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Biomedical subjects

M Steinlin

Publications and source records attributed to M Steinlin.

35 records · Page 2Linked to original sources

Predicting the outcome of postasphyxial hypoxic-ischemic encephalopathy within 4 hours of birth.

OBJECTIVE: To build models that predict severe adverse outcome within 4 hours of birth in patients with postasphyxial hypoxic-ischemic encephalopathy. The goal was to develop models for selecting patients for therapeutic trials of neuroprotective medications. STUDY DESIGN: Retrospective cohort study with follow-up to a minimum age of 12 months of 164 "outborn" term infants admitted to a tertiary neonatal intensive care unit, and 14 "inborn" term infants in the two tertiary perinatal centers in a regionalized setting. After performing univariate screening tests, multivariate models of association between risk factors and "severe adverse outcome" (death or major neurosensory impairment) were constructed. RESULTS: Of 178 infants with postasphyxial hypoxic-ischemic encephalopathy of defined severity admitted consecutively between 1985 and 1992, 48 died, 40 survived with major neurosensory impairment, and 13 were lost to follow-up. The important predictors of severe adverse outcome in the first 4 hours were delayed onset of breathing, administration of chest compressions, and seizures. At 60 minutes of age, based on predicted probabilities of > 0.50, the sensitivity of the predictive model was 85% and specificity 68%. The parameter estimates of the predictive models are reported. CONCLUSIONS: Age of onset of breathing, administration of chest compressions, and age of onset of seizures were the most important variables predictive of adverse outcome in this study. Although fairly sensitive and specific, these predictive models should be applied with caution. To build more accurate models, a template for the conduct of a large, multicenter prospective study is provided.

Apgar Score↗

Positive epileptiform discharges in children with neuronal migration disorders.

Most epileptiform abnormalities show a negative polarity on EEG. Focal positive spike waves have rarely been identified in seizure disorders and are generally associated with physiological and neurological impairment. Results of EEG, computed tomography, MRI, and pathologic studies of 15 children with focal neuronal migration disorders who underwent surgery for refractory localization-related epilepsy were compared to examine the association between positive discharges and other findings. Subjects were studied both ictally and interictally by scalp EEG with the International 10-20 system and zygomatic or sphenoidal electrodes, and video EEG telemetry. The 5 children with positive discharges were significantly more likely to develop hemiparesis during the preoperative period (P < or = .025). Correlations were observed between positive discharges and lesions apparent on MRI situated around the rolandic fissure (P < or = .025). Children with positive discharges had a significantly less favorable outcome after surgical treatment (P < or = .025). Positive epilepti-form discharges in children with neuronal migration disorders may signal a more dysfunctional cortex leading to a focal neurological deficit or a more extended lesion than is detected on MRI. This would explain the less favorable outcome of seizures after surgery, since the epileptogenic areas and neuronal migration lesions cannot be completely resected.

Brain↗

Follow-up in children with Joubert syndrome.

Although Joubert syndrome (JS) was first reported in 1969 by Joubert et al (21), the long-term outcome is not yet documented. We report 19 children (4 pairs of siblings) from a single institution diagnosed with JS. Nine children were last seen between ages 10 and 18 years, seven between ages 1 and 4 years. Three children died before 3 years of age, showing marked breathing problems and minimal development. The 16 surviving children showed variable motor development, walking was typically achieved between 2 and 10 years, two children did not learn to walk. Cognitive development showed four with development quotient (DQ) of 30 or less and nine with DQ of 60-85, the others could not be judged confidently. Siblings did not show similar development and sex was not predicting outcome. The following oculomotor problems were seen: mystagmus in 11, ocular motor apraxia in six, isolated ptosis in two, and vertical gaze palsy in three. Additional features were retinal involvement in eight and kidney involvement in four, in one of them after normal previous ultrasound. In conclusion development of children with JS can be split into distinct subgroups, with one group dying at a young age. Those who survive show variable motor and cognitive development and can be grouped into those with DQ of less than 30 or those with DQ between 60 and 85. Ophthalmological and renal involvement may change or develop over the years and should be followed carefully.

Adolescent↗

[Back pain in children: symptoms which should be taken seriously].

