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R Buist

Publications and source records attributed to R Buist.

17 recordsLinked to original sources

Magnetic resonance imaging study of extracellular fluid tracer movement in brains of immature rats with hydrocephalus.

Hydrocephalus is associated with brain compression and accumulation of neurotransmitter waste products in the brain and cerebrospinal fluid. We postulated that the extracellular compartment is compressed and specifically hypothesized that extracellular fluid tracer movement through brain would differ between control and hydrocephalic rats. Gadolinium diethylenetriamine pentaacetic acid (Gd-DTPA) was injected into the cerebral cortex of 4-week-old rats, 7-11 days after induction of hydrocephalus by kaolin injection into the cisterna magna. The movement of this soluble paramagnetic compound was followed over successive timed intervals from 20 min to 180 min with T1-weighted magnetic resonance imaging. Non-hydrocephalic controls exhibited greater spread of the tracer and greater change in T1-weighted signal intensity in the ipsilateral cortex than hydrocephalic animals. Hydrocephalic animals exhibited preferential accumulation of tracer in edematous white matter. Gd-DTPA penetrated the lateral ventricles within 30 min in both control and hydrocephalic rats. The results suggest that there is a relative impairment of extracellular fluid movement through the cerebral cortex of young hydrocephalic rats.

Animals↗

Altered diffusion and perfusion in hydrocephalic rat brain: a magnetic resonance imaging analysis.

OBJECT: It can be inferred from data published in the literature that brain compression occurs in the early stages of acute hydrocephalus and that drainage of extracellular waste products is impaired. The authors hypothesized that compression of the cortex would alter water distribution and retard the diffusion of fluid in the hydrocephalic brain. METHODS: Proton diffusion, blood perfusion, and T1 and T2 relaxation times were determined in adult rat brain by using magnetic resonance imaging prior to, and 1 and 8 days after induction of hydrocephalus by kaolin injection. Five anatomical regions of interest were studied. The striatum, dorsal cortex, and lateral cortex exhibited decreased T2 and apparent diffusion coefficient (ADC) values but no change in perfusion. Examination of white matter revealed an initial decrease in ADC followed by a significant increase. The T2 relaxation times increased and perfusion decreased progressively between 1 and 8 days after induction of hydrocephalus. CONCLUSIONS: Acute experimental hydrocephalus causes compression of gray matter, perhaps associated with reduction in total water, which impairs diffusion of water in the tissue. White matter compression and hypoperfusion precede the development of edema. These findings have importance for understanding the neurochemical changes that occur in hydrocephalic brains.

Animals↗

For whom is the Caesarean section rate high?

AIM: To define a method for examining and comparing Caesarean section rates. METHODS: Data on Caesarean section rates at National Women's Hospital for 1997 were analysed by two methods which adjust Caesarean section rates according to casemix: 1. standard nulliparae and 2. grouping women by factors influencing Caesarean section rates. RESULTS: The Caesarean section rate in New Zealand is rising and National Women's Hospital had a Caesarean section rate of 22.3% in 1997. The instrumental vaginal delivery rate was 13.1%. Our 1997 data were analysed for casemix -- standard nulliparae and dividing women into six distinct groups. The Caesarean section rate for standard nulliparae was 19.2%. Nulliparae had an increased induction of labour rate compared to multiparae (29.1% versus 22.9%, p < 0.001). The Caesarean section rate was increased in association with induction of labour for nulipare (26.0% versus 13.1%, p < 0.001), multiparae with unscarred uteri, (5.4% versus 2.5%, p < 0.001) and primiparae with previous caesareans (36.8% versus 30.4%, p = 0.02) CONCLUSION: We suggest our second method of grouping women by the most important factors influencing intervention rates should be used by obstetric units for benchmarking and internal audit purposes.

Adult↗

Induction of labour: indications and obstetric outcomes in a tertiary referral hospital.

