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[Conversion disorder: psychosomatic aspects instead of psychogenesis?].

The main emphasis of this paper is on a critique of the idea still current in psycho-analysis as well as in psychiatry that conversion can be seen as a purely psychogenic process. This reductionist idea is responsible for some of the difficulties clinicians encounter in their work with patients with a suspected conversion disorder; it may be a consequence of a hysterical structure of this theory. A coherent theory of the psycho-somatic phenomenon of conversion has to proceed in a non-reductionist methodology comprising psychological as well as physiological levels of description and explanation. In this paper, these hypotheses are developed in three dimensions: a) concerning clinical encounters with patients with "pseudoneurological" symptoms; b) looking at the historical development of the Freudian concept of conversion between 1894 and 1916/17, and c) theoretically, including some concepts of cognitive neuroscience.

Adult↗

[Analysis of failures in laparoscopic cholecystectomy].

The aim of the study was an analysis of the causes of conversion from LCh to the traditional operation in the large group of unselected patients. 1991 in 31 LCh-2 cases were converted (5.8%), in 1993 in 862-11 cases (1.3%). In the remaining years the frequency of conversion was below 1%. Altogether in 4000 LCh conversion was necessary in 44 cases. Causes of the conversion: in 23 patients lack of possibility to visualize the gallbladder neck, in 12 cases acute inflammation of gallbladder, in 11 cases chronic inflammation, in another 6 patients laparotomy was performed because of gallbladder carcinoma, in 4 cases because of gallbladder fistulation. The most common cause of conversion were adhesions of the neck of a gallbladder. Conversion rate can be lowered to below 1%.

Cholecystectomy↗

The translational start sites of jawless and cartilaginous fish genes.

Nucleotide sequences that surrounded ATG initiation codons were examined in jawless and cartilaginous fish complementary DNA sequences. Both thymidine and cytidine residues were underrepresented at positions near the initiation codon, while an extremely high frequency of purine nucleotides was observed at position -3. Statistical analysis (chi2) indicated that the greatest compositional bias occurred at nucleotide positions -3 and +4, and suggested that a relatively short consensus sequence surrounded AUG initiation codons of primitive fish genes. ATG triplets within 5' leader sequences were flanked by nucleotides different from those that surrounded ATG initiation codons. Dinucleotide frequency analysis indicated a deficiency in TA and an excess in AA around initiation codons. DNA sequence analysis suggested that low CpG conversion occurred 5' to the translation start of primitive fish genes. The conservation of consensus sequences around initiation codons of primitive fish genes underscores the importance of nucleotide composition for initiation of translation.

Animals↗

Theory of the correlation between capillary and free-flow zone electrophoresis and its use for the conversion of analytical capillary separations to continuous free-flow preparative processes. Application to analysis and preparation of fragments of insulin.

A basic theoretical description of the correlation between capillary zone electrophoresis (CZE) and free-flow zone electrophoresis (FFZE) is presented. The theory of the correlation between CZE and FFZE results from the fact that both methods are based on the same separation principle, zone electrophoresis, and both are performed in the carrierless separation medium with the same composition of the background electrolyte. The equations describing the movement of the charged and noncharged particles in the d.c. electric field applied in the capillary and in the flow-through electrophoretic chamber are presented and used for the quantitative description of the correlation between CZE and FFZE. Based on the theory of the correlation between CZE and FFZE a procedure has been developed for conversion of analytical, microscale CZE separations into continuous preparative separation processes realized by FFZE. Practical application of the developed procedure is demonstrated by CZE analysis and FFZE preparation of an octapeptide fragment of human insulin.

Chromatography, High Pressure Liquid↗

Cyclosporin A drug interactions. Screening for inducers and inhibitors of cytochrome P-450 (cyclosporin A oxidase) in primary cultures of human hepatocytes and in liver microsomes.

