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Biomedical subjects

D Labar

Publications and source records attributed to D Labar.

At least 37 records · Page 2Linked to original sources

Evolution of brain glucose metabolism with age in epileptic infants, children and adolescents.

During the first years of life, the human brain undergoes repetitive modifications in its anatomical, functional, and synaptic construction to reach the complex functional organization of the adult central nervous system. As an attempt to gain further insight in those maturation processes, the evolution of cerebral metabolic activity was investigated as a function of age in epileptic infants, children and adolescents. The regional cerebral metabolic rates for glucose (rCMRGlc) were measured with positron emission tomography (PET) in 60 patients aged from 6 weeks to 19 years, who were affected by complex partial epilepsy. They were scanned at rest, without premedication, in similar conditions to 20 epileptic adults and in 49 adult controls. The distribution of brain metabolic activity successively extended from sensorimotor areas and thalamus in epileptic newborns to temporo-parietal and frontal cortices and reached the adult pattern after 1 year of age. The measured rCMRGlc in the cerebral cortex, excluding the epileptic lesions, increased from low values in infants to a maximum between 4 and 12 years, before it declined to stabilize at the end of the second decade of life. Similar age-related changes in glucose metabolic rates were not observed in the adult groups. Despite the use of medications, the observed variations of rCMRGlc with age in young epileptic humans confirm those previously described in pediatric subjects. These metabolic changes are in full agreement with the current knowledge of the synaptic density evolution in the human brain.

Adolescent↗

Vagus nerve stimulation for symptomatic generalized epilepsy: a pilot study.

PURPOSE: Patients with symptomatic generalized epilepsy (SGE) may have antiepileptic drug (AED)-resistant mixed generalized seizures. Vagus nerve stimulation (VNS) reduces partial seizures and may help SGE. METHODS: We added VNS to stable AED therapy in five SGE patients. Nine-month postoperative VNS treatment seizure rates were compared to a 1-month preoperative baseline. RESULTS: All patients had mixed generalized seizures, EEG generalized slow spike-and-wave and behavioral abnormalities. Median number of previous AEDs taken was 6 (range 5-12). Median baseline seizure rate was 75/month (range 29-110). VNS produced a median seizure rate production of -41% (range -40% - -85%). Adverse events reported in one patient each were: incisional infection, choking sensation and voice change; and coughing (noted by two patients). One patient discontinued VNS due to coughing. CONCLUSIONS: We conclude that VNS may be useful add-on therapy for SGE. A larger, controlled, and blinded trial may be warranted.

Adult↗

Nitrogen-13-ammonia and oxygen-15-water estimates of absolute myocardial perfusion in left ventricular ischemic dysfunction.

UNLABELLED: Measurements of resting myocardial blood flow (MBF) in patients with chronic left ventricular ischemic dysfunction by 15O-water with 13N-ammonia and PET have yielded conflicting results. The aim of this study was to perform a head-to-head comparison of both tracers in the same patient population and to answer the question of whether distinctive tracer properties account for differences in estimates of MBF in chronically dysfunctional myocardium by both tracers. METHODS: A total of 30 patients with chronic dysfunction of the anterior myocardial wall due to significant left anterior descending coronary artery disease underwent PET measurements of absolute MBF in the anterior wall by use of 15O-water and 13N-ammonia before coronary revascularization by either coronary artery bypass graft (n = 24) or percutaneous transluminal coronary angioplasty (n = 6). Improvement of regional contractile function was assessed by two-dimensional echocardiography at a mean of 7.5 +/- 2.1 mo after revascularization. As judged from the changes in anterior myocardial wall motion after revascularization, patients were considered to have either reversibly (n = 16) or persistently (n = 14) dysfunctional myocardium. Estimates of MBF by 15O-water and 13N-ammonia, obtained in every patient before revascularization, were compared among the two patient groups by use of previously validated methods. RESULTS: With 13N-ammonia, resting regional MBF was significantly higher in reversibly as opposed to persistently dysfunctional segments [84 +/- 8 versus 48 +/- 6 ml (min x 100 g)(-1), mean +/- s.e.m., p < 0.01]. By contrast, no such difference was found when using 15O-water to measure MBF [74 +/- 6 versus 86 +/- 9 ml (min x 100 g)(-1), p = ns]. This was mainly due to the fact that the perfusable tissue fraction (PTF), a fitted parameter of the 15O-water model, was significantly higher in reversibly as opposed to persistently dysfunctional segments (0.63 +/- 0.03 versus 0.50 +/- 0.03, p < 0.05). As a consequence, the 15O-water perfusable tissue index (PTI), which is the ratio of the PTF to the anatomical tissue fraction, was greater in reversibly dysfunctional as opposed to persistently dysfunctional segments (1.07 +/- 0.07 versus 0.79 +/- 0.05, p < 0.01). CONCLUSION: This study demonstrates significant differences in MBF estimates between 15O-water and 13N-ammonia in chronically dysfunctional ischemic myocardium. Our results indicate that the 15O-water method yields higher absolute MBF values than the 13N-ammonia approach. Our results also support the use of PTI as a marker of myocardial tissue viability.