Back pain in children is a rare but serious problem. The varied etiologies and the necessary diagnostic workup are illustrated in 8 children. Infectious processes were found in 3 children, spondylodiscitis twice and epidural abscess once. Tumours (one eosinophilic granuloma and one spinal ependymoma) were present in 2 boys. One girl had a herniated lumbar disc. Malformations (spondylolysis and diastematomyelia) were the cause of symptoms in 2 children. Leading symptom in all 8 children was back pain lasting from 3 days to 2 years. Careful clinical neurological examination, parameters of inflammation in the blood and conventional radiography of the spine were helpful in guiding further investigations. Scintigraphy was useful for localization of infectious and tumorous diseases. MRI was superior to CT in evaluating tumours and malformations of the spinal cord. In most cases CT was sufficient in workup of infectious and osseous processes.

Adolescent↗

Unilateral cerebellar aplasia.

We describe three children with unilateral cerebellar aplasia (UCA). Deliveries at term and neonatal periods were uneventful. Pregnancy was normal in one and complicated by mild bleeding (in second and fourth month respectively) in two instances. Presenting signs were delayed motor development with marked contralateral torticollis (n = 1), hemiplegia (n = 1) and unusual head nodding (n = 1). Neuroradiological investigations revealed complete aplasia (n = 1) and subtotal aplasia (n = 2) of one cerebellar hemisphere with only a residual wing-like structure below the tentorium. There was contralateral underdevelopment of the brainstem. The infant with hemiplegic cerebral palsy had an additional supratentorial periventricular parenchymal defect, contralateral to the cerebellar hypoplasia. In view of literature reports, describing similar neuroradiological or neuropathological findings in asymptomatic individuals, it is doubtful whether UCA is responsible for our patient's problems. In our cases UCA has presumably resulted from a prenatal destructive lesion, possibly an infarct, but the timing and exact nature are unknown.

Brain Ischemia↗

Prognostic value of early MR imaging in term infants with severe perinatal asphyxia.

The prognostic significance of magnetic resonance imaging (MRI) in the neonatal period was studied prospectively in 43 term infants with perinatal asphyxia. MRI was performed between 1 and 14 days after birth with a high field system (2.35 Tesla). Neurodevelopmental outcome was assessed by a standardized neurological examination and the Griffiths developmental test at a mean age of 18.9 months. The predictive value of the various MRI patterns was as follows: Severe diffuse brain injury (pattern AII+III; n = 7) and lesions of thalamus and basal ganglia (pattern C; n = 5) were strongly associated with poor outcome and greatly reduced head growth. Mild diffuse brain injury (pattern AI; n = 7), parasagittal lesions (B; n = 7), periventricular hyperintensity (D; n = 2), focal brain necrosis and hemorrhage (E; n = 3) and periventricular hypointense stripes (on T2-weighted images; F; n = 3) led in one third of the infants to minor neurological disturbances and mild developmental delay. Infants with normal MRI findings (G; n = 9) developed normally with the exception of one infant who was mildly delayed at 18 months. The results indicate that MRI examination during the first two weeks of life is of prognostic significance in term infants suffering from perinatal asphyxia. Severe hypoxic-ischemic brain lesions were associated highly significantly with poor neuro-developmental outcome, whereas infants with inconspicuous MRI developed normally.

Asphyxia Neonatorum↗

Early pattern recognition in severe perinatal asphyxia: a prospective MRI study.

On the basis of MRI examinations in 88 neonates and infants with perinatal asphyxia, we defined 6 different patterns on T2-weighted images: pattern A--scattered hyperintensity of both hemispheres of the telencephalon with blurred border zones between cortex and white matter, indicating diffuse brain injury; pattern B--parasagittal hyperintensity extending into the corona radiata, corresponding to the watershed zones; pattern C--hyper- and hypointense lesions in thalamus and basal ganglia, which relate to haemorrhagic necrosis or iron deposition in these areas; pattern D--periventricular hyperintensity, mainly along the lateral ventricles, i.e. periventricular leukomalacia (PVL), originating from the matrix zone; pattern E--small multifocal lesions varying from hyper--to hypointense, interpreted as necrosis and haemorrhage; pattern F--periventricular centrifugal hypointense stripes in the centrum semiovale and deep white matter of the frontal and occipital lobes. Contrast was effectively inverted on T1-weighted images. Patterns A, B and C were found in 17%, 25% and 37% of patients, and patterns D, E and F in 19%, 17% and 35%, respectively. In 49 patients a combination of patterns was observed, but 30% of the initial images were normal. At follow-up, persistent abnormalities were seen in all children with patterns A and D, but in only 52% of those with pattern C. Myelination was retarded most often in patients with diffuse brain injury and PVL (patterns A and D).

