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A Gadea

Publications and source records attributed to A Gadea.

18 recordsLinked to original sources

Observation of 54Ni: cross-conjugate symmetry in f7/2 mirror energy differences.

Gamma decays from excited states up to Jpi=6+ in the N=Z-2 nucleus 54Ni have been identified for the first time. Level energies are compared with those of the isobars 54Co and 54Fe and of the cross-conjugate nuclei of mass A=42. The good but puzzling f7/ cross-conjugate symmetry in mirror and triplet energy differences is analyzed. Shell model calculations reproduce the new data but the necessary nuclear charge-dependent phenomenology is not fully explained by modern nucleon-nucleon potentials.

Journal Article↗

Transition probabilities in 134Pr: a test for chirality in nuclear systems.

Exited states in 134Pr were populated in the fusion-evaporation reaction 119Sn(19F,4n)134Pr. Recoil distance Doppler-shift and Doppler-shift attenuation measurements using the Euroball spectrometer, in conjunction with the inner Bismuth Germanate ball and the Cologne plunger, were performed at beam energies of 87 MeV and 83 MeV, respectively. Reduced transition probabilities in 134Pr are compared to the predictions of the two quasiparticle + triaxial rotor and interacting boson fermion-fermion models. The experimental results do not support the presence of static chirality in 134Pr underlying the importance of shape fluctuations. Only within a dynamical context the presence of intrinsic chirality in 134Pr can be supported.

Journal Article↗

Evidence for nontermination of rotational bands in 74Kr.

Three rotational bands in 74Kr were studied up to (in one case one transition short of) the maximum spin I(max) of their respective single-particle configurations. Their lifetimes have been determined using the Doppler-shift attenuation method. The deduced transition quadrupole moments reveal a modest decrease, but far from a complete loss of collectivity at the maximum spin I(max). This feature, together with the results of mean field calculations, indicates that the observed bands do not terminate at I = I(max).

Journal Article↗

Effective charges in the fp shell.

Following the heavy-ion fusion-evaporation reaction 32S+24Mg at 95 MeV beam energy the lifetimes of analogue states in the T(z)=+/-1/2 A=51 mirror nuclei 51Fe and 51Mn have been measured using the Cologne plunger device coupled to the GASP gamma-ray spectrometer. The deduced B(E2;27/2(-)-->23/2(-)) values afford a unique opportunity to probe isoscalar and isovector polarization charges and to derive effective proton and neutron charges, epsilon(p) and epsilon(n), in the fp shell. A comparison between the experimental results and several different large-scale shell-model calculations yields epsilon(p) approximately 1.15e and epsilon(n) approximately 0.80e.

Journal Article↗

Unusual isospin-breaking and isospin-mixing effects in the A=35 mirror nuclei.

Excited states have been studied in 35Ar following the 16O(24Mg,1alpha1n)35Ar fusion-evaporation reaction at 60 MeV using the Ge-detector array GASP. A comparison with the mirror nucleus 35Cl shows two remarkable features: (i) A surprisingly large energy difference for the 13/2(-) states, in which the hitherto overlooked electromagnetic spin-orbit term is shown to play a major role, and (ii) a very different decay pattern for the 7/2(-) states, which provides direct evidence of isospin mixing.

Journal Article↗

Coulomb energy differences in t = 1 mirror rotational bands in (50)Fe and (50)Cr.

Gamma rays from the N = Z-2 nucleus (50)Fe have been observed, establishing the rotational ground state band up to the state J(pi) = 11+ at 6.994 MeV excitation energy. The experimental Coulomb energy differences, obtained by comparison with the isobaric analog states in its mirror (50)Cr, confirm the qualitative interpretation of the backbending patterns in terms of successive alignments of proton and neutron pairs. A quantitative agreement with experiment has been achieved by exact shell model calculations, incorporating the differences in radii along the yrast bands, and properly renormalizing the Coulomb matrix elements in the pf model space.

Journal Article↗

Glial transporters for glutamate, glycine, and GABA III. Glycine transporters.

Glial cells possess transport systems for the three major amino acid neurotransmitters glutamate, gamma-aminobutyric acid (GABA) and glycine, involved in the arrest of neurotransmission mediated by these compounds. Two glycine transporters have been cloned: GLYT1, mainly expressed by glial cells and shown to colocalize with NMDA receptors, and GLYT2, exclusively expressed by neurons and colocalized with the inhibitory glycine receptors. The way in which the regulation of extracellular glycine concentration by glial glycine transporters affects physiological and pathological conditions is discussed. The presence, differential pharmacology and specific regulation of glycine transporters in glial cells strongly support an important role for glia in the modulation of both, excitatory and inhibitory neurotransmission.