Adult↗

Temporal lobe epilepsy: correlation of proton magnetic resonance spectroscopy and 18F-fluorodeoxyglucose positron emission tomography.

Proton magnetic resonance spectroscopy (MRS) has demonstrated reduction of N-acetylaspartate (NAA) in the epileptogenic temporal lobe. However, the correlation of NAA reduction with cerebral metabolic abnormalities is unknown in temporal lobe epilepsy (TLE). Proton MRS and 18F-fluorodeoxyglucose positron emission tomography (FDG/PET) were used to study 12 unilateral TLE patients with medically intractable seizures and 26 age-matched healthy volunteers. The epileptogenic temporal lobe of each patient was determined by both electroencephalography and FDG/PET. The NAA/choline-plus-creatine (NAA/(Cho+Cr)) ratio correlated significantly with the interictal glucose metabolism (r = 0.54, P < 0.01) in 12 TLE patients. The mean NAA/(Cho+Cr) ratio in the epileptogenic temporal lobe was significantly less than that in the contralateral side (P < 0.01), and less than that in normal control temporal lobes (P < 0.0001). These results suggest that quantitative MRS abnormalities reflect underlying metabolic pathology in TLE.

Adult↗

Cholinergic neurotransmission has different effects on cerebral glucose consumption and blood flow in young normals, aged normals, and Alzheimer's disease patients.

Cerebral blood flow (CBF) and glucose consumption (GC) are both tracers of brain metabolic activity used to image the human brain in vivo. To know if both tracers reacted in the same manner when brain cholinergic neurotransmission was activated, CBF and GC were measured in young normals (YN), aged normals (AN), and Alzheimer's Disease patients (AD) using positron emission tomography (PET), H2 15O, and 18F-FDG. Each subject was studied twice, under placebo and physostigmine, in randomized order and blind fashion using the maximal tolerated dose of physostigmine individually determined. Under physostigmine CBF increased significantly (P = 0.0007) in posterior regions of the cerebral cortex and in the subcortical structures. Inversely, GC was decreased significantly in most regions. The largest decrease was seen in the prefrontal region of the cerebral cortex (P < 0.0001). Significant regional decreases were registered in all three groups of subjects, but were larger in AD than in controls. Looking at the absolute values of prefrontal cortex metabolism we found no correlation (r = 0.04) between the responses of CBF and GC. After normalization of the regional values for the mean we found a significant positive correlation between the responses of CBF and GC (r = 0.71, P < 0.0001). These findings suggest two components in the CBF response to physostigmine: one metabolic, depressive, and regional which follows the GC response; and one vascular, larger, diffuse, and opposite in direction to the metabolic component. These results have implications for the interpretation of CBF values as tracer of brain metabolic activity when brain cholinergic neurotransmission is manipulated.

Adult↗

Effects of nitrous oxide on electrocorticography during epilepsy surgery.

Interictal spikes on intraoperative electrocorticography during epilepsy are used to tailor resections. There have been a few systematic quantitative studies of anesthetic effects on these interictal discharges, and none on the effects of nitrous oxide (N2O). We calculated spike rates on ECoG on and off N2O in 18 epilepsy surgery patients with subdural strips and grids, analyzing the most active recording contract. In a blinded analyses ten patients had fewer spikes on N2O, while eight patients had more spikes on N2O. The mean spike rates did not differ (41/min on N2O and 40/min off N2O). Spike rate on and off N2O were compared using the non-parametric Wilcoxon matched pairs test. These rates were not significantly different. Our study indicates that N2O in doses employed dose not effect interictal spikes and this agent may be used during epilepsy surgery without concerns about suppression of epileptiform activity.