Asphyxia Neonatorum↗

Congenital hemiplegia: morphology of cerebral lesions and pathogenetic aspects from MRI.

We have analyzed the MRI findings from the brains of 33 children with congenital hemiplegia. Referral of these children to our hospital was either because of neurological problems or a history of complicated birth. According to maturation-dependent pathophysiological mechanisms we have classified the lesions into the following five groups: 1. malformations/prenatal encephalo-clastic lesions, 2. periventricular leukomalacia or atrophy, 3. diencephalic lesions, 4. subcortical and cortical lesions, and 5. normal findings. Combination of lesions was not uncommon. The neuroradiologically most prominent and most expanded lesions determined the classification to the different groups. We detected malformations/encephalo-clastic lesions (Group 1) in 5 children; one of these children also presented additional lesions of Groups 2 and 3. Six children displayed periventricular leukomalacia (Group 2), and in one child in combination with diencephalic and subcortical lesions. Ten children exhibited diencephalic lesions (Group 3), in one case combined with periventricular leukomalacia. The MRI of seven children showed subcortical/cortical lesions (Group 4), in four cases extending into diencephalic structures. Two children had a combination of evenly matched periventricular, diencephalic and subcortical/cortical lesions, where it was impossible to define a principal lesion. Three children had normal MRI findings. Significantly, 8 of 33 children had bilateral lesions although presenting with hemiplegia. The large proportion of diencephalic lesions, not described in similar CT studies, and the small number of normal MRI findings show the value of MRI in evaluation of congenital hemiplegia. The ability to correlate, to some extent, neuroradiological findings of damage to developmental stage affords the conclusion that at least a third of the children in our series with congenital hemiplegia suffered prenatal damage.

Brain↗

Myelination of the optic radiation in Leber congenital amaurosis.

We have studied the myelination of the visual pathway by magnetic resonance imaging in seven children (aged 5 months to 16 years) with Leber congenital amaurosis. The corpus geniculatum laterale and the retrogeniculate optic radiation had a normal appearance on MRI in all patients. Therefore we conclude that normal myelination of the optic radiation, as it can be grossly assessed by MRI, can take place even with absent or greatly reduced visual sensory input.

Adolescent↗

[Diagnostic imaging of the brain of blind and visually handicapped young children].

In infants with delayed or absent visual maturation a neuroradiological investigation of the brain is commonly performed in addition to neurophysiological examinations. We report our preliminary experience with magnetic resonance imaging (MRI). MRI allows a detailed anatomical assessment and an evaluation of the myelination, including the optic radiation. Following severe perinatal hypoxic-ischemic injury periventricular leukomalacia in the parieto-occipital region was a common finding. The findings in infants with or without ocular abnormalities were heterogeneous, including normal findings, nonspecific delays of cerebral myelination as well as several malformations (such as corpus callosum hypoplasia, Aicardi syndrome, septo-optic dysplasia, migration disorders). In the individual case the neuroradiological findings do not allow to draw conclusions to the visual function and prognosis. In children with Leber congenital retinal amaurosis we have observed a normal myelination of the optic radiation. In many cases, particularly if a syndromic diagnosis is reached, neuro-imaging gives useful information for prognostic and genetic counselling.

Blindness↗

[Congenital oculomotor apraxia. Presentation--developmental problems--differential diagnosis].

