Challenges in Identifying the Foot Motor Region in Patients with Brain Tumor on Routine MRI: Advantages of fMRI

R A Fisicaro1, R X Jiao1, C Stathopoulos1

  • 1From the Functional MRI Laboratory, Department of Radiology (R.A.F., R.X.J., C.S., N.M.P.B., K.K.P, A.I.H.).

Abstract

Insights

Accurate localization of the foot motor homunculus is challenging on routine MRI. Functional MRI (fMRI) experience improves identification accuracy, highlighting its value in preoperative planning.

Area of Science:

  • Neurosurgery
  • Radiology
  • Neuroimaging

Background:

  • Accurate localization of the foot/leg motor homunculus is critical to prevent iatrogenic injury.
  • Damage to this area can lead to severe mobility impairment, such as being wheelchair- or bed-bound.

Purpose of the Study:

  • To evaluate the accuracy of identifying the foot motor homunculus on routine MR imaging.
  • To compare the performance of neuroradiologists versus nonradiologists.
  • To assess the impact of functional MRI (fMRI) experience on localization accuracy.

Main Methods:

  • Thirty-five attending physicians (24 neuroradiologists, 11 nonradiologists) evaluated 14 brain tumors.
  • Raters identified the foot motor homunculus and tumor involvement of the motor cortex using anatomic MR imaging.
  • Results were analyzed based on fMRI experience and medical specialty using Mann-Whitney U tests.

Main Results:

  • No rater achieved 100% accuracy in identifying the foot motor cortex.
  • Raters with fMRI experience demonstrated significantly better accuracy in predicting foot motor fMRI centroids and arrow placement compared to those without experience.
  • Neuroradiologists showed significantly higher accuracy than nonradiologists in centroid predictions and arrow placement.

Conclusions:

  • Consistent identification of the foot motor homunculus on routine MR imaging is not achieved by experienced readers.
  • The findings support the use of fMRI in the preoperative setting for improved accuracy.
  • fMRI experience enhances the ability to identify critical anatomic structures, even on standard MR imaging.