Manual for clinical language tractography

Background We introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles. Method The introduced method uses dMRI images for tractography whereas the ROI definition is based on structural T1 MPRAGE MRI templates, without normalization to MNI space. ROIs for...

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Published inActa neurochirurgica Vol. 161; no. 6; pp. 1125 - 1137
Main Authors Fekonja, Lucius, Wang, Ziqian, Bährend, Ina, Rosenstock, Tizian, Rösler, Judith, Wallmeroth, Lara, Vajkoczy, Peter, Picht, Thomas
Format Journal Article
LanguageEnglish
Published Vienna Springer Vienna 01.06.2019
Springer Nature B.V
Subjects
Online AccessGet full text
ISSN0001-6268
0942-0940
0942-0940
DOI10.1007/s00701-019-03899-0

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Abstract Background We introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles. Method The introduced method uses dMRI images for tractography whereas the ROI definition is based on structural T1 MPRAGE MRI templates, without normalization to MNI space. ROIs for five language-relevant fiber bundles were visualized on an axial, coronal, or sagittal view of T1 MPRAGE images. The ROIs were defined based upon the tracts’ obligatory pathways, derived from literature and own experiences in peritumoral tractography. Results The resulting guideline was evaluated for each fiber bundle in ten healthy subjects and ten patients by one expert and three raters. Overall, 300 ROIs were evaluated and compared. The targeted language fiber bundles could be tracked in 88% of the ROI pairs, based on the raters’ result blinded ROI placements. The evaluation indicated that the precision of the ROIs did not relate to the varying experience of the raters. Conclusions Our guideline introduces a standardized language tractography method for routine preoperative workup and for research contexts. The ROI placement guideline based on easy-to-identify anatomical landmarks proved to be user-friendly and accurate, also in inexperienced test persons.
AbstractList BackgroundWe introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles.MethodThe introduced method uses dMRI images for tractography whereas the ROI definition is based on structural T1 MPRAGE MRI templates, without normalization to MNI space. ROIs for five language-relevant fiber bundles were visualized on an axial, coronal, or sagittal view of T1 MPRAGE images. The ROIs were defined based upon the tracts’ obligatory pathways, derived from literature and own experiences in peritumoral tractography.ResultsThe resulting guideline was evaluated for each fiber bundle in ten healthy subjects and ten patients by one expert and three raters.Overall, 300 ROIs were evaluated and compared. The targeted language fiber bundles could be tracked in 88% of the ROI pairs, based on the raters’ result blinded ROI placements. The evaluation indicated that the precision of the ROIs did not relate to the varying experience of the raters.ConclusionsOur guideline introduces a standardized language tractography method for routine preoperative workup and for research contexts. The ROI placement guideline based on easy-to-identify anatomical landmarks proved to be user-friendly and accurate, also in inexperienced test persons.
We introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles. The introduced method uses dMRI images for tractography whereas the ROI definition is based on structural T1 MPRAGE MRI templates, without normalization to MNI space. ROIs for five language-relevant fiber bundles were visualized on an axial, coronal, or sagittal view of T1 MPRAGE images. The ROIs were defined based upon the tracts' obligatory pathways, derived from literature and own experiences in peritumoral tractography. The resulting guideline was evaluated for each fiber bundle in ten healthy subjects and ten patients by one expert and three raters. Overall, 300 ROIs were evaluated and compared. The targeted language fiber bundles could be tracked in 88% of the ROI pairs, based on the raters' result blinded ROI placements. The evaluation indicated that the precision of the ROIs did not relate to the varying experience of the raters. Our guideline introduces a standardized language tractography method for routine preoperative workup and for research contexts. The ROI placement guideline based on easy-to-identify anatomical landmarks proved to be user-friendly and accurate, also in inexperienced test persons.
Background We introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles. Method The introduced method uses dMRI images for tractography whereas the ROI definition is based on structural T1 MPRAGE MRI templates, without normalization to MNI space. ROIs for five language-relevant fiber bundles were visualized on an axial, coronal, or sagittal view of T1 MPRAGE images. The ROIs were defined based upon the tracts’ obligatory pathways, derived from literature and own experiences in peritumoral tractography. Results The resulting guideline was evaluated for each fiber bundle in ten healthy subjects and ten patients by one expert and three raters. Overall, 300 ROIs were evaluated and compared. The targeted language fiber bundles could be tracked in 88% of the ROI pairs, based on the raters’ result blinded ROI placements. The evaluation indicated that the precision of the ROIs did not relate to the varying experience of the raters. Conclusions Our guideline introduces a standardized language tractography method for routine preoperative workup and for research contexts. The ROI placement guideline based on easy-to-identify anatomical landmarks proved to be user-friendly and accurate, also in inexperienced test persons.
We introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles.BACKGROUNDWe introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles.The introduced method uses dMRI images for tractography whereas the ROI definition is based on structural T1 MPRAGE MRI templates, without normalization to MNI space. ROIs for five language-relevant fiber bundles were visualized on an axial, coronal, or sagittal view of T1 MPRAGE images. The ROIs were defined based upon the tracts' obligatory pathways, derived from literature and own experiences in peritumoral tractography.METHODThe introduced method uses dMRI images for tractography whereas the ROI definition is based on structural T1 MPRAGE MRI templates, without normalization to MNI space. ROIs for five language-relevant fiber bundles were visualized on an axial, coronal, or sagittal view of T1 MPRAGE images. The ROIs were defined based upon the tracts' obligatory pathways, derived from literature and own experiences in peritumoral tractography.The resulting guideline was evaluated for each fiber bundle in ten healthy subjects and ten patients by one expert and three raters. Overall, 300 ROIs were evaluated and compared. The targeted language fiber bundles could be tracked in 88% of the ROI pairs, based on the raters' result blinded ROI placements. The evaluation indicated that the precision of the ROIs did not relate to the varying experience of the raters.RESULTSThe resulting guideline was evaluated for each fiber bundle in ten healthy subjects and ten patients by one expert and three raters. Overall, 300 ROIs were evaluated and compared. The targeted language fiber bundles could be tracked in 88% of the ROI pairs, based on the raters' result blinded ROI placements. The evaluation indicated that the precision of the ROIs did not relate to the varying experience of the raters.Our guideline introduces a standardized language tractography method for routine preoperative workup and for research contexts. The ROI placement guideline based on easy-to-identify anatomical landmarks proved to be user-friendly and accurate, also in inexperienced test persons.CONCLUSIONSOur guideline introduces a standardized language tractography method for routine preoperative workup and for research contexts. The ROI placement guideline based on easy-to-identify anatomical landmarks proved to be user-friendly and accurate, also in inexperienced test persons.
Author Wang, Ziqian
Rosenstock, Tizian
Rösler, Judith
Fekonja, Lucius
Wallmeroth, Lara
Bährend, Ina
Vajkoczy, Peter
Picht, Thomas
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  organization: Department of Neurosurgery, Charité - Universitätsmedizin Berlin, Cluster of Excellence: “Matters of Activity. Image Space Material”, Humboldt University
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  givenname: Ziqian
  surname: Wang
  fullname: Wang, Ziqian
  organization: Department of Neurosurgery, Charité - Universitätsmedizin Berlin
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  surname: Bährend
  fullname: Bährend, Ina
  organization: Department of Neurosurgery, Charité - Universitätsmedizin Berlin
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  givenname: Tizian
  surname: Rosenstock
  fullname: Rosenstock, Tizian
  organization: Department of Neurosurgery, Charité - Universitätsmedizin Berlin
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  surname: Rösler
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  surname: Wallmeroth
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  organization: Department of Neurosurgery, Charité - Universitätsmedizin Berlin
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  fullname: Vajkoczy, Peter
  organization: Department of Neurosurgery, Charité - Universitätsmedizin Berlin
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  givenname: Thomas
  surname: Picht
  fullname: Picht, Thomas
  organization: Department of Neurosurgery, Charité - Universitätsmedizin Berlin, Cluster of Excellence: “Matters of Activity. Image Space Material”, Humboldt University
BackLink https://www.ncbi.nlm.nih.gov/pubmed/31004240$$D View this record in MEDLINE/PubMed
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Issue 6
Keywords Language
Brain tumor surgery
Tractography
Neuroanatomy
Diffusion tensor imaging
Language English
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PublicationSubtitle The European Journal of Neurosurgery
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Publisher Springer Vienna
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Snippet Background We introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles. Method The introduced method uses dMRI...
We introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles. The introduced method uses dMRI images for...
BackgroundWe introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles.MethodThe introduced method uses dMRI images...
We introduce a user-friendly, standardized protocol for tractography of the major language fiber bundles.BACKGROUNDWe introduce a user-friendly, standardized...
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SubjectTerms Brain cancer
Diffusion Tensor Imaging - methods
Diffusion Tensor Imaging - standards
Humans
Image Processing, Computer-Assisted - methods
Image Processing, Computer-Assisted - standards
Interventional Radiology
Language
Magnetic resonance imaging
Medicine
Medicine & Public Health
Minimally Invasive Surgery
Neurology
Neuroradiology
Neurosurgery
Neurosurgical anatomy
Practice Guidelines as Topic
Surgical Orthopedics
Technical Note - Neurosurgical Anatomy
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Title Manual for clinical language tractography
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