ATP-Binding Cassette Transporters↗

Glial transporters for glutamate, glycine and GABA I. Glutamate transporters.

The termination of chemical neurotransmission in the CNS involves the rapid removal of neurotransmitter from synapses by specific transport systems. Such mechanism operates for the three major amino acid neurotransmitters glutamate, gamma-aminobutyric acid (GABA) and glycine. To date, five different high-affinity Na(+)-dependent glutamate (Glu) transporters have been cloned: GLT1, GLAST, EAAC1, EAAT4 and EAAT5. The first two are expressed mainly by glial cells, and seem to be the predominant Glu transporters in the brain. A major function of Glu uptake in the nervous system is to prevent extracellular Glu concentrations from raising to neurotoxic levels in which glial transporters seem to play a critical role in protecting neurons from glutamate-induced excitotoxicity. Under particular conditions, glial GluTs have been shown to release Glu by reversal of activity, in a Ca(2+)--and energy-independent fashion. Furthermore, an activity of these transporters as ion channels or transducing units coupled to G-proteins has recently been reported. The localization, stoichiometry, and regulation of glial GluTs are outlined, as well as their possible contributions to nervous system diseases as ALS, AD and ischemic damage.

ATP-Binding Cassette Transporters↗

Glial transporters for glutamate, glycine, and GABA: II. GABA transporters.

The termination of chemical neurotransmission in the central nervous system (CNS) involves the rapid removal of neurotransmitter from synapses. This is fulfilled by specific transport systems in neurons and glia, including those for gamma-aminobutyric acid (GABA), the main inhibitory neurotransmitter in the brain. Glial cells express the cloned Na(+)/Cl(-)-dependent, high-affinity GABA transporters (GATs) GAT1, GAT2, and GAT3, as well as the low-affinity transporter BGT1. In situ hybridization and immunocytochemistry have revealed that each transporter shows distinct regional distribution in the brain and the retina. The neuronal vs. glial localization of the different transporters is not clear-cut, and variations according to species, neighboring excitatory synapses, and developmental stage have been reported. The localization, stoichiometry, and regulation of glial GATs are outlined, and the participation of these structures in development, osmoregulation, and neuroprotection are discussed. A decrease in GABAergic neurotransmission has been implicated in the pathophysiology of several CNS disorders, particularly in epilepsy. Since drugs which selectively inhibit glial but not neuronal GABA uptake exert anticonvulsant activity, clearly the establishment of the molecular mechanisms controlling GATs in glial cells will be an aid in the chemical treatment of several CNS-related diseases.

Animals↗

Signature inversion caused by triaxiality and unpaired band crossings in 72Br

High-spin states in 72Br were studied with the EUROBALL III spectrometer using the 40Ca(40Ca,alpha3p1n) reaction. The negative-parity band observed in this experiment displays a signature inversion around spin I = 16. The interpretation within the cranked Nilsson-Strutinsky approach shows that this signature pattern is a signal of a substantial triaxial shape change with increasing spin where the nucleus evolves from a triaxial shape with rotation about the intermediate axis at low spin through a collective prolate shape to a triaxial shape but with rotation about the shortest principal axis at high spin.

Journal Article↗

The adenylate cyclase inhibitor MDL-12330A has a non-specific effect on glycine transport in Müller cells from the retina.

Müller glial cells express two transport systems for glycine (Gly): one with low affinity and another identified as GLYT1 with high affinity. The latter colocalizes with NMDA receptors in the CNS. Gly is considered as an obligatory coagonist at NMDA receptors, and, hence, the Gly transport system could contribute to the modulation of glutamate (Glu) excitatory transmission in the vertical pathways of the retina. For this reason, the regulation of Gly transport by cAMP was studied. We report here a non-specific effect of MDL-12330A, a compound reported to inhibit adenylate cyclase (AC), on Gly transport in Müller glia. This effect might be due to a toxic action on the cells, decreasing cell viability, and not to a specific inhibition of the adenylate cyclase. Non-specific effects of this drug should be considered when the participation of cAMP in any biological process is studied. We have clearly demonstrated that cAMP does not participate in the regulation of Gly transport in Müller glia.

