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Biomedical subjects

A M Childs

Publications and source records attributed to A M Childs.

13 recordsLinked to original sources

Magnetic resonance imaging of the infant brain: anatomical characteristics and clinical significance of punctate lesions.

OBJECTIVE: To describe the magnetic resonance imaging (MRI) characteristics of punctate brain lesions in neonates (number, appearance, distribution, and association with other brain abnormalities) and to relate them to neurodevelopmental outcome. METHODS: A retrospective analysis was performed of 110 MRI brain scans from 92 infants admitted in 1998 to the neonatal intensive care unit. Results of routine neurodevelopmental follow up (1998-2001) in those infants with punctate brain lesions were analysed. RESULTS: Punctate lesions were observed in 15/50 preterm and 2/42 term infants. In the preterm group, the number of lesions was < 3 in 20%, 3-10 in 27%, and > 10 in 53%. In 14/15 the lesions were linearly organised and located in the centrum semiovale. Other brain abnormalities were absent or minor--that is, "isolated" punctate lesions--in 8/15 and major in 7/15. In the term group, punctate lesions were organised in clusters and no other brain abnormalities were observed. Isolated punctate lesions were observed in 10/17 infants, and a normal neurodevelopmental outcome was seen in 9/10 (mean follow up 29.5 months). One infant showed a slight delay in language development. In the infants with associated brain lesions (7/17, mean follow up 27.5 months), outcome was normal in only two subjects. CONCLUSIONS: Punctate lesions are predominantly seen in preterm infants, are usually linearly organised, and border the lateral ventricles. Isolated punctate lesions may imply a good prognosis, because most of these subjects have a normal neurodevelopmental outcome so far.

Brain Diseases↗

Exact sampling from nonattractive distributions using summary states.

Propp and Wilson's method of coupling from the past allows one to efficiently generate exact samples from attractive statistical distributions (e.g., the ferromagnetic Ising model). This method may be generalized to nonattractive distributions by the use of summary states, as first described by Huber. Using this method, we present exact samples from a frustrated antiferromagnetic triangular Ising model and the antiferromagnetic q=3 Potts model. We discuss the advantages and limitations of the method of summary states for practical sampling, paying particular attention to the slowing down of the algorithm at low temperature. In particular, we show that such slowing down can occur in the absence of a physical phase transition.

Journal Article↗

Magnetic resonance and cranial ultrasound characteristics of periventricular white matter abnormalities in newborn infants.

OBJECTIVE: To characterize the range of abnormalities within the periventricular white matter (PVWM) in a cohort of newborns using magnetic resonance (MR) brain imaging and to compare the focal MR abnormalities with the cranial ultrasound (CUS) findings. METHODS: Retrospective study of MR brain and CUS findings of infants born in the 18-month period 1998-1999. PVWM abnormalities were identified by MR and focal lesions were characterized by size, number and distribution using a grading scale. Correspondence with CUS findings was assessed. RESULTS: 175 MR examinations corresponding to n = 105 preterm infants, (median GA 28, range 23-36 weeks) and n = 25 term infants (median GA 39, range 37-42 weeks) were analysed for PVWM abnormalities. In the preterm group, MR demonstrated a normal PVWM in n = 76, focal areas of altered signal intensity (SI) in PVWM in n = 26 and venous infarction in n = 3. In the term group, MR demonstrated a normal PVWM in n = 15, focal areas of altered SI in PVWM in n = 4, oedematous PVWM in n = 2 and a middle cerebral artery infarction in n = 4. All infants with normal MR had normal CUS findings. A focal PVWM SI abnormality detectable on MR corresponded with an abnormality on CUS in only n = 10/30. CONCLUSIONS: MR appears considerably more sensitive than CUS in demonstrating the existence and extent of focal PVWM lesions in newborn infants. Satisfactory correspondence between the two imaging investigations is obtained only for cystic PVWM lesions.

Brain Ischemia↗

Cerebral maturation in premature infants: quantitative assessment using MR imaging.

