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Distinct representation of ipsilateral hand movements in sensorimotor areas.

Mark L C M BruurmijnMathijs RaemaekersMariana P BrancoNick F RamseyMariska J Vansteensel
Published in: The European journal of neuroscience (2021)
There is ample evidence that the contralateral sensorimotor areas play an important role in movement generation, with the primary motor cortex and the primary somatosensory cortex showing a detailed spatial organization of the representation of contralateral body parts. Interestingly, there are also indications for a role of the motor cortex in controlling the ipsilateral side of the body. However, the precise function of ipsilateral sensorimotor cortex in unilateral movement control is still unclear. Here, we show hand movement representation in the ipsilateral sensorimotor hand area, in which hand gestures can be distinguished from each other and from contralateral hand gestures. High-field functional magnetic resonance imaging (fMRI) data acquired during the execution of six left- and six right-hand gestures by healthy volunteers showed ipsilateral activation mainly in the anterior section of precentral gyrus and the posterior section of the postcentral gyrus. Despite the lower activation in ipsilateral areas closer to the central sulcus, activity patterns for the 12 hand gestures could be mutually distinguished in these areas. The existence of a unique representation of ipsilateral hand movements in the human sensorimotor cortex favours the notion of transcallosal integrative processes that support optimal coordination of hand movements.
Keyphrases
  • functional connectivity
  • resting state
  • magnetic resonance imaging
  • neural network
  • deep learning
  • induced pluripotent stem cells
  • artificial intelligence
  • diffusion weighted imaging