AIMS: To examine the indications for induction of labour at a tertiary referral hospital and compare operative delivery rates between women in spontaneous labour and those being induced. METHODS: Prospective case series over three months. Information obtained from questionnaires, chart reviews and computer delivery summaries. RESULTS: The overall induction rate was 23%. After 25 exclusions, 438 inductions were studied: 239 by questionnaire and 199 by chart review. Five percent of all inductions were primarily for maternal request or social reasons. Twenty-three percent were for ACHS/RACOG non-defined indications. From the questionnaires, 21% of women induced had requested induction. Spontaneous delivery rates were significantly reduced for induced women, compared with those labouring spontaneously (61.0% versus 72.1%, p<0.001). The Caesarean section rate was significantly increased with induced labour (21.5% versus 14.9%, p<0.001), the increased rate occurring in nulliparae (27.7% versus 19.1%, p=0.008) rather than multiparae (15.1% versus 11.7%, p=0.19). Surgical delivery rates were similar for women induced for defined and non defined indications. CONCLUSIONS: Regardless of the indications for doing so, induction of labour is associated with significantly reduced spontaneous delivery rates overall and an increased Caesarean section rate in nulliparae.

Cesarean Section↗

Neurovirulence in feline immunodeficiency virus-infected neonatal cats is viral strain specific and dependent on systemic immune suppression.

Feline immunodeficiency virus (FIV) is a lentivirus that causes immune suppression and neurological disease in cats. Among animal viruses, individual viral strains have been shown to be neurovirulent, but the role of viral strain specificity among lentiviruses and its relationship to systemic immune suppression in the development of neurological disease remains uncertain. To determine the extent to which different FIV strains caused neurological disease, FIV V1CSF and Petaluma were compared in ex vivo assays and in vivo. Both viruses infected and replicated in macrophage and mixed glial cell cultures at similar levels, but V1CSF induced significantly greater neuronal death than Petaluma in a neurotoxicity assay. V1CSF-infected animals showed significant neurodevelopmental delay compared to the Petaluma-infected and uninfected animals. Magnetic resonance spectroscopy studies of frontal cortex revealed significantly reduced N-acetyl aspartate/creatine ratios in the V1CSF group compared to the other groups. Cyclosporin A treatment of Petaluma-infected animals caused neurodevelopmental delay and reduced N-acetyl aspartate/creatine ratios in the brain. Reduced CD4(+) and CD8(+) cell counts were observed in the V1CSF-infected group compared to the uninfected and Petaluma-infected groups. These findings suggest that neurodevelopmental delay and neuronal injury is FIV strain specific but that systemic immune suppression is also an important determinant of FIV-induced neurovirulence.

Animals↗

The effect of dietary flaxseed supplementation on organic anion and osmolyte content and excretion in rat polycystic kidney disease.

Progression of chronic renal failure in the Han:SPRD-cy rat polycystic kidney disease is associated with renal depletion of citric acid cycle metabolites and betaine. Amelioration of this disease by a soy protein diet is associated with retention of citric acid cycle anions, despite increased excretion, and preservation of tissue levels of betaine. As we have recently found that modest dietary supplementation with flaxseed preserves renal function and reduces histologic injury in the Han:SPRD-cy rat, we undertook a high-resolution 1H NMR spectroscopic study of urine and renal tissue extracts from Han:SPRD-cy rats to explore the renal biochemical consequences of a flaxseed diet. There was no significant dietary effect upon organic anion, methylamine, or osmolyte excretion in healthy animals. There was increased citrate excretion in Han:SPRD-cy rats fed flaxseed. Urinary ammonium excretion did not differ, suggesting that the observed increase in citrate excretion was not due to an alkaline effect of diet. Tissue extract studies revealed that disease amelioration was associated with tissue retention of succinate and betaine. Amelioration of Han:SPRD-cy rat polycystic kidney disease by diet is associated with alteration in the handling of citric acid cycle metabolites. Betaine may have a metabolic role in the reduction of chronic renal injury.

Animals↗

Soy protein modification of rat polycystic kidney disease.

