is affected in experimental autoimmune encephalomyelitis (EAE), which is a model of ...
OBJECTIVE: To evaluate short- and medium-term effects of peripheral repetitive magnetic stimulation ...
The plasticity of the brain is an increasingly important topic for physical therapists interested in...
Chronic neuropathic pain is known to alter the primary motor cortex (M1) function. Less is known abo...
Myokines are peptides known to modulate brain neuroplasticity, adipocyte metabolism, bone mineraliza...