In previous papers we demonstrated that cyclosporin A (CsA) was specifically oxidized in rabbit and human liver by cytochrome P-450IIIA. We therefore anticipated that any drug that is an inducer or an inhibitor of this cytochrome should lead to interaction with CsA when given in association with it. In order to confirm this hypothesis, primary cultures of human hepatocytes and human liver microsomes were used to "reproduce" in vitro clinically significant interactions observed between CsA and drugs known either as specific inducers (i.e., rifampicin) or as specific inhibitors (i.e., erythromycin) of P-450IIIA. Our results were in close agreement with the clinical reports. Human hepatocytes maintained in primary cultures for 72 hr in the presence of 50 microM rifampicin exhibited increased levels of P-450IIIA, determined by Western blot using specific antibodies, and concomitant increase in CsA oxidase activity, determined by HPLC analysis of extra and intracellular media. Conversely, these cultures exhibited erythromycin concentration-dependent decreases in CsA oxidase activity when incubated in the presence of 5, 20, and 100 microM erythromycin. In addition, a Lineweaver-Burk analysis of the erythromycin-mediated inhibition of CsA oxidase activity in human liver microsomes revealed competitive inhibition (with Ki of 75 microM) as expected, this macrolide being a specific substrate of P-450IIIA. Using this experimental approach, 59 molecules representative of 17 different therapeutic classes were screened for inducers and inhibitors of CsA oxidase activity. Our results allowed us to elucidate the molecular mechanism of previously observed, but unexplained, drug interactions involving CsA, and to detect drugs that should interfere with CsA metabolism as inducers or inhibitors. Drugs detected as potential inducers of CsA oxidase included: rifampicin, sulfadimidine, phenobarbital, phenytoin, phenylbutazone, dexamethasone, sulfinpyrazone, and carbamazepine. Drugs detected as potential competitive inhibitors included: triacetyloleandomycin, erythromycin, josamycin, midecamycin, ketoconazole, miconazole, midazolam, nifedipin, diltiazem, verapamil, nicardipine, ergotamine, dihydroergotamine, glibenclamide, bromocriptine, ethynylestradiol, progesterone, cortisol, prednisone, prednisolone, and methylprednisolone. Finally, cefoperazone, cefotaxime, ceftazidime, isoniazide, doxycycline, spiramycin, sulfamethoxazole, norfloxacin, pefloxacin, vancocin, trimethoprim, amphotericin B, valproic acid, quinidine, cimetidine, ranitidine, omeprazole, diclofenac, aspirin, paracetamol, debrisoquine, guanoxan, captopril, furosemide, acetazolamide, sparteine, gliclazide, and imipramine were found not to interfere with the hepatic metabolism of CsA.

Blotting, Western↗

Gene conversion and homologous recombination in murine B cells.

Gene conversion has been found to be important in the diversification of antibody genes in chickens and in rabbits. In other species, however, it is not clear whether gene conversion plays any role in antibody diversity. Analysis of an H-chain antibody gene construct that was designed to optimize the detection of gene conversion events in transgenic mice has shown that sequence transfers that resemble gene conversion events can occur in murine B cells and are associated with somatic hypermutation. This raises the possibility that an error-prone gene conversion mechanism might play a role in murine somatic hypermutation.

Animals↗

Relevance of water quality to broiler and turkey performance.

Water was tested from 300 broiler farms in Arkansas in cooperation with three integrated poultry companies, each having at least two locations in the state. The turkey study was conducted in cooperation with three integrated turkey companies with samples from 100 turkey farms, although the numbers were not equal among companies. Performance criteria collected were body weight, feed conversion, livability, and condemnation. In the overall analysis in the broiler study, nitrate had a detrimental effect on performance. Calcium was negatively correlated with adjusted conversion; i.e., conversion improved as calcium increased. Magnesium was positively correlated with adjusted conversion, or had an adverse effect on conversion. Dissolved oxygen, bicarbonate, hardness, calcium, and magnesium were all positively correlated with adjusted weight but nitrate was negatively correlated with adjusted weight. Calcium and potassium were negatively correlated with livability and calcium and nitrate were positively correlated with condemnation. The bacterial results showed no significant difference between top and bottom producers for either Pseudomonas or Escherichia coli. In the turkey study, calcium, magnesium, bicarbonate, hardness, and aggressive index were beneficial to feed conversion. Phosphate and ammonia were detrimental to feed conversion. Calcium, magnesium, dissolved oxygen, zinc, hardness, and aggressive index were all positively correlated with adjusted body weight. Magnesium was negatively correlated with livability. Magnesium and aggressive index were positively correlated with condemnation and potassium, zinc, nitrate, and phosphate were negatively correlated with condemnation. Although fewer farms were involved in the turkey study, the results generally support the results of the broiler study.