We undertook a study to determine whether soy protein feeding would ameliorate renal injury in the Han:SPRD-cy rat model of polycystic kidney disease (PKD). Male offspring of Han:SPRD-cy heterozygotes received isocaloric diets based on 20% casein or 20% heat-treated soy protein at weaning ad libitum for 8 wk. Soy-fed animals demonstrated lower serum creatinine (66 vs. 125 mumol/l; P = 0.002), lower urinary ammonium excretion (0.080 vs. 0.173 mmol/kg; P = 0.01), reduced renal cysts (0.98 vs. 4.92 ml/kg body wt, P < 0.0001), renal fibrosis (0.79 vs. 1.4 ml/kg; P = 0.016), macrophage infiltration, renal tubular cell proliferation, and apoptosis. Proton nuclear magnetic resonance (1H-NMR) studies of urine demonstrated that soy diet was associated with increased losses of citric acid cycle organic anions. 1H-NMR of perchloric acid-extracted tissue found that levels of succinate were not depleted in soy-fed animals, despite increased urinary losses. Soy-fed animals had marked elevation of tissue betaine (P < 0.001), with reduced taurine and cholines, compared with casein-fed animals (P < 0.001). Soy feeding dramatically reduces both tubular and interstitial pathology in the Han:SPRD-cy rat model of PKD, through mechanisms that remain to be determined.

Amines↗

Magnetic resonance imaging and behavioral analysis of immature rats with kaolin-induced hydrocephalus: pre- and postshunting observations.

The motor and cognitive dysfunction associated with hydrocephalus remains a clinical problem in children. We hypothesized that young rats with hydrocephalus should exhibit similar dysfunction and that the dysfunction should be reversible by shunting. Hydrocephalus was induced in 3-week-old rats by injection of kaolin into the cisterna magna. Rats were assessed by T2-weighted images obtained with a 7-T magnetic resonance device and by repeated behavioral testing including ability to traverse a narrow beam and ability to find a hidden platform in a water pool. Some of the rats underwent a shunting procedure 1 or 4 weeks after kaolin injection. Magnetic resonance images were used to measure ventricle size. They clearly demonstrated increased signal in periventricular white matter, which corresponded to increased brain water content. A flow-void phenomenon was observed in the cerebral aqueduct. Ability to traverse the beam did not correlate with the degree of ventriculomegaly. Ability to swim to the hidden platform demonstrated a progressive impairment of learning function which may have been accentuated by motor disability. When rats were shunted after 1 week, the behavioral dysfunction was prevented. Late shunting after 4 weeks was associated with gradual recovery of the behavioral disability which was not complete after 4 weeks. We conclude that early shunting is superior to late shunting with regard to behavioral dysfunction. High-resolution MR imaging shows features in hydrocephalic rats similar to those found in hydrocephalic humans.

Animals↗

Altered organic anion and osmolyte content and excretion in rat polycystic kidney disease: an NMR study.

Polycystic kidney disease (PKD) is the fourth most common cause of end-stage renal disease and the most common potentially lethal inherited disease in humans. Early identification of carriers of dominant PKD in the absence of genetic markers is problematic in both humans and the Han:SPRD-cy/+ rat, a model of PKD that shares many features of human disease. We undertook a proton magnetic resonance imaging (MRI) study of young Han:SPRD-cy/+ and unaffected Han:SPRD(-)+/+ animals to determine whether carrier status could be identified based upon image appearance or signal characteristics. Affected animals demonstrated significant prolongation of longitudinal relaxation time (T1) and transverse relaxation time (T2) in both cystic renal cortex and noncystic renal medulla. Both of these measurements correlated significantly with whole kidney section tubular luminal space measurements, a correlate of water space, in the renal cortex, but only T1 in renal medulla showed a relationship to tubular luminal volume measured throughout the kidney. Urine and perchloric acid kidney extracts were studied using proton nuclear magnetic resonance (1H-NMR) spectroscopy to test the hypothesis that imaging differences implied specific urinary and tissue biochemical differences between affected and normal animals. 1H-NMR spectra of urine from cy/+ animals showed significantly increased excretion of alanine, citrate, succinate, and, 2-oxoglutarate but not methylamine compounds compared with +/+ animals. 1H-NMR spectra of aqueous perchloric acid kidney extracts confirmed reduced concentrations of the above ions and others involved in the citric acid cycle, as well the osmolytes betaine, taurine, and glycerophosphocholine PKD in the Han:SPRD-cy/+ rat is associated with distinct early MRI changes and alterations in urinary and tissue levels of organic anions and osmolytes.

