Corpus callosum diffusion abnormalities in refractory epilepsy associated with hippocampal sclerosis

•A large and homogeneous DTI study focusing on the CC of patients with TLE and HS.•DTI changes not only in the posterior part of the CC, but also on the anterior part.•FA and MD changes were driven by an increase of RD, while the AD remained unchanged.•No differences between patients with left and r...

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Veröffentlicht in:Epilepsy research 2017-11, Vol.137, p.112-118
Hauptverfasser: Lyra, Katarina P., Chaim, Khallil T., Leite, Claudia C., Park, Eun J., Andrade, Celi S., Passarelli, Valmir, Valério, Rosa M.F., Jorge, Carmen L., Castro, Luiz H.M., Otaduy, Maria C.G.
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container_end_page 118
container_issue
container_start_page 112
container_title Epilepsy research
container_volume 137
creator Lyra, Katarina P.
Chaim, Khallil T.
Leite, Claudia C.
Park, Eun J.
Andrade, Celi S.
Passarelli, Valmir
Valério, Rosa M.F.
Jorge, Carmen L.
Castro, Luiz H.M.
Otaduy, Maria C.G.
description •A large and homogeneous DTI study focusing on the CC of patients with TLE and HS.•DTI changes not only in the posterior part of the CC, but also on the anterior part.•FA and MD changes were driven by an increase of RD, while the AD remained unchanged.•No differences between patients with left and right sided HS were observed.•Diffusion alterations were more intense in patients reporting febrile seizures. To detect by diffusion tensor imaging (DTI) the extent of microstructural integrity changes of the corpus callosum (CC) in patients with hippocampal sclerosis (HS) and to evaluate possible association with clinical characteristics. Fourty-two patients with temporal lobe epilepsy (TLE) and HS and 30 control subjects were studied with DTI. We grouped patients according to lesion side (left or right) HS. Mean diffusivity (MD), fractional anisotropy (FA), radial (RD) and axial diffusivity (AD) were extracted from five segments in CC midsagittal section obtained by automatic segmentation. CC DTI findings were compared between groups. We also evaluated association of DTI changes and clinical characteristics. HS patients displayed decreased FA and increased MD and RD in the anterior, mid-posterior and posterior CC segments, compared to controls. No differences were observed in AD. Patients reporting febrile seizure as the initial precipitating event presented more intense diffusion changes. No differences were seen comparing left and right HS. Age at epilepsy onset, disease duration and seizure frequency were not associated with DTI findings. This is one of the largest series of TLE-HS patients evaluating CC white matter fiber integrity by DTI, which allowed us to study how some clinical characteristics, such as seizure frequency, disease duration and lesion side, are related to CC integrity. Occurrence of febrile seizure was the only factor that had significant impact on tract integrity. Diffusion changes were not restricted to the posterior part of the CC; we observed the same changes for the anterior part of the CC. Diffusion changes were characterized by an increase in RD, while the AD remained intact for all regions of the CC.
doi_str_mv 10.1016/j.eplepsyres.2017.09.008
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To detect by diffusion tensor imaging (DTI) the extent of microstructural integrity changes of the corpus callosum (CC) in patients with hippocampal sclerosis (HS) and to evaluate possible association with clinical characteristics. Fourty-two patients with temporal lobe epilepsy (TLE) and HS and 30 control subjects were studied with DTI. We grouped patients according to lesion side (left or right) HS. Mean diffusivity (MD), fractional anisotropy (FA), radial (RD) and axial diffusivity (AD) were extracted from five segments in CC midsagittal section obtained by automatic segmentation. CC DTI findings were compared between groups. We also evaluated association of DTI changes and clinical characteristics. HS patients displayed decreased FA and increased MD and RD in the anterior, mid-posterior and posterior CC segments, compared to controls. No differences were observed in AD. Patients reporting febrile seizure as the initial precipitating event presented more intense diffusion changes. 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No differences were seen comparing left and right HS. Age at epilepsy onset, disease duration and seizure frequency were not associated with DTI findings. This is one of the largest series of TLE-HS patients evaluating CC white matter fiber integrity by DTI, which allowed us to study how some clinical characteristics, such as seizure frequency, disease duration and lesion side, are related to CC integrity. Occurrence of febrile seizure was the only factor that had significant impact on tract integrity. Diffusion changes were not restricted to the posterior part of the CC; we observed the same changes for the anterior part of the CC. 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To detect by diffusion tensor imaging (DTI) the extent of microstructural integrity changes of the corpus callosum (CC) in patients with hippocampal sclerosis (HS) and to evaluate possible association with clinical characteristics. Fourty-two patients with temporal lobe epilepsy (TLE) and HS and 30 control subjects were studied with DTI. We grouped patients according to lesion side (left or right) HS. Mean diffusivity (MD), fractional anisotropy (FA), radial (RD) and axial diffusivity (AD) were extracted from five segments in CC midsagittal section obtained by automatic segmentation. CC DTI findings were compared between groups. We also evaluated association of DTI changes and clinical characteristics. HS patients displayed decreased FA and increased MD and RD in the anterior, mid-posterior and posterior CC segments, compared to controls. No differences were observed in AD. Patients reporting febrile seizure as the initial precipitating event presented more intense diffusion changes. 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ispartof Epilepsy research, 2017-11, Vol.137, p.112-118
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language eng
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subjects Adult
Corpus callosum
Corpus Callosum - diagnostic imaging
Corpus Callosum - pathology
Diffusion Tensor Imaging
Drug Resistant Epilepsy - diagnostic imaging
Drug Resistant Epilepsy - etiology
Drug Resistant Epilepsy - pathology
Epilepsy, Temporal Lobe - diagnostic imaging
Epilepsy, Temporal Lobe - etiology
Epilepsy, Temporal Lobe - pathology
Febrile seizures
Female
Functional Laterality
Hippocampal sclerosis
Hippocampus - pathology
Humans
Magnetic Resonance Imaging
Male
Middle Aged
Sclerosis
Temporal lobe epilepsy
Young Adult
title Corpus callosum diffusion abnormalities in refractory epilepsy associated with hippocampal sclerosis
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