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Biomedical subjects

R Braun

Publications and source records attributed to R Braun.

At least 19 recordsLinked to original sources

[Autologous fat transplantation in dermatology].

The technique of autologous fat transplantation (lipofilling) allows to correct congenital or acquired abnormalities of the cutaneous relief. Autologous fat lobules aspired in one site are transplanted by injection in the zone to treat. This technique is performed ambulatory under local anesthesia and it is possible to perform long term correction of dermal or hypodermal atrophy of one to few centimetres.

Adipose Tissue↗

Prion protein: detection in 'spiked' anaerobic sludge and degradation experiments under anaerobic conditions.

The behavior of the transmissible spongiform encephalopathies (TSE) causing agent denominated "prion protein" in anaerobic sludge (biogas reactor) was assessed with incubation tests. A widely applied screening method for BSE in cattle on the basis of the Western blotting protocol was adapted to detect the Proteinase K resistant, scrapie-form prion protein (PrPSC). As PrPsc source homogenized TSE infected brain tissue of animals late in the clinical phase of disease was taken (301V/VM mouse-BSE; bovine BSE and 22A/SV mouse-scrapie). The incubation under mesophilic conditions did not show any significant reduction of the PrPsc titer. Under thermophilic conditions contradictory results were obtained. The reduction time of PrPsc in water was equal to or longer than the PrPsc reduction time in anaerobic sludge. In comparison, with sterilized (121 degrees C, steam pressure) or poisoned (sodium azide, 1% w/v) sludge used as incubation matrix a much shorter time resulted until no prion protein could be detected.

Anaerobiosis↗

Self-heating of anaerobic digesters using energy crops.

With the increasing application of energy crops in agricultural biogas plants and increasing digester volumes, the phenomenon of self-heating in anaerobic digesters appeared in some cases. Until now this development was just known from aerobic systems. To obtain an idea of the thermodynamics inside an anaerobic digester, a detailed analysis of all heat fluxes in a full-scale agricultural biogas plant was carried out. Several experiments were realised to quantify the influences of different internal and external energy sources. To estimate the impact of self-heating in anaerobic systems, data of other full-scale agricultural biogas plants in Austria were collected. Alternatives to the cooling of the digesters are discussed based on individual experiences of several plants. A connection between carbohydrate-rich substrates, especially with high starch contents, and the self-heating could be shown. From the results it can be assumed that the anaerobic digestion of most energy crops is exothermic, which is in contrast to the current thermodynamic belief.

Anaerobiosis↗

Optimised anaerobic treatment of house-sorted biodegradable waste and slaughterhouse waste in a high loaded half technical scale digester.

Anaerobic co-digestion of organic wastes from households, slaughterhouses and meat processing industries was optimised in a half technical scale plant. The plant was operated for 130 days using two different substrates under organic loading rates of 10 and 12 kgCOD.m(-3).d(-1). Since the substrates were rich in fat and protein components (TKN: 12 g.kg(-1) the treatment was challenging. The process was monitored on-line and in the laboratory. It was demonstrated that an intensive and stable co-digestion of partly hydrolysed organic waste and protein rich slaughterhouse waste can be achieved in the balance of inconsistent pH and buffering NH4-N. In the first experimental period the reduction of the substrate COD was almost complete in an overall stable process (COD reduction >82%). In the second period methane productivity increased, but certain intermediate products accumulated constantly. Process design options for a second digestion phase for advanced degradation were investigated. Potential causes for slow and reduced propionic and valeric acid degradation were assessed. Recommendations for full-scale process implementation can be made from the experimental results reported. The highly loaded and stable codigestion of these substrates may be a good technical and economic treatment alternative.

Abattoirs↗

Influence of operational conditions on the performance of a mesh filter activated sludge process.

Recently, a new type of wastewater treatment system became the focus of scientific research, the mesh filter activated sludge system. It is a modification of the membrane bioreactor where a membrane filtration process serves to separate the sludge from the purified effluent. The difference is that a mesh filter is used instead of the membrane. Due to the much larger pore size of the mesh, the effluent is not of the same excellent quality as with membrane bioreactors. Nevertheless, it still resembles the quality of the now most widely used standard treatment system, where settling tanks are used to retain the activated sludge. At the same time, the new system features all the other advantages of membrane bioreactors including elevated sludge concentrations resulting in decreased volumina of basins and complete substitution of the settling tank. Therefore, this process presents a potential future alternative where a small footprint of the plant is required. However, so far only a few preliminary studies on this innovative process type have been done. In this paper, the effects of suspended solids concentration, flux rate as well as aeration rate on the effluent quality are discussed. Furthermore, the characteristic of the sludge floc was identified as a factor of vital importance. Therefore, another influencing parameter, the food to microorganism (F/M) ratio, which is known to have a significant effect on floc characteristics, was studied. The main result demonstrated that the process was very effective under most of the operation conditions. The suspended solids concentration in the effluent was below 12 mg l(-1), the average COD in the effluent was between 24 and 45 mg l(-1) and the BOD(5) was lower than 5 mg l(-1). High flux rates of up to 150 l m(-2)h(-1) were also achieved.