BACKGROUND AND PURPOSE: The assessment of whether brain development is at an appropriate level for age has become an integral part of clinical MR reporting, although few studies have quantitatively defined the developmental changes occurring in premature infants. We have developed a simple scoring system to assess four parameters of cerebral maturation--myelination, cortical folding, glial cell migration, and germinal matrix distribution--to determine the total maturation score (TMS). The aim of this study was to validate this scoring system in a large population of preterm infants across a range of gestational ages. METHODS: A retrospective analysis was conducted of MR images acquired over a 3-year period with an identical imaging protocol. Infants born more than 14 days before the imaging examination and those with a clinical or radiologic history suggestive of neuroabnormality were excluded from the study. The TMS was derived by consensus. Interobserver agreement was evaluated by using the Bland-Altman plot. RESULTS: Images from 134 infants (23-41 weeks' gestational age) were evaluated. The TMS was significantly related to the postmenstrual age of the infant, with the mean TMS for each age group increasing with advancing postmenstrual age. Interobserver agreement was found to be high (mean difference in score = 0.07, SD = 0.56). CONCLUSION: This scoring system provides a standardized method for assessing cerebral maturation in the premature infant. The TMS is easy to calculate from standard MR images, is reproducible, and can help detect changes occurring within a postnatal age of a few weeks.

Brain↗

Neurovascular compression of the trigeminal and glossopharyngeal nerve: three case reports.

Trigeminal neuralgia (TN) is a frequent cause of paroxysmal facial pain and headache in adults. Glossopharyngeal neuralgia (GPN) is less common, but can cause severe episodic pain in the ear and throat. Neurovascular compression of the appropriate cranial nerve as it leaves the brain stem is responsible for the symptoms in many patients, and neurosurgical decompression of the nerve is now a well accepted treatment in adults with both TN and GPN who fail to respond to drug therapy. Neither TN nor GPN are routinely considered in the differential diagnosis when assessing children with paroxysmal facial or head pain, as they are not reported to occur in childhood. Case reports of three children with documented neurovascular compression causing severe neuralgic pain and disability are presented. The fact that these conditions do occur in the paediatric population, albeit rarely, is highlighted, and appropriate investigation and management are discussed.

Adolescent↗

Magnetic resonance of the neonatal brain.

We discuss the advantages of magnetic resonance (MR) technique in the study of the neonatal brain. Major results have been obtained concerning the understanding of the normal appearance of the developing brain. Bands of cells migrating to the cortex have been identified in the frontal periventricular white matter up to late gestation. MR can also identify the disappearance of the subependymal germinal matrix with increasing gestational age. With respect to the lesions of prematurity, subependymal germinal matrix hemorrhages were for the first time identified by MR underneath the posterior horns of the lateral ventricles. Subtle ischemic lesions of the periventricular white matter, not detected by brain ultrasound scan, are also described. Analysis of the lesions of the term neonates showed the role of MR in defining a more precise prognosis of infants who have sustained "birth asphyxia". The lesions can affect the basal ganglia, watershed areas of the white matter, and cortex. MR scans performed in the second week of life seem to show a stronger association with the outcome. Brain ischemic areas of the term neonates presenting with focal or multifocal seizures can also be detected by MR. These infarcted zones are usually located in the perfusion territory of the middle cerebral artery, more often in the left hemisphere. The timing of the scan is an important factor as the conventional MR can be negative in the first two-three days after the seizures. The diffusion-weighted imaging (DWI) is a new MR technique very sensitive to acute ischemic injury, and it may solve the problem of the scan timing.

Brain↗

MR features of developing periventricular white matter in preterm infants: evidence of glial cell migration.