Electroencephalography↗

Myocardial blood flow, glucose uptake, and recruitment of inotropic reserve in chronic left ventricular ischemic dysfunction. Implications for the pathophysiology of chronic myocardial hibernation.

BACKGROUND: Previous work has documented that dysfunctional noninfarcted collateral-dependent myocardium, a condition typical of myocardial hibernation, exhibited almost normal resting perfusion. The present study was designed to test whether these observations could be extended to unselected patients with chronic dysfunction and a previous infarction. METHODS AND RESULTS: Dynamic positron emission tomographic imaging with [13N]ammonia and [18F]fluorodeoxyglucose (FDG) to assess myocardial perfusion and glucose uptake was performed in 39 patients with chronic anterior wall dysfunction undergoing coronary revascularization. Left ventricular function was evaluated by echocardiography before (at rest and during low-dose dobutamine infusion) and 5 months after revascularization. At follow-up, wall motion was improved in 24 patients and unchanged in 15 patients. Before revascularization, absolute myocardial blood flow was higher (84 +/- 27 versus 60 +/- 26 mL.min-1 x 100 g-1, P = .007) in reversibly compared with persistently dysfunctional segments. In segments with reversible dysfunction, values of myocardial blood flow were similar to those in the remote segments of the same patients or in anterior segments of normal volunteers. During glucose clamp, FDG uptake was higher (69 +/- 17% versus 49 +/- 18%, P < .01) but myocardial glucose uptake was not different (38 +/- 20 versus 29 +/- 19 mumol.min-1.100 g-1, P = NS) in reversibly compared with persistently dysfunctional segments. A flow-metabolism mismatch was present in 18 of 24 reversibly injured but absent in 10 of 15 persistently dysfunctional segments. With dobutamine, wall motion improved in 17 of 24 reversibly dysfunctional segments and did not change in 13 of 15 segments with persistent dysfunction. CONCLUSIONS: This study indicates that chronic but reversible ischemic dysfunction is associated with almost normal resting myocardial perfusion, with maintained FDG uptake, and with recruitable inotropic reserve. These data support the contention that chronic hibernation is not the consequence of a permanent reduction of transmural myocardial perfusion at rest.

Adult↗

Focal suppression-burst on electrocorticography after temporal lobectomy.

Of 40 patients with cortical resections for epilepsy, three had focal suppression-burst (S-B) on postresection intraoperative electrocorticography (ECoG). Eighteen to 24 months later, two patients were seizure-free and one had rare seizures. Follow-up neuropsychological testing and MRI did not reveal unexpected postoperative abnormalities. Follow-up scalp surface EEGs did not show S-B. Although S-B on postresection ECoG suggests severe localized cortical damage, this pattern near anterior temporal lobectomy resection margins was not associated with postoperative deficits.

Cerebral Cortex↗

Generalized nonconvulsive status epilepticus after electroconvulsive therapy.

Status epilepticus is a rare complication of conventional single-stimulus electroconvulsive therapy (ECT). We report a case of ECT-induced nonconvulsive generalized status epilepticus (NGS) that lasted 3.5 days. The patient showed regressed psychotic behavior coupled with waxing and waning mutism and unresponsiveness as well as subtle unilateral motor signs. The diagnosis of NGS requires electroencephalographic confirmation.

Adult↗

Episodic brainstem compression masquerading as electrodecremental seizures.

An 8-year-old boy developed generalized tonic spasms lasting minutes accompanied by an electrodecremental event on electroencephalogram in association with increased intracranial pressure caused by shunt malfunction. The electroencephalographic abnormalities and clinical attacks occurred despite an otherwise normal neurologic examination, normal initial opening pressure on lumbar puncture and shunt tap, and only mild ventricular dilation revealed by brain imaging. There was no improvement with antiepileptic drugs. Further signs of uncal herniation led to repeat tap of the shunt, revealing a pressure of 800 mm of water. After revision of the shunt "seizures" stopped and the electroencephalogram returned to normal. Antiepileptic drugs were discontinued, with no recurrence of events.

Brain Stem↗

Brain tumor imaging with PET and 2-[carbon-11]thymidine.

