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Glutamic Acid decarboxylase autoantibody syndrome presenting as schizophrenia
Najjar, Souhel; Pearlman, Daniel; Zagzag, David; Golfinos, John; Devinsky, Orrin
INTRODUCTION: : Glutamic acid decarboxylase (GAD) is the rate-limiting enzyme converting glutamate into gamma-aminobutyric acid. Impaired GAD function can alter motor, cognitive, and behavioral function. Anti-GAD antibodies (GADAbs) can cause several neurological disorders. However, the association between anti-GADAbs and pure psychosis, without seizures or focal neurological deficits, is not well defined. CASE REPORT: : A 19-year-old woman with recent-onset psychotic disorder was diagnosed with schizophrenia. Brain magnetic resonance imaging and cerebrospinal fluid analysis were normal. Serum anti-GADAb titers were elevated. Brain biopsy showed subcortical gliosis and microglia-macrophage infiltration. The clinical syndrome improved with immune therapy. CONCLUSIONS: : Severe psychosis and mild cognitive decline without other neurological features, meeting the Diagnostic and Statistical Manual of Mental Disorders, 4th edition, text revision diagnostic criteria for schizophrenia, can result from brain inflammation associated with elevated serum anti-GADAbs.
PMID: 22367838
ISSN: 1074-7931
CID: 158282
Epilepsy control following intracranial monitoring without resection in young children
Roth J; Olasunkanmi A; Ma TS; Carlson C; Devinsky O; Harter DH; Weiner HL
Purpose: Intracranial monitoring (IM) is a key diagnostic procedure for select patients with treatment-resistant epilepsy (TRE). Seizure focus resection may improve seizure control in both lesional and nonlesional TRE. IM itself is not considered to have therapeutic potential. We describe a cohort of patients with improved seizure control following IM without resective surgery. Methods: Over 12.5 years, 161 children underwent 496 surgeries including intracranial monitoring. We retrospectively reviewed the patients' charts, operative reports, and radiologic scans, under an institutional review board-approved protocol. Key Findings: Seventeen patients underwent only IM, without additional resective surgery, and seven had a dramatic improvement in their epilepsy; six of the seven patients are seizure-free (Engel class I), and one rarely has seizures (Engel class II). All seven patients had frequent seizures that led to IM: either daily (five patients) or 1-2 per week (two patients). The mean age (+/- standard deviation, SD) at seizure onset was 1.6 +/- 1.3 years (range 0.5-4 years). Etiologies were tuberous sclerosis (3 patients), trauma (1 patient), and unknown (3 patients). Mean age at surgery (+/- SD) was 4.1 +/- 2 years (range 1-7 years), and duration of epilepsy 2.5 +/- 1.1 years (range 0.5-4 years). Duration of IM was 11.7 +/- 5.6 days (5-19 days). Six patients had bilateral and one unilateral invasive electrodes. At last follow-up, four patients required fewer antiepileptic drugs (AEDs), one had the same medication but a higher dose, and two patients were taking additional AEDs. Follow-up was 30.6 +/- 9.5 months (range 19-41 months). Significance: Although uncommon, patients with TRE may improve after IM alone. The explanation for this observation remains unclear; however, perioperative medications including steroids, direct cortical manipulation, or other factors may influence the epileptogenic network
PMID: 22242686
ISSN: 1528-1167
CID: 149914
Cortical thickness abnormalities associated with depressive symptoms in temporal lobe epilepsy
Butler T; Blackmon K; McDonald CR; Carlson C; Barr WB; Devinsky O; Kuzniecky R; Dubois J; French J; Halgren E; Thesen T
Depression in patients with temporal lobe epilepsy (TLE) is highly prevalent and carries significant morbidity and mortality. Its neural basis is poorly understood. We used quantitative, surface-based MRI analysis to correlate brain morphometry with severity of depressive symptoms in 38 patients with TLE and 45 controls. Increasing severity of depressive symptoms was associated with orbitofrontal cortex (OFC) thinning in controls, but with OFC thickening in TLE patients. These results demonstrate distinct neuroanatomical substrates for depression with and without TLE, and suggest a unique role for OFC, a limbic region for emotional processing strongly interconnected with medial temporal structures, in TLE-related depressive symptoms
PMCID:3259282
PMID: 22099527
ISSN: 1525-5069
CID: 141935
An implantable triple-function device for local drug delivery, cerebrospinal fluid removal and EEG recording in the cranial subdural/subarachnoid space of primates
Ludvig N; Medveczky G; Rizzolo R; Tang HM; Baptiste SL; Doyle WK; Devinsky O; Carlson C; French JA; Kral JG; Charchaflieh J; Kuzniecky RI