Adenylyl Cyclase Inhibitors↗

Characterization of glycine transport in cultured Müller glial cells from the retina.

Rapid termination of the synaptic action of glutamate (Glu) and glycine (Gly) is achieved by uptake into the presynaptic terminal and glial cells. In the vertebrate CNS, Gly acts both as an inhibitory neurotransmitter and as a Glu modulator or coagonist at postsynaptic N-methyl-D-aspartate (NMDA) receptors. We have previously described NMDA receptors in Müller cells of chick retina coupled to the phosphoinositide cascade, the entry of calcium, and the activation of protein kinase C (PKC; López-Colomé et al. Glia 9:127-135, 1993). A colocalization of Gly transporters and NMDA receptors has been reported in brain tissue (Smith et al. Neuron 8:927-936, 1992); since the concentration of Gly could participate in the modulation of Glu excitatory transmission in the vertical pathways of the retina, transport of Gly in monolayer cultures of Müller cells was studied. Gly transport was found pH-sensitive with an optimum at pH 7.4. Kinetic analysis of the saturation curve for Gly within a concentration range of 0.01-2 mM, revealed two components of transport: a low-affinity system with Km = 1.7 mM, Vmax = 30 nmol/10 min/mg protein, and a high-affinity one with a Km = 27 microM, Vmax = 3 nmol/10 min/mg protein. Both systems were Na+ -dependent; the high-affinity system proved also dependent on external Cl- and was inhibited by sarcosine, characteristic of GLYT1 transporters. The inhibition of low-affinity uptake by 2-(methylamino)isobutyric acid (MeAIB) and 2-aminoisobutyric acid (AIB) suggests the presence of transport system A in Müller cells. The process is energy-requiring, since Gly transport was decreased by metabolic inhibitors. Data obtained are in keeping with a modulatory role for Müller glia on excitatory transmission in the retina.

2,4-Dinitrophenol↗

Persistent bony lesions in congenital syphilis. A report of three cases.

We report three cases of congenital syphilis with bony lesions which were unusual because they were unilateral and asymmetrical. They did not heal with conventional penicillin treatment and they resulted in angular deformities, shortening of the limb and pseudarthrosis following pathological fractures.

Bone Diseases↗

[The extraperitoneal transomphalic drainage of the postoperative hydatid cavity through the transposed round ligament detached from the liver].

The transomphalic and then the transligamentary extraperitoneal drainage imagined by D. Burlui and its multiple use in the liver and the biliary tract surgery, is well known. Concerning the hepatic hydatid cysts, the drainage of the remaining cavity by the round ligament way is possible for most of the locations of the parasite, but it is less performed in the right liver lateral segments locations, too far situated, and also in the left liver locations. On the other hand, this specific method implies to place the drainage tube using the round ligament "in situ ", normally placed and inserted. We encountered an extremely large hydatid cyst of the left hepatic lobe, adherent to the anterior and posterior abdominal wall, spleen, stomach, pancreas and large bowel, which required to extend the incision to the left and make the necessary segmentation of the round ligament at its hepatic insertion. After pericystotomy and the evacuation of the cyst, the remaining cavity drainage was performed through the same round ligament whose free end was tightly fixed to the partial pericystotomy border. This transposition allowed the exteriorisation of the drainage tube in the same way as for the transligamentary and total extraperitoneal original method.

Animals↗

[Extraperitoneal transomphalic drainage of the posthydatid hepatic restant cavity by coelioscopic approach].

Being often biliary contaminated and suppurative, the hydatid hepatic cyst is in fact a real parasitic abscess. So far its surgical approach represents the only credible possibility of treatment. Authors impart their experience regarding the external drainage of the restant posthydatid cavity, by using a completely extraperitoneal way of bringing out the drain, by means of the round ligament, an original method conceived and put into practice by Prof. D. Burlui in 1968. This technique is simple, without risks or complications, possible for most of the parasite hepatic locations, especially for the central segments, for which this method is superior to other surgical procedures. The greatest advantage of the extraperitoneal transomphalic route of the drain is the absence of the peritoneal losses and so the impossibility of biliary leakage occurrence. The radiological and the ultrasonic controls confirm the reduction and finally total fibrosis and disappearance of the remaining cavity, about two months after the surgery. In this moment the drainage may be suppressed. In December 2001, we added to this method an other original variant: the coelioscopic approach of the extraperitoneal transomphalic drainage of the restant posthydatid cavity, representing the aim of this paper.

Echinococcosis, Hepatic↗