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Published on: August 25, 2014
Can MRI predict olfactory loss and improvement in posttraumatic olfactory dysfunction?
J W Hsieh1, V Lenoir2, R Sipione3
1Rhinology-Olfactory Unit, Department of Otorhinolaryngology - Head and Neck Surgery, Geneva University Hospitals, Geneva, Switzerland; The Inner Ear and Olfaction Lab, Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, Geneva, Switzerland.
Background:
Although most patients with post-traumatic olfactory dysfunction (PTOD) undergo MRI, there is no consensus about its diagnostic or prognostic value. The aims were: 1) to classify the extent of post-traumatic neurodegeneration; 2) to determine its relationship with chemosensory dysfunction (smell, taste, trigeminal); and 3) to establish whether MRI can predict olfactory improvement.
Methodology:
We conducted a retrospective cohort study based on a series of 56 patients with PTOD. All patients underwent validated psychophysical tests of their smell, taste, and trigeminal functions, otorhinolaryngologic evaluation, and MRI. An experienced radiologist blinded to patient data evaluated 40 chemosensory-relevant brain regions according to a four-point scale (0=no lesion to 3=large lesion). Follow up data after 4 years (on average) were available in 46 patients.
Results:
The cluster analysis showed 4 brain lesion patterns that differed in lesion localization and severity. They are associated with diagnostic categories: anosmia, hyposmia and normosmia. Two clusters were highly specific for anosmia (100% specificity)and could accurately predict this condition (100% positive predictive value). No clusters were associated with trigeminal or taste dysfunction. Regarding improvement, 72.7% of patients in the cluster with mild lesions experienced subjective and measurable olfactory improvement whereas this was only the case in 21.7-37.5% of patients with larger lesions. The odds of subjective smell improvement were 5.9 times higher in patients within the milder cluster compared to larger ones.
Conclusions:
The analysis of brain lesions in PTOD allows corroboration of smell test results and prediction of subjective and measurable improvement.
Insights
Brain MRI patterns can classify post-traumatic olfactory dysfunction (PTOD) severity and predict olfactory improvement. Milder brain lesions correlate with better smell recovery in PTOD patients.
Area of Science:
- Neuroimaging
- Olfactory dysfunction
- Traumatic brain injury
Background:
- Post-traumatic olfactory dysfunction (PTOD) is common after head injury.
- The diagnostic and prognostic value of MRI in PTOD remains unclear.
- Current understanding lacks classification of neurodegeneration extent and MRI's predictive capability for olfactory recovery.
Purpose of the Study:
- To classify the extent of neurodegeneration in patients with PTOD using MRI.
- To correlate MRI findings with chemosensory dysfunction (smell, taste, trigeminal).
- To determine if MRI can predict olfactory improvement in PTOD.
Main Methods:
- Retrospective cohort study of 56 PTOD patients.
- Patients underwent psychophysical tests for smell, taste, and trigeminal functions, and MRI.
- Radiologist evaluated 40 brain regions for lesions; follow-up data available for 46 patients.
Main Results:
- Four distinct brain lesion patterns identified, associated with anosmia, hyposmia, and normosmia.
- Two clusters showed 100% specificity and positive predictive value for anosmia.
- Mild lesions predicted a 72.7% chance of olfactory improvement, significantly higher than larger lesions (21.7-37.5%).
Conclusions:
- Brain lesion analysis via MRI aids in corroborating smell test results in PTOD.
- MRI findings can predict both subjective and measurable olfactory improvement.
- This study establishes MRI's prognostic value in managing post-traumatic smell loss.
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