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Psychogenic nonepileptic seizures and chronic pain: A retrospective case-controlled study
Gazzola, Deana M; Carlson, Chad; Rugino, Angela; Hirsch, Scott; Starner, Karen; Devinsky, Orrin
PURPOSE: Psychogenic nonepileptic seizures (PNES) can be challenging to diagnose, but certain clinical features can help to distinguish PNES from epileptic seizures. The purpose of this study is to assess chronic pain and prescribed pain medication use in PNES patients. METHODS: A case-controlled, retrospective analysis was performed examining pain medication use in 85 PNES patients versus an active control group of 85 patients with idiopathic generalized epilepsy (IGE). RESULTS: Chronic pain was more frequent among PNES patients (N=40) than active controls (N=10) (p<0.0001). Reported use of prescription pain medication was higher among PNES patients (N=20) versus active controls (N=6) (p=0.0048). The Positive Predictive Value of prescription pain medications for PNES patients was 76.9%. Opioid use in the PNES population was higher compared with active controls (p=0.0096). When excluding patients with a dual diagnosis of PNES and epilepsy from the latter two analyses and comparing these results to those that included this patient population, no statistically significant difference in results was found. CONCLUSIONS: Patients with PNES are more likely than those with IGE to report chronic pain disorders. A history of chronic pain and opioid use among patients with seizures raises the possibility of PNES. Among patients with PNES and chronic pain, a psychogenic etiology for pain and non-opiate pain management strategies should be considered.
PMID: 23165141
ISSN: 1525-5050
CID: 197382
Electrocorticographic evidence of perituberal cortex epileptogenicity in tuberous sclerosis complex
Ma, Tracy S; Elliott, Robert E; Ruppe, Veronique; Devinsky, Orrin; Kuzniecky, Ruben; Weiner, Howard L; Carlson, Chad
Object Tuberous sclerosis complex (TSC) is a multisystem autosomal dominant disorder resulting in hamartomas of several organs. Cortical tubers are the most prominent brain lesions in TSC. Treatment-resistant epilepsy often develops early in life in patients with TSC and is associated with severe intellectual and behavioral impairments. Seizures may remit following epilepsy surgery in selected cases, yet it remains unclear whether the tuber or the perituberal cortex is the source of seizure onset. In this study, the authors reviewed the onset of seizures in patients in whom depth electrodes had been placed within or adjacent to cortical tubers. Methods After obtaining institutional review board approval, the authors retrospectively reviewed data from 12 pediatric patients with multifocal TSC and treatment-resistant epilepsy who had undergone invasive intracranial electroencephalographic monitoring. Tubers were identified on postimplantation MRI, and all depth electrodes were located. Depth electrode contacts were classified visually as either tuber/perituberal cortex or nontuber/nonperituberal cortex. Board-certified clinical neurophysiologists reviewed the seizures to identify all electrodes involved in the ictal onset. Results Among 309 recorded seizures, 104 unique ictal onset patterns were identified. Of the 11 patients with electrodes recording in a tuber, 9 had seizure onsets involving the tuber. Similarly, of the 9 patients with perituberal recording electrodes, 7 had perituberal ictal onsets. Overall, there was no difference in the percentage of contacts involved in seizure onset between the tuber and perituberal cortex. In a subset of 7 patients in whom at least 1 depth electrode contact was within the tuber and 1 was in the perituberal cortex, there was no difference between the percentage of tuber and perituberal onsets. Conclusions Findings demonstrated heterogeneity in the ictal onset patterns as well as involvement of the tuber and perituberal cortex within and between patients. Although the data are limited by the restricted region(s) sampled with intracranial electrodes, they do suggest that cortical hyperexcitability in TSC may derive from the tuber or surrounding cortex.