Congenital oculomotor apraxia (COMA) was initially defined by Cogan in 1952. In this condition voluntary horizontal saccades cannot be generated, while slow horizontal pursuit movements and vertical eye movements are intact. Affected infants usually present with delayed visual and/or psychomotor development or may even appear to be blind. In the second half of the first year "compensatory" head thrust movements become apparent. While the oculomotor abnormalities tend to improve with increasing age most affected children have delayed motor and speech development. The cognitive development is commonly impaired and many children require a special scholastic education. In our personal series of 9 children we have found variable and nonspecific neuroradiological findings, including cerebellar hypoplasia, hypoplasia of corpus callosum and grey matter heterotopias. COMA has to be differentiated from acquired forms of ocular apraxia as seen in Morbus Gaucher type 3, ataxia teleangiectasia and Morbus Leigh.

Adolescent↗

[Visual milestones and child development].

Frequently, the milestones of visual development are the only available parameter of visual functions in newborns and small infants. The subscale eye-hand-coordination of Griffith's Developmental Test and some single items of visuo-motor functions were assessed concerning their first occurrence in healthy AGA term and preterm infants. Term and preterm infants differed constantly, but not significantly, in favour of the term children. No sex differences could be documented. Neurologic optimality score showed significant correlations with development of visual milestones. The Griffiths subscore at 9 and 24 months showed good correlations with later cognitive functions.

Child Development↗

Magnetic resonance imaging in infantile encephalopathy with cerebral calcification and leukodystrophy.

Three children, one pair of siblings and a sporadic case, with "infantile (familial) encephalopathy with cerebral calcification and leukodystrophy" are reported. Neuroimaging studies demonstrated extensive bilateral calcifications particularly in paraventricular location and within the cerebral white matter. MRI, performed in two infants, confirmed marked white matter involvement with diffuse delay of myelination. This condition can be added to the growing list of leukodystrophies.

Brain↗

Contribution of magnetic resonance imaging in the evaluation of microcephaly.

Magnetic resonance imaging (MRI) was performed in 33 children using a 2,35 T MR system. The intention was to determine the various types of morphological abnormalities seen in primary microcephaly and the frequency with which they occur. MRI findings were typical for cytomegalovirus infection in six patients. Cerebral malformations were found in 14 cases and patchy white matter lesions in both hemispheres in two subjects. MRI appeared to be abnormal in eight of the remaining 11 children. However, we were unable to provide an exact interpretation of the findings. All the children with MRI abnormalities with the exception of two were neurodevelopmentally deviant. Thus, MRI revealed abnormalities in the majority of infants with primary microcephaly and neurodevelopmental disturbances. It appears to be more sensitive than cranial ultrasound and computed tomography.

Brain↗

Hyperprolinaemia type I and white matter disease: coincidence or causal relationship?

We describe a 10-year-old boy with hyperprolinaemia type I and severe neurological abnormalities (mental retardation, cerebral palsy, epilepsy, nystagmus). Magnetic resonance imaging showed diffuse white matter involvement and electroretinography confirmed tapetoretinal degeneration. In view of reports in the literature, hyperprolinaemia type I may not be a benign condition, as usually assumed, but may lead to marked neurological abnormalities, particularly in affected males.

Brain Diseases↗

MRI following severe perinatal asphyxia: preliminary experience.

In 30 children suffering from severe perinatal asphyxia an attempt was made to determine the early prognostic signs of severe hypoxic-ischemic brain injury with magnetic resonance imaging (MRI). Ten early (1-4 days of age), 16 intermediate (2-4 weeks of age), and 38 late MRI (older than 1 month of age) procedures were performed on a 2.35 T MR-system. Severe cerebral necrosis was suspected by T2 hyperintensity of the white matter, with blurred limits to the cortex in early MRI, and was confirmed by T1 hyperintensity of the cortex in intermediate MRI. Severe cerebral necrosis was established at 3 months of age. Of the 11 children with this pattern (group A), 8 had severe and 3 had moderate cerebral palsy on subsequent examination. Thirteen children (group B) had normal late MRI scans; none developed severe cerebral palsy or marked mental retardation. Two children (group C) had focal ischemic lesions. Four children had intracranial hemorrhage (group D). Groups A and B did not differ in the severity of their perinatal histories and findings, suggesting that MRI during the first 3 months is of significant prognostic value.

Asphyxia Neonatorum↗