The sense of movement elicited by transcranial magnetic stimulation in humans is due to sensory feedback
Open Access
- 13 April 2004
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 556 (2) , 651-660
- https://doi.org/10.1113/jphysiol.2003.060483
Abstract
It has been claimed that transcranial magnetic stimulation (TMS) of the human motor cortex can produce a sense of movement of the contralateral hand, even when the hand is paralysed. The sense of movement was equated with a ‘corollary discharge’, a nulling mechanism originally posited for maintaining constancy of the visual field during eye movements. Our experiments were designed to test whether the sensation that accompanies TMS-evoked finger movements is generated centrally or whether it arises as a result of sensory feedback. Matched twitches of the left and right fingers were elicited either by bilateral electrical stimulation of forearm extensor muscles, or by a combination of TMS of left motor cortex (eliciting twitches of the right forefinger), and electrical stimulation of the left forearm muscles (eliciting twitches of the left forefinger). The time interval between stimuli activating left and right twitches was varied randomly (range ± 90 ms) from trial to trial. Subjects reported whether they sensed that the left or the right movement occurred first, or if they could detect no difference. The left and right movements evoked by bilateral electrical stimulation of muscles were sensed as near simultaneous when there was zero delay between them. When TMS was applied in conjunction with unilateral muscle stimulation, the TMS-evoked movement was felt, on average, 20 ms after the movement evoked by muscle stimulation. Similar results were obtained when the skin under the cathodal electrodes was anaesthetized. Since the TMS-evoked movements were felt later rather than earlier than the electrically evoked movements, the results do not support the idea that the sensation of movement was elicited centrally by TMS. Rather, they favour sensory feedback as the source of the sense of movement. The earlier perception of electrically evoked versus TMS-evoked movements was probably due to earlier sensory responses in the periphery rather than a suppression of the excitability of somatosensory cortex.Keywords
This publication has 25 references indexed in Scilit:
- A Ticklish Question: Does Magnetic Stimulation of the Primary Motor Cortex Give Rise to an ‘Efference copy’?Cortex, 2003
- The Role of Parietal Cortex in Awareness of Self-generated Movements: a Transcranial Magnetic Stimulation StudyCerebral Cortex, 2003
- Voluntary action and conscious awarenessNature Neuroscience, 2002
- Timing and characteristics of perceptual attenuation by transcranial stimulation: A study using magnetic cortical stimulation and somatosensory-evoked potentialsPsychophysiology, 1999
- Rapid modulation of human cortical motor outputs following ischaemic nerve blockBrain, 1993
- MOTOR REORGANIZATION AFTER UPPER LIMB AMPUTATION IN MANBrain, 1991
- A sense of movement elicited in paralyzed distal arm by focal magnetic coil stimulation of human motor cortexBrain Research, 1989
- TIME OF CONSCIOUS INTENTION TO ACT IN RELATION TO ONSET OF CEREBRAL ACTIVITY (READINESS-POTENTIAL)Brain, 1983
- SUBJECTIVE REFERRAL OF THE TIMING FOR A CONSCIOUS SENSORY EXPERIENCEBrain, 1979
- THE CONTRIBUTION OF MUSCLE AFFERENTS TO KESLESTHESIA SHOWN BY VIBRATION INDUCED ILLUSIONSOF MOVEMENT AND BY THE EFFECTS OF PARALYSING JOINT AFFERENTSBrain, 1972