METHODS: To assess the potential of thymidine for imaging brain tumors, 20 patients with untreated (n = 14) and recurrent (n = 6) supratentorial intracranial tumors were studied with PET by using 2-[11C]thymidine (Tdr), and the results were compared with [18F]fluorodeoxyglucose (FDG) PET data. RESULTS: Blood analysis consistently revealed a rapid clearance of the intact Tdr together with the appearance of CO2/HCO3- that, with time, accounted for approximately 70% of the total blood activity. As soon as 10 min after tracer injection, brain images showed a low and homogeneous Tdr distribution over the normal brain structures (cortex-to-blood ratio approximately 1). Visual and quantitative analysis revealed increased Tdr uptake (tumor-to-cortex ratio > or = 1.2) in 11 of 14 untreated tumors and in 5 of 6 recurrent tumors. No correlation was found between Tdr uptake and tumor grade. In 12 of the 14 untreated tumors, FDG uptake was low (tumor-to-cortex ratio: 0.83 +/- 0.79), but a FDG hot spot was visualized in 8 of 10 high-grade and in none of the 4 low-grade tumors. FDG uptake was consistently low in recurrent tumors (tumor-to-cortex ratio: 0.49 +/- 0.19), and PET-FDG was negative in 3 of the 6 cases. CONCLUSION: These data indicate the feasibility of brain tumor imaging with Tdr and suggest the potential clinical usefulness of the method in the detection of tumor recurrences. The specificity of the method remains, however, to be investigated.

Adolescent↗

Brain glucose metabolism and dopamine D2 receptor analysis in a patient with hemiparkinsonism-hemiatrophy syndrome.

We report findings on brain glucose metabolism and dopamine D2 receptors generated by positron emission tomography (PET) in a 67-year-old woman with right hemiparkinsonism-hemiatrophy syndrome (HP-HA). PET with [18F]-fluorodeoxyglucose (FDG) showed marked glucose metabolism asymmetry. There were significant reductions in glucose uptake at the level of the basal ganglia and, to lesser extent, in the fronto-parietal cortex contralateral to the clinically involved side. These changes were different from those found in a patient with hemi-Parkinson's disease who was scanned under similar conditions. Because the patient with HP-HA had only minimal response to levodopa therapy, we evaluated post-synaptic dopaminergic structures using PET with [18F]-fluoroethylspiperone (FESP). No striatal binding asymmetry was found in FESP/PET, which suggests a sparing of striatal dopamine D2 receptors. The changes in FDG uptake which we found were in brain areas relevant to the clinical features of HP-HA syndrome. In addition, our study provides evidence that FDG/PET may help to differentiate HP-HA syndrome from hemi-Parkinson's disease. In most instances, since HP-HA is associated with a more benign clinical course than Parkinson's disease, this distinction is of clinical important.

Aged↗

Hemodynamic and mechanical determinants of myocardial O2 consumption in normal human heart: effects of dobutamine.

The relationship of myocardial O2 consumption (MVO2) to its potential hemodynamic and mechanical determinants was investigated in eight healthy normal volunteers at rest and during infusion of dobutamine (5-10 micrograms.kg-1.min-1). MVO2 was calculated from the monoexponential myocardial clearance of [1-11C]acetate with positron emission tomography, and left ventricular mechanical function was assessed by two-dimensional echocardiography. Infusion of dobutamine increased heart rate by 53%, the tension-time index by 31%, and the rate-pressure product by 116%. Cardiac output (+70%), left ventricular ejection fraction (+24%), total mechanical energy [systolic pressure-volume area, (PVA) +84%], and left ventricular pressure-work index (+100%) also increased during infusion of dobutamine. During infusion of dobutamine, MVO2 increased from 96 +/- 17 to 233 +/- 19 J.min-1.100 g left ventricle-1, while myocardial efficiency (the ratio of PVA to MVO2) decreased from 46 +/- 8 to 35 +/- 4% (P < 0.001 each). MVO2 was best correlated (P < 0.001) with the PVA (r = 0.92) and the pressure-work index (r = 0.92). Infusion of dobutamine also resulted in a significant parallel upward shift of the PVA-MVO2 relationship, indicative of an increase in PVA-independent MVO2. Our data indicate that, in human subjects, MVO2 is mainly related to systolic PVA and that inotropic stimulation with dobutamine results in decreased efficiency of contraction, such as that previously described in isolated hearts.