Transmeningeal pharmacotherapy for cerebral cortical disorders requires drug delivery through the subdural/subarachnoid space, ideally with a feedback controlled mechanism. We have developed a device suitable for this function. The first novel component of the apparatus is a silicone rubber strip equipped with (a) fluid-exchange ports for both drug delivery and local cerebrospinal fluid (CSF) removal, and (b) EEG recording electrode contacts. This strip can be positioned between the dura and pia maters. The second novel component is an implantable dual minipump that directs fluid movement to and from the silicone strip and is accessible for refilling and emptying the drug and CSF reservoirs, respectively. This minipump is regulated by a battery-powered microcontroller integrating a bi-directional radiofrequency (RF) communication module. The entire apparatus was implanted in 5 macaque monkeys, with the subdural strip positioned over the frontal cortex and the minipump assembly secured to the cranium under a protective cap. The system was successfully tested for up to 8months for (1) transmeningeal drug delivery using acetylcholine (ACh) and muscimol as test compounds, (2) RF-transmission of neocortical EEG data to assess the efficacy of drug delivery, and (3) local CSF removal for subsequent diagnostic analyses. The device can be used for (a) monitoring neocortical electrophysiology and neurochemistry in freely behaving nonhuman primates for more than 6months, (b) determining the neurobiological impact of subdural/subarachnoid drug delivery interfaces, (c) obtaining novel neuropharmacological data on the effects of central nervous system (CNS) drugs, and (d) performing translational studies to develop subdural pharmacotherapy devices
PMID: 22027491
ISSN: 1872-678x
CID: 139939
Volume of the human septal forebrain region is a predictor of source memory accuracy
Butler, Tracy; Blackmon, Karen; Zaborszky, Laszlo; Wang, Xiuyuan; Dubois, Jonathan; Carlson, Chad; Barr, William B; French, Jacqueline; Devinsky, Orrin; Kuzniecky, Ruben; Halgren, Eric; Thesen, Thomas
Septal nuclei, components of basal forebrain, are strongly and reciprocally connected with hippocampus, and have been shown in animals to play a critical role in memory. In humans, the septal forebrain has received little attention. To examine the role of human septal forebrain in memory, we acquired high-resolution magnetic resonance imaging scans from 25 healthy subjects and calculated septal forebrain volume using recently developed probabilistic cytoarchitectonic maps. We indexed memory with the California Verbal Learning Test-II. Linear regression showed that bilateral septal forebrain volume was a significant positive predictor of recognition memory accuracy. More specifically, larger septal forebrain volume was associated with the ability to recall item source/context accuracy. Results indicate specific involvement of septal forebrain in human source memory, and recall the need for additional research into the role of septal nuclei in memory and other impairments associated with human diseases. (JINS, 2012, 18, 157-161)
PMCID:3339258
PMID: 22152217
ISSN: 1469-7661
CID: 147692
Increased Thalamic Volume in Idiopathic Generalized Epilepsy [Meeting Abstract]
Carlson, Chad; DuBois, Jonathan; Kuzniecky, Ruben; Thompson, Katharine; Chandhoke, Swati; Cho, Yeyoon; Tang, Chloe; Marcuse, Lara; Devinsky, Orrin; French, Jacqueline; Halgren, Eric; Thesen, Thomas
ISI:000288149303141
ISSN: 0028-3878
CID: 2439302
Concordance of Language Localization with fMRI, iEEG and Cortical Stimulation [Meeting Abstract]
Belcher, Latham T; Thesen, Thomas; McDonald, Carrie; Felsovalyi, Olga; Devinsky, Orrin; Kuzniecky, Ruben; Halgren, Eric; Carlson, Chad
ISI:000288149303004
ISSN: 0028-3878
CID: 2439292
Automatic detection of "MRI-negative" epileptogenic cortical malformations with surface-based MRI morphometry [Meeting Abstract]
Thesen, T; DuBois, J M; Quinn, B T; Carlson, C; Halgren, E; Wang, H; Neilman, V; French, J; Devinsky, O; Kuzniecky, R
Rationale: Magnetic resonance imaging has revolutionized the detection of small structural abnormalities in patients with epilepsy. However, many focal abnormalities remain undetected in routine visual inspection. Here we used morphometric MRI to quantify imaging features related to epileptogenic cortical malformations to detect abnormal cortical thickness and blurred gray-white matter boundaries that went undetected by routine clinical visual inspection. Methods: Using MRI morphometry at 3T with surface-based spherical averaging techniques that precisely align anatomical structures between individual brains, we compared single patients with known lesions to a large normal control group to detect clusters of abnormal cortical thickness and gray-white matter contrast (GWC). To assess the effects of threshold and smoothing on detection sensitivity and specificity, we systematically varied these parameters with different thresholds and smoothing levels. To establish the effectiveness of the technique, we compared the detected structural abnormalities to resection margins, seizure onset zones based on intracranial EEG and pathological features using post-resection histology. Results: We report optimal parameters by which cortical thickness and GWC features detected previously occult lesions. We present sensitivity and specificity measures for each threshold and smoothing level to allow for selection of parameters based on clinical need. Conclusions: This automated approach may be a valuable additional clinical tool to improve the detection of subtle or previously occult malformations and therefore may improve identification of patients with intractable focal epilepsy who may benefit from surgery
EMBASE:70830641
ISSN: 1535-7597
CID: 175849