Animals↗

Magnetic resonance imaging of the extratemporal facial nerve of the rat.

OBJECTIVE: Magnetic resonance imaging (MRI) is an evolving technology that is being investigated for application in the study of the facial nerve. At the present time the majority of investigators use paramagnetic contrast agents, and the clinical utility of MRI for evaluation of facial paralysis is unproved. This study investigated both normal and injured rat facial nerves without contrast enhancement. METHOD: Anatomic dissection and histologic studies were performed to better define the location of the facial nerve. A surface coil was used to improve image resolution. RESULTS: Proton-weighted images showed that the normal facial nerve was a solid structure while the injured facial nerve was bright on T2-weighted images. CONCLUSION: MRI is a potentially useful method of investigating patients with facial nerve dysfunction. Further research is needed to clarify its role.

Animals↗

Experimental intracerebral hemorrhage in rats. Magnetic resonance imaging and histopathological correlates.

BACKGROUND AND PURPOSE: Intracerebral hemorrhage is associated with a considerable proportion of strokes and head injuries. The mechanism of brain cell injury associated with hemorrhage may be different from that due to pure ischemia. Therefore, it is essential that models of intracerebral hemorrhage be developed and well characterized. The purpose of this study was to obtain high-field MR images of rat brain at progressive times after induction of intracerebral hemorrhage and to correlate the images with behavior and histological evolution. METHODS: Intracerebral hemorrhage was induced in rats by injection of bacterial collagenase and heparin into the caudate nucleus. Histopathological changes and corresponding MR images were studied from 30 minutes to 3 weeks after injection. Behavioral changes were also followed for 3 weeks. RESULTS: Histological correlation showed that MR is capable of resolving the accumulation and degeneration of the hematoma, a centripetal wave of neutrophils infiltrating from the surrounding tissue beginning at 12 hours, and centripetal invasion of macrophages beginning at 48 hours. Widespread white matter edema was clearly evident on MR images for 1 week after the hemorrhage. Medium-sized striatal neurons were lost in the tissue surrounding the hematoma. Behavioral improvement was rapid during resolution of the edema but incomplete at 3 weeks. CONCLUSIONS: MR images correlate very well with histological changes in this experimental model of intracerebral hemorrhage and can therefore be used to follow changes due to drug treatments in vivo. The intense neutrophilic response to this lesion may contribute to neuronal injury at the periphery of the hematoma.

Animals↗

Effects of methylmercury and trimethyltin on cardiac, platelet, and aorta eicosanoid biosynthesis and platelet serotonin release.