Acetates↗

Direct comparison of [13N]ammonia and [15O]water estimates of perfusion with quantification of regional myocardial blood flow by microspheres.

BACKGROUND: Both [13N]ammonia and [15O]water have been used to quantify myocardial blood flow with positron emission tomography using appropriate tracer kinetic models. A direct comparison of the two tracers with radioactive microspheres has not been performed in the same experimental preparation. METHODS AND RESULTS: The two tracers have been tested for myocardial blood flow quantification in closed-chest dogs with circumflex coronary stenosis or permanent occlusion at rest and during adenosine-induced hyperemia. [13N]ammonia- and [15O]water-derived myocardial blood flow values have been compared with radiolabeled microspheres. Validation studies consisted of simultaneous measurements of blood flow with positron emission tomography and microspheres over a wide range of flow values. Blood pool and regional tissue activity curves were fitted with a three-compartment model for [13N]ammonia with and without arterial metabolite correction and with a single-tissue-compartment model for [15O]water. A correction for finite-resolution effect before the fit was also applied. In large regions of interest (5 cm3), a good correlation between the microsphere method and [13N]ammonia (with metabolite correction) was obtained (y = 3 + 0.78x, r = 0.94). The correlation with microspheres was slightly better with [15O]water (y = -3 + 0.89x, r = 0.97). Similar correlations were achieved in smaller regions of interest (1 cm3) as well as in akinetic segments and in central infarct regions. CONCLUSIONS: Positron emission tomography with appropriate tracer kinetic models using [13N]ammonia and [15O]water provides an accurate quantitative method for measuring regional myocardial blood flow over a wide range of flow values in normally contracting or akinetic canine myocardium in the absence and in the presence of infarction.

Ammonia↗

Regional oxidative metabolism in patients after recovery from reperfused anterior myocardial infarction. Relation to regional blood flow and glucose uptake.

BACKGROUND: Enhanced uptake of the glucose analogue 18F-fluorodeoxyglucose (FDG) in relation to flow has been proposed as an accurate method of identifying viable myocardium. The evaluation of myocardial oxidative metabolism could be an alternate way to identify reversible injury. The aim of the present study was to investigate in patients with reperfused anterior infarction whether differences in regional oxidative metabolism exist among regions with and without flow-metabolism mismatch. METHODS AND RESULTS: Fifteen patients with reperfused anterior myocardial infarction were studied between 2 weeks and 3 months after the acute event. Regional myocardial blood flow (13N-ammonia; three-compartment model), oxidative metabolism (11C-acetate; monoexponential clearance), and glucose uptake (FDG, linear graphic analysis) were evaluated with dynamic positron emission tomography. Flow-metabolism patterns were used to differentiate reversibly (FDG/flow greater than 1.2) from irreversibly injured myocardium (FDG/flow less than 1.2) using circumferential profile technique. Relative 13N-ammonia uptake was reduced in 71 of 90 anterior and/or septal segments, including 24 with (seven patients) and 38 without (eight patients) flow-metabolism mismatch. Acetate clearance (k), reflecting oxidative metabolism, was reduced by 51% in the center of the infarct area versus remote segments (27 +/- 12 versus 55 +/- 13 min-1.10(-3), p less than 0.001). Compared with infarct segments without flow-metabolism mismatch, segments exhibiting increased glucose uptake relative to flow had faster acetate clearance (35 +/- 14 versus 23 +/- 9 min-1.10(-3), p less than 0.01). Similarly, myocardial blood flow was better preserved in segments with flow-metabolism mismatch (54 +/- 13 versus 45 +/- 8 ml/min/100 g, p less than 0.01) compared with segments without mismatch. However, at similar levels of hypoperfusion, there was no significant difference in acetate clearance among segments with and those without flow-metabolism mismatch: 37 +/- 14 versus 41 +/- 15 min-1.10(-3), respectively. A positive correlation (r = 0.89, p less than 0.001) was found between absolute myocardial blood flow and acetate clearance, regardless of the flow-metabolism pattern. CONCLUSIONS: In patients with reperfused myocardial infarction studied between 2 weeks and 3 months after the acute event, regional oxidative metabolism is reduced in proportion to residual myocardial blood flow and does not differ significantly among similarly hypoperfused segments with and without flow-metabolism mismatch.

Acetates↗