Animal Husbandry↗

Mass spectrometric analysis of 5-hydroxyeicosatetraenoic acid (5-HETE) in the perfusate of the isolated rat lung.

The quantitative analysis of 5-hydroxyeicosatetraenoic acid (5-HETE) is one means by which to assess the activation of the 5-lipoxygenase pathway of arachidonic acid in biologic fluids including lung perfusates. Using combined gas chromatography-mass spectrometry (GC-MS) and an oxygen-18-labeled 5-HETE internal standard, a method of analysis has been developed that involves conversion of 5-HETE into its pentafluorobenzyl ester (PFB) which is purified and separated from 12- and 15-HETE PFB esters by thin-layer chromatography. Following isolation and trimethylsilyl ether formation, analysis on a short 5-m capillary GC column circumvents problems of thermal degradation. Negative ion chemical ionization results in abundant production of carboxylate anions (RCOO-) with little subsequent fragmentation; as little as 40 pg of 5-HETE (s/n approximately 10:1) could be detected in 5 ng of 1,1-[18O]2-5-HETE. Studies of the isolated rat lung perfused with a 4% albumin buffer revealed a significant increase in 5-HETE (750 pg/ml perfusate) when injury was induced by addition of glucose oxidase to the perfusion buffer (0.6 U/ml). This stimulated production of 5-HETE could be reversed by prior perfusion of the lung with the drug piriprost, an inhibitor of the 5-lipoxygenase cascade.

Animals↗

Revised T3 uptake and T4-to-T3 conversion in brain and cerebellum of 10-day-old rats: a compartment analysis.

The peripheral and cerebral metabolism of thyroid hormones in 10-day-old rats was evaluated by measuring the kinetics of thyroxine (T4) and 3,5,3'-triiodothyronine (T3) fluxes. Labeled iodo-compounds were measured in the plasma, cerebellum and brain (without cerebellum) for 24 hours after the intravenous injection of [125I]T4 plus [131I]T3. Data were interpreted by compartment analysis. T4 was produced at 8.93 pmol x h(-1) and T3 at 2.26 pmol x h(-1) for 22.7 g body weight. The T4 and T3 distribution volumes were 4.26 and 22.7 ml, whereas the extra-cellular fluid volume was 9.42 ml. T4 was therefore considered to be mostly extra-cellular and T3 mostly intracellular. This was confirmed in the brain and cerebellum, where the extra-cellular fluid (ECF) fraction was 0.021 ml/g organ and the tissue-to-plasma ratio of labeled and endogenous hormones was 0.54-6.54 ml plasma/g tissue for T3 and 0.048-0.136 ml plasma/g tissue for T4. The T3 in the brain and cerebellum was distributed in several pools. The first, representing 11% of the cerebellum and 8% of the brain (without cerebellum) T3, was quickly exchanged with circulating T3. The second pool, derived from the local T4 5'-deiodination, represented 48% of the cerebellum and 94% of the brain (without cerebellum) hormone; a possible third pool (41% of the hormonal content) in the cerebellum appeared to be unlabeled by radioactive T3, and motionless. The in vivo T4 to T3 conversion, as a function of weight, accounted for 21% of cerebellum needs and 43% of brain needs. The rest was provided by T3 uptake.

Animals↗

Precise measurement of total body water using trace quantities of deuterium oxide.

This study was undertaken to investigate the possibility of measuring total body water in human subjects to better than +/-0.5%. Accurate serial estimates of total body water were required to complement densitometric and anthropometric measurements used to monitor body compositional changes in obese patients undergoing dietary or surgical weight reduction therapy. The method required the oral administration of 1-2 g of deuterium oxide and the analysis of pre-dose and respective equilibrated samples of urine, plasma or saliva. The sample size required for analysis was 5 microliter and the conversion of gaseous phase was accomplished using a uranium reduction furnace. Isotopic enrichment of samples was measured using a mass spectrometer incorporating several features designed to cope with problems inherent in H2/H2H isotopic analysis. Reproducibility of sample preparation and accuracy of the mass spectrometer were tested using international standards and shown to give an overall sensitivity of 2 parts in 10(7) for the determination of deuterium in H2O/H2HO mixtures. This precision has enabled us to demonstrate that isotopic fractionation of deuterium with respect to hydrogen occurs within the body and expands the potential use of this isotope for quantitative biochemical studies in the human subject.

