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Biomedical subjects

C Soufflet

Publications and source records attributed to C Soufflet.

11 recordsLinked to original sources

[Indications of electroencephalogram in the newborn].

The electroencephalogram (EEG), an easy-to-use and non invasive cerebral investigation, is a useful tool for diagnosis and early prognosis in newborn babies. In newborn full term babies manifesting abnormal clinical signs, EEG can point focal lesions or specific aetiology. EEG background activity and sleep organization have a high prognostic value. Tracings recorded over long period can detect seizures, with or without clinical manifestations, and differentiate them from paroxysmal non epileptic movements. The EEG should therefore be recorded at the beginning of the first symptoms, and if possible before any seizure treatment. When used as a neonatal prognostic tool, EEG background activity is classified as normal, abnormal (type A and type B discontinuous and hyperactive rapid tracing) or highly abnormal (inactive, paroxysmal, low voltage plus theta tracing). In such cases, the initial recording must be made between 12 and 48 h after birth, and then between 4 and 8 days of life. Severe EEG abnormalities before 12 h of life have no reliable prognostic value but may help in the choice of early neuroprotective treatment of acute cerebral hypoxia-ischemia. During presumed hypoxic-ischemic encephalopathy, unusual EEG patterns may indicate another diagnosis. In premature newborn babies (29-32 w GA) with neurological abnormalities, EEG use is the same as in term newborns. Without any neurological abnormal sign, EEG requirements depend on GA and the mother's or child's risk factors. Before 28 w GA, when looking for positive rolandic sharp waves (PRSW), EEG records are to be acquired systematically at D2-D3, D7-D8, 31-32 and 36 w GA. It is well known that numerous and persistent PRSW are related to periventricular leukomalacia (PVL) and indicate a bad prognosis. In babies born after 32 GA with clinically severe symptoms, an EEG should be performed before D7. Background activity, organization and maturation of the tracing are valuable diagnosis and prognosis indicators. These recommendations are designed (1) to get a maximum of precise informations from a limited number of tracings and (2) to standardize practices and thus facilitate comparisons and multicenter studies.

Electroencephalography↗

Chess-playing epilepsy: a case report with video-EEG and back averaging.

A patient suffering from juvenile myoclonic epilepsy experienced myoclonic jerks, fairly regularly, while playing chess. The myoclonus appeared particularly when he had to plan his strategy, to choose between two solutions or while raising the arm to move a chess figure. Video-EEG-polygraphy was performed, with back averaging of the myoclonus registered during a chess match and during neuropsychological testing with Kohs cubes. The EEG spike wave complexes were localised in the fronto-central region. [Published with video sequences].

Adult↗

Ictal SPECT in children with epilepsy: comparison with intracranial EEG and relation to postsurgical outcome.

In order to validate the ability of ictal single photon emission computed tomography (SPECT) to localize the epileptogenic zone (EZ) in children, we compared in 20 patients aged from 10 months to 17 years (mean 6.5 years) the topography of the area of increased ictal perfusion (IPA), determined on the basis of ictal minus interictal scan values, with that of the EZ determined by intracranial EEG recordings and assessed its relationship with the postsurgical outcome. Eighteen patients had symptomatic epilepsy and 10 had extratemporal epilepsy. All patients except one had an ictal injection (mean time lag from clinical seizure onset was 18 s). Ictal and interictal SPECT images were successively co-registered, normalized, subtracted, smoothed and superimposed on MRI. All patients with ictal injection exhibited one or several IPAs. The topography of the 'highest' IPA, i.e. the maximal cerebral blood flow (CBF) change between ictal and interictal SPECT, significantly colocalized with the site of onset of the discharge, and that of the lower IPAs with that of the area of propagation (P < 0.0001). At a threshold of 30% of the maximal CBF change, the IPAs detected the onset of the discharge with a sensitivity of 0.80 and a specificity of 0.70. The highest IPA localized the EZ in 12 out of 15 patients. In the three others it missed the EZ and showed the area of propagation because of rapid seizure propagation or of infraclinical seizure onset. Among the patients with favourable surgery outcome, the highest IPA colocalized with the resected area in 70% of cases. Ictal SPECT could therefore plays an important role as a non-invasive presurgical method of investigation by optimizing the placement of intracranial electrodes, thus improving the postsurgery outcome of paediatric partial epilepsy.

Adolescent↗

A gene for pyridoxine-dependent epilepsy maps to chromosome 5q31.