The effects of two organometals on heart, platelet, and aorta prostaglandin biosynthesis were examined in vitro. Methylmercuric chloride (MMC, 39-796 nM) increased the biosynthesis of thromboxane A2 (TxA2) and prostacyclin (PGI2) in the heart and stimulated the biosynthesis of PGI2 in incubates of aorta rings. The aorta biosynthesis of PGI2 was monitored by its inhibition of platelet aggregation and serotonin [5-hydroxytryptamine (5-HT)] secretion, while the metabolites 6-keto-PGF1a and TxB2 were quantified by radioimmunoassay. In platelet experiments, low concentrations of MMC (5 microM) enhanced aggregation to adenosine diphosphate (ADP) and at high concentrations MMC (50-100 microM) directly stimulated aggregation and 5-HT secretion. These effects of MMC were inhibited by nonsteroidal antiinflammatory drug, thromboxane synthetase, and phospholipase A2 inhibitors. Trimethyltin (TMT), another highly toxic organometal, had no effect on prostaglandin biosynthesis in either heart or aorta incubates. TMT did not increase platelet aggregation responses to ADP, nor did it directly trigger aggregation. At moderate concentrations, TMT (20-45 microM) slightly depressed ADP aggregation; however, this was paradoxically associated with increased 5-HT secretion. In platelets pretreated with either NDGA or ASA, TMT in the absence of aggregation enhanced 5-HT secretion in response to ADP. TMT, unlike MMC, did not stimulate platelet TxB2 biosynthesis from exogenous [3H]arachidonic acid, whereas MMC stimulates heart, vascular, and platelet eicosanoid biosynthesis. TMT, unlike MMC, does not directly activate the arachidonic acid cascade.

6-Ketoprostaglandin F1 alpha↗

Metabolites of alveolar Echinococcus as determined by [31P]- and [1H]-nuclear magnetic resonance spectroscopy.

[31P]-Nuclear magnetic resonance (NMR) in vivo spectra of Echinococcus multilocularis cysts growing subcutaneously in Meriones unguiculatus showed prominent signals due to phosphomonoesters (PME), phosphodiesters (PDE), inorganic phosphate (Pi) and the alpha, beta and gamma phosphate groups of adenosine triphosphate (ATP). The internal pH of the parasite cysts was 6.7-6.8. The 31P spectra of extracts of these subcutaneous cysts showed peaks identified as glucose-6-phosphate (Glu-6-P), glycerol-3-phosphate (Gly-3-P), phosphorylethanolamine (PE), adenosine-5'-monophosphate (5'-AMP), nicotinamide adenine dinucleotide phosphate (NADP), phosphorylcholine (PC), Pi, glycerolphosphorylethanolamine (GPE), glycerolphosphorylcholine (GPC), phosphoenolpyruvate (PEP), adenosine diphosphate (ADP), ATP and diphosphodiesters (DPDE). These metabolites were also detected at comparable concentrations in the extracts of intraperitoneally grown cysts. In addition, significantly more phosphocreatine (PCr), probably of host origin, was detected in the subcutaneous cysts than in the intraperitoneal cysts. [1H]-NMR spectra of cyst extracts revealed that parasites grown in the abdominal cavity contained significantly less glucose but significantly more succinate, acetate, alanine and beta-hydroxybutyrate. Glycogen, creatine, glycine, taurine, betaine, cholines and lactate were present at similar concentrations in cyst material from both locations.

Adenosine Triphosphate↗

Magnetic resonance imaging and 31P magnetic resonance spectroscopy study of the effect of temperature on ischemic brain injury.

Transient forebrain ischemia was induced in rats whose brain temperature was 31, 33, 35, 38, or 40 degrees C. The development of regional injury was followed using magnetic resonance (MR) imaging, with the ultimate extent of neuronal injury quantified histopathologically. Animals in the hypothermic groups showed minimal changes in MR images over 4 days; normothermic animals showed intensity enhancement attributed to progressive edema developing in the striatum and, later, in the hippocampus. Ischemia at 40 degrees C resulted in widespread edema formation by 1 day post-ischemia; animals in this group did not survive beyond 30 hours. Histopathological analysis at 4 days (1 day for the hyperthermic group) post-ischemia showed that neuronal damage in the normothermic group was confined to the hippocampus and striatum. Minimal damage was found in the hypothermic groups; damage in the hyperthermic group was severe throughout the forebrain. There were no differences in the pre-ischemia 31P MR spectra for the different groups. During ischemia, the increase in intensity of the Pi peak and the fall in tissue pH increased with temperature in the order hypothermic less than normothermic less than hyperthermic group of animals. Post-ischemia energy recovery was similar in all groups, while pH recovered more rapidly in hypothermic animals.

Animals↗