PURPOSE: MR imaging of the brain is increasingly used in the investigation of the newborn, but little information is available on the normal appearance of the developing brain. We scanned a series of newborn infants in an attempt to define the normal appearance of developing periventricular white matter and to assess how pathologic conditions may modify this appearance. METHODS: Sixty-eight newborn infants, median postmenstrual age (PMA) 34 weeks (range, 24 to 42 weeks), were subdivided into two groups: group A (n = 33), which included those with normal clinical and sonographic examinations, and group B (n = 35), which contained those with evidence of neuroabnormality detected prior to the MR study, either clinically or by cerebral sonography. Images were acquired in two planes on a 1.5-T imager using turbo spin-echo pulse sequences. RESULTS: Symmetric periventricular bands of reduced signal intensity were noted in the frontal periventricular white matter on T2-weighted images in 98% of group A infants and in 97% of group B infants. The number of bands was inversely related to PMA. The reduction in number of bands with increasing PMA was delayed in group B infants. CONCLUSION: The uniform appearance of periventricular bands in a population of healthy infants and their relationship to the infants' maturity is consistent with the results of previous histologic studies. These studies demonstrate the presence of migrating glial cells within the periventricular white matter of infants beyond 20 weeks' gestation, when neuronal migration to the cortex is complete. We postulate that the bands seen on T2-weighted images represent groups of migrating glial cells, providing a further marker of cerebral maturation.

Brain↗

On the receiving end. V: Patient perceptions of the side effects of cancer chemotherapy in 1993.

BACKGROUND: A study conducted in 1983 to identify and rank the symptoms experienced by patients receiving cancer chemotherapy reported that vomiting and nausea were the most important symptoms experienced. With the advent of new antiemetic regimens and changes in cancer chemotherapy, it was anticipated that changes may have occurred in patient perception of symptoms. The study was therefore repeated in 1993. PATIENTS AND METHODS: One hundred and fifty-five cancer patients receiving chemotherapy at a large urban teaching hospital participated in the study. Patients selected from cards listing symptoms all those experienced and the five most troublesome. RESULTS: Patients reported experiencing an average of 20 symptoms (13 physical and 7 psychosocial). Nausea was reported as the most severe symptom followed by tiredness and loss of hair. Vomiting which was the most severe symptom in 1983, now ranked 5th. Differences were detected in the symptoms experienced and reported as most severe, between chemotherapy regimens, between older and younger patients and between males and females. CONCLUSIONS: The results suggest a reduction in the severity of some symptoms experienced while receiving chemotherapy and a shift from concerns about physical to psychosocial issues.

Adult↗

A prospective comparison of central and peripheral vein access for parenteral nutrition in the newborn.

Central venous parenteral nutrition (PN) is frequently used in preterm infants. Although central venous catheters (CVC) permit reliable delivery of hypertonic solution, they may be associated with more serious complications than when a peripheral venous infusion is used. The aim of this randomised prospective study was to compare complications of central versus peripheral venous access using Silastic catheters identical expect for intravascular length. Eighty such devices were inserted, 38 central (CVC), 42 peripheral (PVC). Catheter life was not significantly different between groups: median (range) CVC 10d (2-25); PVC 7d (1-22) with no difference in overall complication rate. Although peripherally sited catheters tended not to function for as long as CVCs, they offer a useful alternative to central venous catheterisation.

Journal Article↗

The pharmacological selectivity of three NMDA antagonists.

Three N-methyl-D-aspartate (NMDA) antagonists (+/-)2-amino-5-phosphonopentanoate (AP5), 3-((+/-)-2-carboxypiperazin-4-yl)propyl-1-phosphonic acid (CPP) and ((+/-)-5-methyl-10,11-dihydro-5H-dibenzo(a.d.)cyclohepten-5,10- imin e maleate) (MK-801) have been tested for selectivity against depolarization of motoneurones induced by carbachol, 5-hydroxytryptamine, noradrenaline and substance P in isolated immature rat spinal cord preparations. AP5 (400 microM) and CPP (50 microM) gave mean dose-ratios, for antagonism against NMDA, of 103 +/- 14.9 S.E.M. (eight preparations) and 34.1 +/- 1.9 S.E.M. (14 preparations). MK-801 (1 and 10 microM) was the most potent of the three antagonists yielding dose ratios greater than 100 after 120 min treatment. MK-801 potentiated responses induced by 5-hydroxytryptamine and noradrenaline given dose-ratios of 0.22 +/- 0.16 S.E.M. and 0.20 +/- 0.06 S.E.M., respectively (four preparations). The three antagonists produced no significant antagonism of the non-amino acid agonists (four preparations for each agonist) when dose-ratios against NMDA were at least 40. The observations support the use of these antagonists as tools to identify sites of excitatory amino acid-mediated transmission.

2-Amino-5-phosphonovalerate↗