Pyridoxine-dependent epilepsy (PDE) is a rare autosomal recessive disorder characterized by generalized seizures in the first hours of life and responding only to pyridoxine hydrochloride. The pathogenesis of PDE is unknown, but an alteration in the binding of pyridoxal 5-phosphate to glutamic acid decarboxylase (GAD) has been postulated in patients with PDE. Results are reported for genetic linkage analyses in four families with consanguineous parents and in one family with nonconsanguineous parents. The GAD1 (2q31) and GAD2 genes (10p23) were tested and excluded. A genomewide search was subsequently performed, using microsatellite markers at an average distance of 10 cM, and the search revealed linkage of the disease-causing gene to markers on chromosome 5q31.2-q31.3 (maximum LOD score [Z(max)] 8.43 at recombination fraction [theta] 0 and Zmax=7.58 at straight theta=0 at loci D5S2017 and D5S1972, respectively). A recombination event, between loci D5S638 and D5S463, in one family defined the distal boundary, and a second recombination event between loci D5S2011 and D5S2017 in another family defined the proximal boundary of the genetic interval encompassing the PDE gene (5.1 cM). Ongoing studies may lead to the identification of the disease-causing gene.

Chromosome Mapping↗

[Alternating hemiplegia of childhoood and oculomotor anomalies].

BACKGROUND: Alternating hemiplegia of childhood is a syndrome which begins in the first year of life. It is characterized by repeated attacks of uni-or bilateral hemiplegia or hemiparesia. In most cases paroxysmal manifestations are observed: movements or dystonia++ attacks, episodic nystagmus, abnormal eye movements and disturbance of the neurovegetative system, predominantly in the first year of life. ANALYSIS: In half of the cases, neurological anomalies begin during the neonatal period with a non characteristic aspect. Typical attacks take place after one year of life, sometimes associated with partial epilepsy. In a quarter of cases, the oculomotor anomalies have been known since early life. The diagnosis is made prior to one year on the basis of associated oculomotor anomalies and other symptoms without EEG arguments for epilepsy. Paroxysmal nystagmus is always found. One eye is affect in most cases, generally with horizontal and seldom with vertical movements of large variable pendular amplitude. One eye with nystagmus and the other with mydriasis is sometimes reported. Most attacks last from 30 sec to 3 min. Paroxysmal strabismus described in half of the cases seems to be generally unilateral internuclear transitory ophthalmoplegia. Finally, ocular deviations on the hemiparetic side are described. They are generally unique or sometimes associated with head deviation. Spontaneous blinking is reduced. CONCLUSION: Alternating hemiplegia of childhood is a non-epileptic sporadic, paroxysmal manifestation of unknown pathogenesis. Prognosis is poor. The presence of oculomotor signs suggests the diagnosis.

Diagnosis, Differential↗

[Epileptic encephalopathies].

Epileptic encephalopathy, a major neurologic disorder, leads to upper motor involvement and epilepsy. Its clinical expression varies according to cerebral maturity and etiology. Epilepsy manifests by spasms, partial seizures or myoclonia in the newborn, essentially by spasms in the infant, but also by myoclonia or sometimes by multifocal partial seizures. In the child, epileptic seizures have a more varied expression: atypical loss of contact, tonic or tonic-clonic seizures, myoclonia and sometimes status epilepticus. Inter-seizure electroencephalograms of patients of all ages show severe diffuse, constant anomalies. These epilepsies are associated with delayed development, mental retardation and behavioural disorders, requiring appropriate treatment as early as possible.

Child↗

Callosotomy for epilepsy after West syndrome.

PURPOSE: To analyze the results of callosotomy in 17 children with symptomatic generalized epilepsy after West syndrome, according to the different seizure types and surgical procedures, to define selection criteria for candidates to callosotomy. METHODS: Callosotomy was performed in two successive stages. Partial callosotomy, anterior in 13 and posterior in three, was followed by completion in 14 cases in all but four patients (complete callosotomy in one stage in one, no completion in three). All patients had clinical, video-EEG, and neuropsychological evaluation before and after each stage of callosotomy, with a mean final follow-up of 4 years. RESULTS: Seizure frequency improved in only two of 13 patients after anterior callosotomy, in none of three after posterior callosotomy, but in nine of 14 after complete callosotomy. After complete callosotomy, spasms disappeared in 80% of the cases, and drop attacks, the most severe ictal event, completely stopped or were dramatically reduced in 90% of the children. One patient no longer had episodes of status epilepticus, and another one acquired the ability to walk after complete callosotomy. From the cognitive viewpoint, nine patients with improved seizure frequency after complete callosotomy also had improved behavior and cognitive functions, but two others experienced speech deterioration after posterior callosotomy at age 11 years and completion of callosotomy at age 16 years. CONCLUSIONS: As in other severe generalized epilepsies in childhood, drop attacks provide the best indication for complete callosotomy in patients with previous West syndrome. Because drop attacks can be identifiable by falls only, the previous acquisition of walking should be considered as a key feature for any benefit to be obtained.