Ictal neocortical slow activity and impaired consciousness in temporal lobe epilepsy [Meeting Abstract]
Englot, D J; Yang, L; Hamid, H; Danielson, N; Bai, X; Marfeo, A; Yu, L; Gordon, A; Purcaro, M J; Motelow, J E; Agarwal, R; Ellens, D J; Golomb, J D; Shamy, M C; Zhang, H; Carlson, C; Doyle, W; Devinsky, O; Vives, K; Spencer, D D; Spencer, S S; Schevon, C; Zaveri, H P; Blumenfeld, H
Rationale: Partial seizures in temporal lobe epilepsy (TLE) are classified as complex-partial, resulting in a loss of consciousness, or simple-partial, associated with preserved consciousness. The mechanistic underpinnings of impaired consciousness in partial seizures are poorly understood. Investigators have previously suggested that unconsciousness during partial seizures may be related to bilateral temporal lobe involvement, seizure onset in the language-dominant hemisphere, or increased cortico-thalamic synchrony. Earlier work has indeed shown that temporal lobe seizures are often associated with bilateral slow rhythms and decreased cerebral blood flow in the frontoparietal neocortex. Ictal neocortical slow rhythms resemble cortical activity observed during sleep or deep anesthesia. However, no prior investigations have directly examined the relationship between ictal neocortical slow activity and behavioral unresponsiveness. Methods: We analyzed intracranial electroencephalographic (EEG) recordings during 63 partial seizures in 26 TLE patients. Blinded reviewers analyzed behavioral responsiveness based on video recordings of seizures and classified consciousness as impaired (complex-partial) or unimpaired (simple-partial). Results: We found significantly elevated delta-range 1-2 Hz slow activity in the frontal and parietal neocortices during complex-partial compared to simple-partial seizures. Also, fast beta-range EEG activity in the contralateral temporal lobe, indicating seizure propagation, was significantly correlated with slow delta activity in the frontoparietal neocortex. Furthermore, we observed that seizure onset in the languagedominant hemisphere and bilateral temporal lobe involvement were more common during complex- than simple-partial seizures. Conclusions: We have proposed a 'network inhibition hypothesis' based on prior human and animal studies, in which subcortical arousal systems are disrupted by partial seizures, producing a depressed cortical state of slow activity and impaired consciousness. Our present findings illustrate that impaired consciousness is associated with ictal neocortical slow and bilateral temporal fast rhythms, raising the possibility that spread of seizure activity to bilateral temporal lobes may exert a powerful inhibitory effect on subcortical arousal networks. Further investigations are necessary to fully determine the role of cortical-subcortical networks in ictal neocortical dysfunction, and may ultimately lead to specific treatments targeted at preventing this negative consequence of TLE
EMBASE:70830277
ISSN: 1535-7597
CID: 175852
Coagulation abnormalities in children undergoing epilepsy surgery
Pacione, Donato; Blei, Francine; Devinsky, Orrin; Weiner, Howard L; Roth, Jonathan
Object Surgery is increasingly used to treat children with refractory epilepsy. Before surgery, the authors routinely evaluated the coagulation profile to identify coagulation abnormalities not established by personal and family history, physical examination, and routine screening tests. Methods Thirty-nine consecutive children undergoing testing prior to epilepsy surgery were prospectively evaluated. The authors evaluated a detailed hematological history and an elaborative hematological panel including complete blood count, hepatic panel, anticoagulant levels, coagulation profile (prothrombin time, partial thromboplastin time, international normalized ratio, fibrinogen, thrombin time, von Willebrand antigen, ristocetin cofactor, factor VIII, and individual factor assays when indicated) and platelet aggregation studies (in the presence of adenosine diphosphate, epinephrine, collagen, and ristocetin). Patient variables included tuberous sclerosis complex (TSC), age at epilepsy onset, age at surgery, seizure frequency, number and type of antiepileptic drugs, recent or present ketogenic diet, and use of selective serotonin reuptake inhibitors. Results Ten children (25.6%) had either coagulation or platelet function abnormalities. Abnormal coagulation was identified in 5 children, and abnormal platelet function was discovered in 6. A diagnosis of TSC was associated with a platelet function abnormality (p = 0.012), whereas children without TSC had a higher rate of coagulopathy (p = 0.041). None of the other characteristics reached statistical significance. In 2 patients (5.1%) with TSC and platelet aggregation abnormalities, the authors noted normal standard screening laboratory studies and an uneventful detailed personal and family history. One of these 2 patients developed a significant intraoperative bleeding complication. Conclusions A preoperative screening with standard laboratory studies and detailed history may not be adequate to fully examine underlying coagulation abnormalities in children with refractory epilepsy. Platelet aggregation studies should be considered in patients with TSC
PMID: 21631205
ISSN: 1933-0715
CID: 134073