PMID: 22998031
ISSN: 1933-0707
CID: 183562
Slow Cortical Dynamics and the Accumulation of Information over Long Timescales
Honey, Christopher J; Thesen, Thomas; Donner, Tobias H; Silbert, Lauren J; Carlson, Chad E; Devinsky, Orrin; Doyle, Werner K; Rubin, Nava; Heeger, David J; Hasson, Uri
Making sense of the world requires us to process information over multiple timescales. We sought to identify brain regions that accumulate information over short and long timescales and to characterize the distinguishing features of their dynamics. We recorded electrocorticographic (ECoG) signals from individuals watching intact and scrambled movies. Within sensory regions, fluctuations of high-frequency (64-200 Hz) power reliably tracked instantaneous low-level properties of the intact and scrambled movies. Within higher order regions, the power fluctuations were more reliable for the intact movie than the scrambled movie, indicating that these regions accumulate information over relatively long time periods (several seconds or longer). Slow (<0.1 Hz) fluctuations of high-frequency power with time courses locked to the movies were observed throughout the cortex. Slow fluctuations were relatively larger in regions that accumulated information over longer time periods, suggesting a connection between slow neuronal population dynamics and temporally extended information processing.
PMCID:3517908
PMID: 23083743
ISSN: 0896-6273
CID: 183032
Psychogenic nonepileptic seizures
Widdess-Walsh, Peter; Mostacci, Barbara; Tinuper, Paolo; Devinsky, Orrin
Psychogenic nonepileptic seizures (PNES) are a common presentation to the emergency room and neurology department. They are often misdiagnosed and treated as epileptic seizures. Inappropriate treatment leads to poor patient outcomes and iatrogenic complications, as the underlying mechanisms and treatments are distinctly different. Most causes involve a conversion or dissociative reaction to a prior traumatic experience or abuse. Recognition of the characteristic clinical features of PNES and utilization of video-electroencephalography to confirm the diagnosis is critical. Discontinuation of treatment for epilepsy (unless comorbid PNES and epilepsy is present), acceptance of the diagnosis, and a multidisciplinary treatment plan with clinical psychologists, neurologist, and psychiatrist improve patient and healthcare outcomes.
PMID: 22938977
ISSN: 0072-9752
CID: 177160
Central apnea at complex partial seizure onset
Nadkarni, Mangala A; Friedman, Daniel; Devinsky, Orrin
Sudden Unexpected Death in Epilepsy (SUDEP) is the most common cause of epilepsy related mortality in treatment resistant epilepsy. Most SUDEPs occur after one or more seizure(s) during sleep. Nocturnal seizures may go unrecognized. Respiratory depression in the peri-ictal period is one of the primary potential causes of SUDEP. Ictal and postictal apnea is often overlooked because it is not routinely assessed, but appears common and has been a recent focus of SUDEP research. We report a 37 year-old man who had central apnea as the initial manifestation of partial complex seizures associated with oxygen desaturation. This important pathophysiological consequence of a nocturnal complex seizure was identified by respiratory monitoring during a combined video EEG and sleep study. Diagnostic and therapeutic implications are discussed.
PMID: 22726818
ISSN: 1059-1311
CID: 177110
Localization of dense intracranial electrode arrays using magnetic resonance imaging
Yang, Andrew I; Wang, Xiuyuan; Doyle, Werner K; Halgren, Eric; Carlson, Chad; Belcher, Thomas L; Cash, Sydney S; Devinsky, Orrin; Thesen, Thomas
Intracranial electrode arrays are routinely used in the pre-surgical evaluation of patients with medically refractory epilepsy, and recordings from these electrodes have been increasingly employed in human cognitive neurophysiology due to their high spatial and temporal resolution. For both researchers and clinicians, it is critical to localize electrode positions relative to the subject-specific neuroanatomy. In many centers, a post-implantation MRI is utilized for electrode detection because of its higher sensitivity for surgical complications and the absence of radiation. However, magnetic susceptibility artifacts surrounding each electrode prohibit unambiguous detection of individual electrodes, especially those that are embedded within dense grid arrays. Here, we present an efficient method to accurately localize intracranial electrode arrays based on pre- and post-implantation MR images that incorporates array geometry and the individual's cortical surface. Electrodes are directly visualized relative to the underlying gyral anatomy of the reconstructed cortical surface of individual patients. Validation of this approach shows high spatial accuracy of the localized electrode positions (mean of 0.96mm+/-0.81mm for 271 electrodes across 8 patients). Minimal user input, short processing time, and utilization of radiation-free imaging are strong incentives to incorporate quantitatively accurate localization of intracranial electrode arrays with MRI for research and clinical purposes. Co-registration to a standard brain atlas further allows inter-subject comparisons and relation of intracranial EEG findings to the larger body of neuroimaging literature.
