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Updated: Jun 15, 2026

Quantitative Magnetic Resonance Imaging of Skeletal Muscle Disease
Published on: December 18, 2016
Kallmann syndrome and mirror movements: White matter quantitative evaluation with magnetic resonance imaging
Marcel Koenigkam-Santos1, Margaret de Castro, Beatriz R Versiani
1Division of Radiology, School of Medicine of Ribeirao Preto, University of Sao Paulo, Ribeirao Preto, SP, Brazil. marcelk46@yahoo.com.br
Abstract:
Kallmann syndrome (KS), characterized by the association of hypogonadotropic hypogonadism and anosmia, may present many other phenotypic abnormalities, including neurologic features as involuntary movements, called mirror movements (MM). MM etiology probably involves a complex mechanism comprising corticospinal tract abnormal development associated with deficient contralateral motor cortex inhibitory system. In this study, in order to address previous hypotheses concerning MM etiology, we identified and quantified white matter (WM) alterations in 21 KS patients, comparing subjects with and without MM and 16 control subjects, using magnetization transfer ratio (MTR) and T2 relaxometry (R2). Magnetization transfer and T2 double-echo images were acquired in a 1.5 T system. MTR and R2 were calculated pixel by pixel to initially create individual maps, and then, group average maps, co-registered with MNI305 stereotaxic coordinate system. After analysis of selected regions of interest, we demonstrated areas with higher T2 relaxation time and lower MTR values in KS patients, with and without MM, differently involving corticospinal tract projection, frontal lobes and corpus callosum. Higher MTR was observed only in pyramidal decussation when compared in both groups of patients with controls. In conclusion, we demonstrated that patients with KS have altered WM areas, presenting in a different manner in patients with and without MM. These data suggest axonal loss or disorganization involving abnormal pyramidal tracts and other associative/connective areas, relating to the presence or absence of MM. We also found a different pattern of alteration in pyramidal decussation, which can represent the primary area of neuronal disarrangement.
Insights
Kallmann syndrome (KS) patients show white matter alterations, particularly in the corticospinal tract. These changes differ between patients with and without mirror movements (MM), suggesting a link to neurological abnormalities.
Area of Science:
- Neuroscience
- Radiology
- Genetics
Background:
- Kallmann syndrome (KS) is defined by hypogonadotropic hypogonadism and anosmia.
- KS can also manifest with neurological features like mirror movements (MM).
- MM's cause is hypothesized to involve abnormal corticospinal tract development and impaired motor cortex inhibition.
Purpose of the Study:
- To investigate white matter (WM) alterations in KS patients.
- To compare WM changes in KS patients with and without MM.
- To explore the relationship between WM integrity and MM etiology in KS.
Main Methods:
- Utilized magnetization transfer ratio (MTR) and T2 relaxometry (R2) imaging.
- Acquired data from 21 KS patients (with and without MM) and 16 controls.
- Analyzed MTR and R2 values in selected regions of interest, co-registered to the MNI305 stereotaxic system.
Main Results:
- KS patients exhibited altered WM, with higher T2 relaxation time and lower MTR values.
- These alterations affected the corticospinal tract, frontal lobes, and corpus callosum.
- A distinct pattern of higher MTR was observed in the pyramidal decussation of KS patients compared to controls.
Conclusions:
- KS patients demonstrate significant white matter alterations.
- The pattern of WM changes differs based on the presence or absence of MM.
- Findings suggest axonal loss/disorganization in pyramidal tracts and associated areas, potentially originating in the pyramidal decussation.