Body Water↗

Computer analysis of continuous direct blood pressure recording.

Blood pressure signals recorded continuously in ambulatory patients using the Oxford system were analyzed by an IBM 370 computer in order to obtain beat by beat systolic and diastolic blood pressure along 24 hour blood pressure recordings. The analogical-digital conversion of the signal and the analysis of the sphygmogram are presented and discussed. Synthesis of the several thousands data obtained in 24 hour recordings and plotting of the data for clinical purposes and pharmacological studies are also reported.

Blood Pressure↗

Conversion of carbohydrate to fat in adipose tissue: an energy-yielding and, therefore, self-limiting process.

A theoretical analysis of the energy metabolism associated with the conversion of glucose to fat is presented. In tissues where the pentose cycle furnishes some of the NADPH required for fatty acid synthesis, this conversion is an ATP-yielding process. In rat adipose tissue the maximal rate of glucose conversion to fat can be quantatively predicted on the basis of the tissue's ability to use the ATP which is generated in excess during this conversion. The energy-generating nature of this process provides the means for a type of regulation which depends on metabolic state and which, during fasting, contributes to the sparing of carbohydrate. Impairment of lipogenesis in the fasting state is attributed to a decrease in the activity of the malate cycle and to the presence of free fatty acids. However, rather than by inhibiting specific enzymes, it is by virtue of their quality as substrates for energy production that free fatty acids and their CoA derivatives appear to inhibit de novo lipogenesis. The regulatory phenomena discussed here may explain the failure of the attempts made to identify the rate-limiting step for de novo lipogenesis in adipose tissue.

Acetates↗

Generation of Cherenkov superradiance pulses with a peak power exceeding the power of the driving short electron beam.

Theoretical investigation of a short electron beam (extended bunch) interaction with a backward wave propagating in a slow wave structure demonstrates the possibility of producing ultrashort superradiance pulses with a peak power which exceeds the power of the driving beam (conversion factor K>1). It is shown that a nonuniform slow wave structure with optimized profile is beneficial in order to increase the conversion factor. The results of theoretical analysis are confirmed by the experiments. At X band using the SINUS-150 accelerator (4 ns, 330 kV, 2.6 kA) 0.6-0.8 ns superradiance pulses with a peak power of 1.2 GW and a conversion factor of 1.5 were obtained. Similar experiments at Ka-band based on the RADAN-303 accelerator (1 ns, 290 kV, 2.5 kA) demonstrated production of the superradiance (SR) pulse with duration 200 ps and peak power about 1 GW (conversion factor of 1.4).

Journal Article↗

Oxidation of peptides during electrospray ionization.

[M + H + 16]+ ions were observed in the electrospray ionization mass spectra of several synthetic and naturally occurring peptides. Initial results have shown that the appearance of the modification is dependent on the field strength at the electrospray needle and the flow rate of the solution passing through the capillary. Mass spectrometric experiments on peptides showing the + 16 Da modification attributed the change to the selective oxidation of either a methionyl, tryptophanyl, or tyrosyl residue present in the peptide. These results were further confirmed by tandem mass spectrometry experiments on peptides with a methionyl residue at either the N- or C-terminus, or within the peptide chain. This effect can occur under normal operating conditions and therefore care must be taken in the analysis of samples containing these oxidizable residues. Conversely, the selectivity of the oxidative process may be used to enhance the information obtained from the mass spectrometric analysis. For example, we show results for the analysis of a tryptic digest of the protein myoglobin where the occurrence of the [M + H + 16]+ ion is used, along with the molecular weight data, to correctly identify the trypic fragment.

Amino Acid Sequence↗

Impact of curing protocol on conversion and shrinkage stress.