PMCID:4408869
PMID: 22759995
ISSN: 1053-8119
CID: 177022
Long-term behavioral, electrophysiological, and neurochemical monitoring of the safety of an experimental antiepileptic implant, the muscimol-delivering Subdural Pharmacotherapy Device in monkeys
Ludvig, Nandor; Tang, Hai M; Baptiste, Shirn L; Medveczky, Geza; Vaynberg, Jonathan K; Vazquez-Derose, Jacqueline; Stefanov, Dimitre G; Devinsky, Orrin; French, Jacqueline A; Carlson, Chad; Kuzniecky, Ruben I
Object The authors evaluated the extent to which the Subdural Pharmacotherapy Device (SPD), chronically implanted over the frontal cortex to perform periodic, localized muscimol-delivery/CSF removal cycles, affects overall behavior, motor performance, electroencephalography (EEG) activity, and blood and CSF neurochemistry in macaque monkeys. Methods Two monkeys were used to adjust methodology and 4 monkeys were subjected to comprehensive testing. Prior to surgery, the animals' behavior in a large test chamber was monitored, and the motor skills required to remove food pellets from food ports located on the walls of the chamber were determined. The monkeys underwent implantation of the subdural and extracranial SPD units. The subdural unit, a silicone strip integrating EEG electrodes and fluid-exchange ports, was positioned over the right frontal cortex. The control unit included a battery-powered, microprocessor-regulated dual minipump and radiofrequency module secured to the cranium. After implantation, the SPD automatically performed periodic saline or muscimol (1.0 mM) deliveries at 12-hour intervals, alternating with local CSF removals at 6-hour intervals. The antiepileptic efficacy of this muscimol concentration was verified by demonstrating its ability to prevent focal acetylcholine-induced seizures. During SPD treatment, the monkeys' behavior and motor performance were again monitored, and the power spectrum of their radiofrequency-transmitted EEG recordings was analyzed. Serum and CSF muscimol levels were measured with high-performance liquid chromatography electrochemical detection, and CSF protein levels were measured with turbidimetry. Results The SPD was well tolerated in all monkeys for up to 11 months. The behavioral study revealed that during both saline and muscimol SPD treatment, the monkeys could achieve the maximum motor performance of 40 food-pellet removals per session, as before surgery. The EEG study showed that local EEG power spectra were not affected by muscimol treatment with SPD. The neurochemical study demonstrated that the administration of 1.0 mM muscimol into the neocortical subarachnoid space led to no detectable levels of this compound in the blood and cisternal CSF, as measured 1-125 minutes after delivery. Total protein levels were within the normal range in the cisternal CSF, but protein levels in the cortical-site CSF were significantly higher than normal: 361 +/- 81.6 mg/dl. Abrupt discontinuation of 3-month, periodic, subdural muscimol treatments induced withdrawal seizures, which could be completely prevented by gradually tapering off the subdural muscimol concentration from 1.0 mM to 0.12-0.03 mM over a period of 2 weeks. The monkeys' general health and weight were maintained. Infection occurred only in one monkey 9 months after surgery. Conclusions Long-term, periodic, transmeningeal muscimol delivery with the SPD is essentially a safe procedure. If further improved and successfully adapted for use in humans, the SPD can be used for the treatment of intractable focal neocortical epilepsy affecting approximately 150,000 patients in the US.
