» Articles » PMID: 11170309

Three-dimensional Integration of Brain Anatomy and Function to Facilitate Intraoperative Navigation Around the Sensorimotor Strip

Overview
Journal Hum Brain Mapp
Publisher Wiley
Specialty Neurology
Date 2001 Feb 15
PMID 11170309
Citations 18
Authors
Affiliations
Soon will be listed here.
Abstract

We studied 12 patients with brain tumors in the vicinity of the sensorimotor region to provide a preoperative three-dimensional visualization of the functional anatomy of the rolandic cortex. We also evaluated the role of cortex-muscle coherence analysis and anatomical landmarks in identifying the sensorimotor cortex. The functional landmarks were based on neuromagnetic recordings with a whole-scalp magnetometer, coregistred with magnetic resonance images. Evoked fields to median and tibial nerve and lip stimuli were recorded to identify hand, foot and face representations in the somatosensory cortex. Oscillatory cortical activity, coherent with surface electromyogram during isometric muscle contraction, was analyzed to reveal the hand and foot representations in the precentral motor cortex. The central sulcus was identified also by available anatomical landmarks. The source locations, calculated from the neuromagnetic data, were displayed on 3-D surface reconstructions of the individual brains, including the veins. The preoperative data were verified during awake craniotomy by cortical stimulation in 7 patients and by cortical somatosensory evoked potentials in 5 patients. Sources of somatosensory evoked fields identified correctly the postcentral gyrus in all patients. Useful corroborative information was obtained from anatomical landmarks in 11 patients and from cortex-muscle correlograms in 8 patients. The preoperative visualization of the functional anatomy of the sensorimotor strip assisted in designing the operational strategy, facilitated orientation of the neurosurgeon during the operation, and speeded up the selection of sites for intraoperative stimulation or mapping, thereby helping to prevent damage of eloquent brain areas during surgery.

Citing Articles

Awake Craniotomy in Neurosurgery: A Bibliometric Analysis of the Top 100 Most-Cited Articles and Review of Technological Advancements.

McBenedict B, Hauwanga W, Fong Y, Pogodina A, Obinna E, Pradhan S Cureus. 2025; 16(12):e76290.

PMID: 39850176 PMC: 11754922. DOI: 10.7759/cureus.76290.


Magnetoencephalography Language Mapping Using Auditory Memory Retrieval and Silent Repeating Task.

Ji Z, Song R, Swan A, Angeles Quinto A, Lee R, Huang M J Clin Neurophysiol. 2022; 41(2):148-154.

PMID: 35512180 PMC: 9633581. DOI: 10.1097/WNP.0000000000000947.


Case Report: Multimodal Functional and Structural Evaluation Combining Pre-operative nTMS Mapping and Neuroimaging With Intraoperative CT-Scan and Brain Shift Correction for Brain Tumor Surgical Resection.

Senova S, Lefaucheur J, Brugieres P, Ayache S, Tazi S, Bapst B Front Hum Neurosci. 2021; 15:646268.

PMID: 33716700 PMC: 7947337. DOI: 10.3389/fnhum.2021.646268.


Presurgical Functional Cortical Mapping Using Electromagnetic Source Imaging.

Kreidenhuber R, De Tiege X, Rampp S Front Neurol. 2019; 10:628.

PMID: 31249552 PMC: 6584755. DOI: 10.3389/fneur.2019.00628.


Localization of Sensorimotor Cortex Using Navigated Transcranial Magnetic Stimulation and Magnetoencephalography.

Pitkanen M, Yazawa S, Airaksinen K, Lioumis P, Nurminen J, Pekkonen E Brain Topogr. 2019; 32(5):873-881.

PMID: 31093863 PMC: 6707977. DOI: 10.1007/s10548-019-00716-w.


References
1.
Yousry T, Schmid U, Jassoy A, Schmidt D, Eisner W, Reulen H . Topography of the cortical motor hand area: prospective study with functional MR imaging and direct motor mapping at surgery. Radiology. 1995; 195(1):23-9. DOI: 10.1148/radiology.195.1.7892475. View

2.
McLachlan R, Leung L . A movement-associated fast rolandic rhythm. Can J Neurol Sci. 1991; 18(3):333-6. DOI: 10.1017/s0317167100031899. View

3.
Nakasato N, Kumabe T, Kanno A, Ohtomo S, Mizoi K, Yoshimoto T . Neuromagnetic evaluation of cortical auditory function in patients with temporal lobe tumors. J Neurosurg. 1997; 86(4):610-8. DOI: 10.3171/jns.1997.86.4.0610. View

4.
Hari R, Salenius S . Rhythmical corticomotor communication. Neuroreport. 1999; 10(2):R1-10. View

5.
Skirboll S, Ojemann G, Berger M, Lettich E, Winn H . Functional cortex and subcortical white matter located within gliomas. Neurosurgery. 1996; 38(4):678-84; discussion 684-5. View