Since considerable shrinkage stress develops during the curing of dental composites, various soft-start photocuring protocols, aiming to lower stress but not compromise conversion, have been proposed. We hypothesized that utilizing soft-start photocuring will result in not only reduced stress, but also decreased conversion. We evaluated the impact of 3 protocols (soft-start, pulse, and standard) on the stress development and polymerization extent of an experimental composite. A novel set-up capable of simultaneous shrinkage stress, conversion, and temperature measurements on the same specimen was utilized. Analysis of the data shows that stress rises dramatically as a function of conversion in the vitrified state, and the utilization of soft-start or pulse curing results in specimens with reduced final conversion and shrinkage stress, compared with specimens cured according to the standard full-intensity protocol. Finally, this study demonstrates that the predominant reason for the reduced shrinkage stress attained with soft-start or pulse curing is a modest decrease in final conversion.

Analysis of Variance↗

Optimized synthesis of lipase-catalyzed hexyl acetate in n-hexane by response surface methodology.

Hexyl acetate, a short-chain ester with fruity odor, is a significant green note flavor compound and widely used in the food industry. The ability for immobilized lipase from Mucor miehei (Lipozyme IM-77) to catalyze the transesterification of hexanol with triacetin was investigated in this study. Response surface methodology and five-level-five-factor central composite rotatable design were adopted to evaluate the effects of synthesis variables, such as reaction time (2-10 h), temperature (25-65 degrees C), enzyme amount (10-50%; 0.024-0.118 BAUN), substrate molar ratio of triacetin to hexanol (1:1 to 3:1), and added water content (0-20%) on percentage molar conversion of hexyl acetate. The results showed that reaction temperature and substrate molar ratio were the most important parameters and that added water content had less of an effect on percent molar conversion. On the basis of canonical analysis, optimum synthesis conditions were as follows: reaction time, 7.7 h; temperature, 52.6 degrees C; enzyme amount, 37.1% (0.089 BAUN); substrate molar ratio, 2.7:1; and added water, 12.5%. The predicted value was 88.9% molar conversion, and the actual experimental value was 86.6% molar conversion.

Catalysis↗

Analysis for aqueous nitrates and nitrites and gaseous oxides of nitrogen by electron capture gas chromatography.

A highly sensitive gas chromatographic method is presented for the determination of aqueous nitrates. By suitable chemical pretreatment, this method is also applicable to the analysis of aqueous nitrites and gaseous oxides of nitrogen. The method has been applied to the analysis of drinking water, urine, and nitric acid. The technique involves the conversion of the nitrate ion to nitrobenzene with subsequent analysis by electron capture gas chromatography. The detection limit for nitrobenzene is ca. 10(-12) g, making possible the analysis of environmentally significant concentrations of aqueous nitrates and nitrites and gaseous oxides of nitrogen.

Chromatography, Gas↗

Interaction of selection and biased gene conversion in a multigene family.

A model of the evolutionary dynamics of a multigene family in a finite population under the joint effects of selection and (possibly biased) gene conversion is analyzed. It is assumed that the loss or fixation of a polymorphism at any particular locus in the gene family occurs on a much faster time scale than the introduction of new alleles to a monomorphic locus by gene conversion. A general formula for the fixation of a new allele throughout a multigene family for a wide class of selection functions with biased gene conversion is given for this assumption. Analysis for the case of additive selection shows that (i) unless selection is extremely weak or bias is exceptionally strong, selection usually dominates the fixation dynamics, (ii) if selection is very weak, then even a slight conversion bias can greatly alter the fixation probabilities, and (iii) if both selection and conversion bias are sufficiently small, the substitution rate of new alleles throughout a multigene family is approximately the single locus mutation rate, the same result as for neutral alleles at a single-copy gene. Finally, I analyze a fairly general class of underdominant speciation models involving multigene families, concluding for these models under weak conversion that although the probability of fixation may be relatively high, the expected time to fixation is extremely long, so that speciation by "molecular drive" is unlikely. Furthermore, speciation occurs faster by fixing underdominant alleles of the same effect at single-copy genes than by fixing the same number of loci in a single multigene family under the joint effects of selection, conversion, and drift.

Alleles↗