PMID: 22577746
ISSN: 0022-3085
CID: 171122
Can post-ictal intervention prevent sudden unexpected death in epilepsy? A report of two cases
Swinghamer, Jake; Devinsky, Orrin; Friedman, Daniel
It has been suggested that alerting caregivers to seizure occurrence so they can deliver post-ictal care may be an effective way to prevent sudden unexpected death in epilepsy (SUDEP). We report two cases of SUDEP referred for an expert medical-legal review for which immediate post-ictal intervention was ineffective. In both patients, prompt resuscitation procedures by medical personnel after seizures failed to prevent SUDEP. These cases demonstrate that some seizures may lead to death even with expert intervention almost immediately after the seizure occurs. It is possible that for some SUDEP cases, seizures may trigger an irreversible cascade of cardiopulmonary and cerebral changes that lead to death. Further studies in the pathophysiology of SUDEP may help identify alternative prevention strategies.
PMID: 22652422
ISSN: 1525-5050
CID: 170667
Intraventricular lesions in tuberous sclerosis complex: a possible association with the caudate nucleus
Katz, Joel S; Milla, Sarah S; Wiggins, Graham C; Devinsky, Orrin; Weiner, Howard L; Roth, Jonathan
Object Tuberous sclerosis complex (TSC) can manifest with 3 principal intracranial pathological entities: cortical tubers, subependymal nodules (SENs), and subependymal giant cell astrocytomas (SEGAs). The authors analyzed the location and growth of intraventricular lesions in a large cohort of patients with TSC. Methods After institutional review board protocol approval, the authors retrospectively reviewed brain MRI scans of TSC patients for whom at least 1 electronically stored cranial MRI study was available. Collected data included location, size, and growth over time of all intraventricular lesions. Results The authors reviewed 560 scans in 103 patients, who harbored 496 intraventricular lesions. Of the 496 lesions, 157 lesions were located along the caudate-thalamic groove (CTG) in 88 patients. Twenty SEGAs were operated on. The remaining 339 lesions were distributed along the lateral ventricle, always in contact with the course of the caudate nucleus, and were presumed to be SENs. Twenty-two patients with more than 4 years of follow-up had 34 lesions along the CTG, of which 23 were stable in size and 11 grew. All other intraventricular lesions were stable. Seven-Tesla MRI showed the intimate association of SENs and the caudate nucleus in 1 patient. Conclusions Intraventricular lesions in TSC patients are located throughout the lateral ventricular wall. Their location exclusively follows the course of the caudate nucleus. Only lesions along the CTG showed the potential to grow, and these were then identified as SEGAs. The remaining lesions were SENs. Understanding why these lesions develop in relation to the caudate nucleus may offer insights into therapy.
PMID: 22462706
ISSN: 1933-0707
CID: 164269
Default mode network abnormalities in idiopathic generalized epilepsy
McGill, Megan L; Devinsky, Orrin; Kelly, Clare; Milham, Michael; Castellanos, F Xavier; Quinn, Brian T; Dubois, Jonathan; Young, Jonathan R; Carlson, Chad; French, Jacqueline; Kuzniecky, Ruben; Halgren, Eric; Thesen, Thomas
Idiopathic generalized epilepsy (IGE) is associated with widespread cortical network abnormalities on electroencephalography. Resting state functional connectivity (RSFC), based on fMRI, can assess the brain's global functional organization and its disruption in clinical conditions. We compared RSFC associated with the 'default mode network' (DMN) between people with IGE and healthy controls. Strength of functional connectivity within the DMN associated with seeds in the posterior cingulate cortex (PCC) and medial prefrontal cortices (MPFC) was compared between people with IGE and healthy controls and was correlated with seizure duration, age of seizure onset and age at scan. Those with IGE showed markedly reduced functional network connectivity between anterior and posterior cortical seed regions. Seizure duration positively correlates with RSFC between parahippocampal gyri and the PCC but negatively correlates with connectivity between the PCC and frontal lobe. The observed pattern of disruption provides evidence for integration- and segregation-type network abnormalities and supports aberrant network organization among people with IGE.
PMCID:4407647
PMID: 22381387
ISSN: 1525-5050
CID: 162033