Development of an MRI-compatible robotic perturbation system for studying the task-dependent contribution of the brainstem to long-latency responses
Nikonowicz, R. C.; Sergi, F.
Show abstract
Methodological constraints have hindered direct in vivo measurement of reticulospinal tract (RST) function. The RST is thought to contribute to the increase in the amplitude of a long latency response (LLR), a stereotypical response evoked in stretched muscles, that arises when participants are asked to "resist" a perturbation. Thus, functional magnetic resonance imaging (fMRI) during robot-evoked LLRs under different task goals may be a method to measure motor-related RST function. We have developed the Dual Motor StretchWrist (DMSW), a new MR-compatible robotic perturbation system, and validated its functionality via experiments that used surface electromyography (sEMG) and fMRI. A first study was conducted outside the MRI scanner on six participants using sEMG to measure wrist flexor muscle activity associated with LLRs under different task instructions. Participants were given a Yield or Resist instruction before each trial and performance feedback based on the measured resistive torque was provided after every "Resist" trial to standardize LLR amplitude (LLRa). In a second study, ten participants completed two sessions of blocked perturbations under 1) Yield, 2) Resist, and 3) Yield Slow task conditions (control) during whole-brain fMRI. Statistical analysis of sEMG data shows significantly greater LLRa in Resist relative to Yield. Analysis of functional images shows increased activation primarily in the bilateral medulla and midbrain, and contralateral pons and primary motor cortex in the Resist condition. The results validate the capability of the DMSW to elicit LLRs of wrist muscles with different amplitudes as a function of task instruction, and its capability of simultaneous operation during fMRI.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Neural correlates of kinematic features of passive finger movement revealed by univariate and multivariate fMRI analyses 93%
- Transcallosal generation of phase aligned beta-bursts underlies TMS-induced interhemispheric inhibition 93%
- Denoising task-correlated head motion from motor-task fMRI data with multi-echo ICA 93%
Similar papers in this journal
Similar papers in this journal
- A registration strategy to characterize DTI-observed changes in skeletal muscle architecture due to passive shortening 93%
- Differential effects of aquaporin-4 channel inhibition on BOLD fMRI and Diffusion fMRI responses in rat visual cortex 92%
- Improved Inter-Subject Alignment of the Lumbosacral Cord for Group-Level In Vivo Gray and White Matter Assessments: A Scan-Rescan MRI Study at 3T 92%
Similar papers in this journal
- A deep CNN framework for neural drive estimation from HD-EMG across contraction intensities and joint angles 94%
- A BCI-based vibrotactile neurofeedback training improves motor cortical excitability during motor imagery 93%
- Lower-limb Nonparametric Functional Muscle Network: Test-retest Reliability Analysis 93%
Similar papers in this journal
- Toward a generalizable deep CNN for neural drive estimation across muscles and participants 95%
- Identifying alterations in hand movement coordination from chronic stroke survivors using a wearable high-density EMG sleeve 94%
- Lempel-Ziv complexity of simultaneous surface electromyography and magnetomyography during muscle fatigue 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.