Child↗

Pyridoxine dependent epilepsy: a suggestive electroclinical pattern.

AIMS: To determine if there is an electroencephalographic pattern suggestive of pyridoxine dependent epilepsy that could be used to improve the chances of early diagnosis. METHODS: A retrospective study was made of all the clinical records and electroencephalograms of neonates identified with pyridoxine dependent seizures between 1983 and 1994, at this hospital. Neonates whose seizures began after more than 28 days of life were excluded; in all, five patients from four families were studied. Follow up ranged from 2 to 10 years. RESULTS: A history of miscarriage and neonatal death during an epileptic seizure had occurred in the siblings of two families. One mother reported rhythmic movements of her child during the last month of pregnancy. At birth, all babies were hypotonic; four had decreased visual alertness. All babies were agitated, irritable, jittery, hyperalert, and exhibited sleeplessness and a startle reaction to touch and sound. Age of onset of seizures varied from 30 minutes to 3 days. Seizures of various types were recorded in all cases on EEG tracings, including spasms, myoclonic seizures, partial clonic, and secondary generalised seizures. Burst-suppression patterns occurred in three cases, and a combination of continuous and discontinuous patterns in two others. Bilateral high voltage delta slow wave activity was observed in four patients. Psychomotor delay was severe in three patients, moderate in one, and mild in one. CONCLUSIONS: There is an identifiable EEG pattern that is highly suggestive of pyridoxine dependent epilepsy. Pyridoxine dependent epilepsy is probably underdiagnosed.

Electroencephalography↗

[Treatment of infantile spasms with vigabatrin as first-line therapy and in monotherapy: apropos of 70 infants].

BACKGROUND: Steroids (hydrocortisone or ACTH) still remain the usual treatment for infantile spasms (IS). However, since 1990, some authors have reported the efficacy of vigabatrin (VGB), especially in cases related to tuberous sclerosis. POPULATION AND METHODS: Seventy children with infantile spasms were treated by VGB first line monotherapy. Modalities of treatment and monitoring were the same for all children. VGB was given at the daily dose of 100 mg/kg during 1 week. If spasms persisted, the daily VGB dose was increased to 150 mg/kg during a 2nd week. In case of persistence of IS, on the 15th day, hydrocortisone was then added to VGB. Of the 70 infants, 39 were symptomatic and 31 cryptogenic. RESULTS: On VGB, 37 children (54%) stopped having IS within a mean 3.5 days. Response to VGB was different according to etiology. Among cryptogenic cases, 22 infants (71%) definitively stopped having spasms and only one relapsed. Among symptomatic cases, only 15 infants (38%) stopped having IS, and half (8/15) relapsed. VGB mean daily dose at cessation of spasms was 114 mg/kg. Side effects were transient drowsiness (27%) and agitation (12%). Mean follow-up was 10 months (1-24 months). Seventy-five percent of the infants presenting with a focus of spike after the 1st month of treatment relapsed. CONCLUSION: Infants with cryptogenic spasms have a good response to VGB monotherapy. When mental retardation is noticed before IS, and MRI is normal, there is no efficacy. In these cases, the best treatment seems to be prolonged corticotherapy associated with VGB.

Anti-Inflammatory Agents↗

Evidence of late-onset infantile spasms.

PURPOSE: To underline the unusual but possible occurrence of epileptic spasms (ES) in children >1 year of age. METHODS: Cases in whom onset of spasms occurred after 1 year of age were identified through a retrospective review of the records of all patients referred for ES to the Saint-Vincent de Paul Hôpital (Paris) and American Memorial Hospital (Reims) between 1974 and 1994. RESULTS: Eighteen cases were identified among the 734 children referred for ES, 18 cases were identified where spasm onset time ranged from 12 to 38 months of age. In 1/3 of the cases, the diagnosis was suspected from the onset of clinical manifestations; in the remaining 2/3, diagnosis was delayed by a mean 6 months (range, 2-25 months). Neurobehavioral regression affected two-thirds of the patients. Modified hypsarrhythmia was present in 11 patients; all but one exhibited major and diffuse spike- and slow-wave activity. EEG abnormalities were detected in the frontal areas in 11 patients. Spasms were cryptogenic in 9 patients. Steroids were administered to 13 patients; these controlled the spasms in 6 patients. Outcome was favorable for both seizures; cognition favorable in only 2 of the 18 patients. CONCLUSIONS: Beginning after the first year of life, ES, or late-onset infantile spasms, are distinct from early Lennox-Gastaut syndrome, although etiology, prognosis and treatment are similar to that for the classical infantile spasms.

Age of Onset↗