Bioreactors↗

[Obturator nerve block for transurethral surgery. comparing ropivacaine 0.75 % vs. prilocaine 1 %].

OBJECTIVE: Obturator nerve block is used for transurethral resection of lateral bladder wall tumors to prevent adductor muscle spasm and associated complications. Therefore, the local anesthetic applied should provide an adequate motor blockade. Ropivacaine 0.75 % was compared to prilocaine 1 % and motor blockade assessment performed by the Medical Research Council (MRC)-scale. METHODS: 40 patients (20 per group) scheduled for transurethral resection were randomized to either receiving 10 ml ropivacaine 0.75 % or prilocaine 1 % for direct obturator nerve block in a controlled user-blinded study. Motor block was assessed with the MRC-scale 5 and 10 minutes after local anesthetic injection followed by an assessment 120 and 180 minutes after surgery. Surgery was performed in equally distributed spinal or general anesthesia, intraoperative adductor spasm intensity was evaluated by surgeon's ranking. RESULTS: Motor blockade intensity was significantly higher with ropivacaine 0.75 % at all time points of assessment. Intraoperatively, severe spasm only occurred in the prilocaine 1 %-group. CONCLUSION: Ropivacaine 0.75 % is a more appropriate agent for direct obturator nerve block than prilocaine 1 %, providing a faster onset and a more intense and longer-lasting motor blockade. This may reduce surgical complications and facilitate early surgical re-intervention. In this study, MRC-scale was appropriate for motor blockade assessment in a peripheral nerve block.

Aged↗

A comparison of four serologic assays in screening for Brucella exposure in Hawaiian monk seals.

A survey for Brucella spp. antibodies was undertaken on 164 serum samples from 144 Hawaiian monk seals (Monachus schauinslandi) from the northwestern Hawaiian Islands collected between 1995 and 2002. The buffered antigen plate agglutination test (BPAT), the indirect enzyme immunoassay (I-ELISA), the competitive enzyme immunoassay (C-ELISA), and the fluorescence polarization assay (FPA) were compared with regard to their ability in detecting antibodies to Brucella spp. in the serum samples. Overall, antibodies were detected in 28 (17.1%) animals, using the BPAT test, 25 (15.2%) by the C-ELISA, and 19 (11.6%) in the I-ELISA and the FPA test, using thresholds established for cattle. No evidence of gross pathology consistent with clinical brucellosis was noted in any of the seropositive animals tested. Although further work would be necessary to validate these tests for use with monk seals it appears that both the C-ELISA and the FPA tests would be appropriate as diagnostic screening tests for detection of antibodies to Brucella spp. in this species.

Agglutination Tests↗

[Strongyloides].

Explore the source record for details and available documents.

Animals↗

Salmeterol/fluticasone propionate (50/250 microg) combination is superior to double dose fluticasone (500 microg) for the treatment of symptomatic moderate asthma.

QUESTIONS UNDER STUDY: if patients with asthma remain symptomatic in spite of chronic treatment with inhaled corticosteroids (ICS), increasing the ICS dosage or adding another drug to the treatment regimen are possible therapeutic alternatives. We compared the efficacy and safety of combined salmeterol fluticasone therapy (SFC, 50/250 microg twice daily) with twice the dose of fluticasone propionate (FP, 500 microg b.i.d.) in symptomatic asthmatics. METHODS: this prospective, double-blind study was conducted in 76 study centres. 365 symptomatic patients with moderate asthma aged >18 years and receiving ICS in a dose equivalent to 1000 microg beclomethasone propionate per day were randomly assigned to receive either salmeterol xinafoate (50 microg) and fluticasone propionate (250 microg) in a single dry powder inhaler (Diskus) or 500 microg FP twice daily. The primary efficacy endpoint was morning peak expiratory flow rate (PEFR). Secondary measurements included forced expiratory volume in 1 second (FEV1), asthma symptom scores, and use of rescue medication. RESULTS: combined salmeterol fluticasone therapy resulted in significantly greater improvements in PEFR and symptom control than doubling the dose of FP. At week 12, morning PEFR had increased by 52 L/min from baseline in patients on SFC and by 36 L/min in subjects receiving FP. The adjusted difference between groups was 16.6 L/min (95% confidence interval, 1.1 to 32.0 L/min). In the SFC group, the percentage of symptom-free days increased from baseline by 49% of days as compared with 38% of days after FP (adjusted difference: 12.6% of days, 95% CI 4.0 to 20.7). Quality of life improved to a greater degree after SFC therapy, and patients regarded study drugs as superior to their previous asthma medication. Adverse event profiles were similar between groups. CONCLUSIONS: the combination of salmeterol 50 microg and fluticasone 250 microg in a single dry powder inhaler was superior to twice the dose of FP (500 microg). It seems justified to add salmeterol rather than increasing the ICS dose if symptomatic asthmatics require supplementary therapy.

Adolescent↗

Dilute acid hydrolysis of presscakes from silage and grass to recover hemicellulose-derived sugars.

Grass and silage presscakes from various types of raw materials were hydrolyzed with dilute acid at moderate conditions to recover hemicellulose-derived sugars. Extracting the material with cold water prior to hydrolysis significantly increased the yield. The poor performance without extraction was due to the high buffer capacity of the material. The best results were obtained with extracted grass and silage from a permanent pasture and extracted clover/grass silage. The highest observed sugar yield was 16.43 g/100 g dry-matter, which represents approximately 25% of the available sugars and 60% of the hemicellulose fraction. Including the soluble sugar oligomers, the yields were even higher (up to 20 g/100 g dry-matter). A statistical experiment design with extracted clover/grass silage was performed to estimate the effects of temperature, time, and dry-matter concentration. Acid and dry-matter concentration had the highest effect on sugar yield, whereas temperature and acid concentration were mainly responsible for forming sugar degradation products. These findings agree with recent kinetic theories. Yields in this experiment were comparable to those of other lignocellulosic materials.

Carbohydrates↗

Effect of ozone, chlorine and hydrogen peroxide on the elimination of colour in treated textile wastewater by MBR.

In treating textile wastewater, the application of membrane bioreactor (MBR) technology showed high efficiency in COD and BOD5 removal. However, insufficient colour removal was achieved for possible reuse. The aim of the work presented in this paper was to test the performance of chemical advanced oxidation on the elimination of the colour downstream of an MBR. To improve the quality of the membrane bioreactor effluent three different oxidation treatments were tested at lab-scale: ozonation, chlorination and hydrogen peroxide oxidation. Colour, COD and BOD5 were controlled in order to assess the effectiveness of each process. For chlorination, even with 250 mg/L (active chlorine) only 80% colour removal (SACin = 14; SACout = 2.8) was achieved which is considered unsatisfactory. For hydrogen peroxide, the colour removal was even poorer; it was just 10% at a concentration of 250 mg/L. In contrast, good results were obtained by ozonation. By using only 38 mg/L within 20 minutes, it was possible to achieve the reuse recommendation with a satisfactory colour removal of 93% (SACin = 14; SACout = 0.98). The results showed that ozonation was the most promising method.

Bioreactors↗

Anaerobic treatment of wastewater with high organic content using a stirred tank reactor coupled with a membrane filtration unit.

Using a cross-flow membrane bioreactor, high anaerobic conversion rates of three different types of wastewater with varying organic content were achieved. Loading rates obtained were as follows: 20 g CODL(-1) x d(-1) for artificial wastewater, approximately 8 g CODL(-1) x d(-1) from vegetable processing industry (sauerkraut brine) and 6-8 g CODL(-1) x d(-1) for wastewater from an animal slaughterhouse. At stable conditions, COD-removal rates in all three wastewaters were higher than 90%. Methane yields from the treatment of artificial wastewater, sauerkraut brine, and animal slaughterhouse wastewater were in the range of 0.17-0.30, 0.20-0.34, and 0.12-0.32 L(n) x g(-1) COD(-1) fed, respectively. The complete retention of biomass and suspended solids is a unique feature of this treatment process, which combines a high loading capacity and at the same time, high COD removal rates even for complex wastewater containing high concentrations of particulate matter.

Abattoirs↗

Acetic acid increases stability of silage under aerobic conditions.

The effects of various compounds on the aerobic stability of silages were evaluated. It has been observed that inoculation of whole-crop maize with homofermentative lactic acid bacteria leads to silages which have low stability against aerobic deterioration, while inoculation with heterofermentative lactic acid bacteria, such as Lactobacillus brevis or Lactobacillus buchneri, increases stability. Acetic acid has been proven to be the sole substance responsible for the increased aerobic stability, and this acid acts as an inhibitor of spoilage organisms. Therefore, stability increases exponentially with acetic acid concentration. Only butyric acid has a similar effect. Other compounds, like lactic acid, 1,2-propanediol, and 1-propanol, have been shown to have no effect, while fructose and mannitol reduce stability.

Acetic Acid↗