122 research outputs found

    Congenital diaphragmatic hernia case in a lamb

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    Measurement of functional microcirculatory geometry and velocity distributions using automated image analysis

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    This study describes a new method for analyzing microcirculatory videos. It introduces algorithms for quantitative assessment of vessel length, diameter, the functional microcirculatory density distribution and red blood-cell (RBC) velocity in individual vessels as well as its distribution. The technique was validated and compared to commercial software. The method was applied to the sublingual microcirculation in a healthy volunteer and in a patient during cardiac surgery. Analysis time was reduced from hours to minutes compared to previous methods requiring manual vessel identification. Vessel diameter was detected with high accuracy (>80%, d > 3 pixels). Capillary length was estimated within 5 pixels accuracy. Velocity estimation was very accurate (>95%) in the range [2.5, 1,000] pixels/s. RBC velocity was reduced by 70% during the first 10 s of cardiac luxation. The present method has been shown to be fast and accurate and provides increased insight into the functional properties of the microcirculation

    Cytotoxic activities of new iron(III) and nickel(II) chelates of some S-methyl-thiosemicarbazones on K562 and ECV304 cells

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    The S-methyl-thiosemicarbazones of the 2- hydroxy-R-benzaldehyde (R= H, 3-OH 3-OCH3 or 4-OCH3) reacted with the corresponding aldehydes in the presence of FeCl3 and NiCl2. New ONNO chelates of iron(III) and nickel (II) with hydroxy- or methoxy-substitued N1,N4-diarylidene-Smethyl- thiosemicarbazones were characterized by means of elemental analysis, conductivity and magnetic measurements, UV-Vis, IR and 1H-NMR spectroscopies. Cytotoxic activities of the compounds were determined using K562 chronic myeloid leukemia and ECV304 human endothelial cell lines by MTT assay. It was determined that monochloro N1-4- methoxysalicylidene-N4-4-methoxysalicylidene-S-methylthiosemicarbazidato- iron(III) complex showed selective anti-leukemic effects in K562 cells while has no effect in ECV304 cells in the 0.53 μg/ml (IC50) concentrations. Also, some methoxy-substitued nickel(II) chelates exhibit high cytotoxic activitiy against both of these cell lines in low concentrations. Cytotoxicity data were evaluated depending on cell lines origin and position of the substituents on aromatic rings

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    The efficacy of incentive spirometry in patients with COPD

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    WOS: 000230551100012PubMed ID: 15955148Objective: Although incentive spirometry (IS) is frequently used to prevent postoperative pulmonary complications, its efficacy in patients with COPD has not been documented. The aim of this study was to evaluate the effects of IS on pulmonary function tests, arterial blood gases, dyspnoea and health-related quality of life in patients hospitalized for COPD. Methodology: A total of 27 consecutive patients (mean age, 68.4 +/- 7.9 years; 26 males) admitted for COPD exacerbations were recruited for the study. In total, 15 (IS treatment group) used IS for 2 months, together with medical treatment. The remaining 12 (medical treatment group) were given only medical treatment. Pulmonary function and blood gases were measured. Assessment of dyspnoea by visual analogue scale (VAS) and quality of life using the St. George's Respiratory Questionnaire (SGRQ) were performed at admission and after 2 months of treatment. Results: The activity, impact and total scores for the SGRQ improved (all P <= 0.0001), PaCO2 values decreased (P = 0.02), PaO2 and PAO(2) values increased (P = 0.02 and P = 0.01, respectively) in the IS treatment group. However, there were no significant differences between the measurements made pretreatment and after 2 months of medical therapy in the medical treatment group, with regards to pulmonary function, blood gases, SGRQ scores and VAS. Conclusion: The use of IS appears to improve arterial blood gases and health-related quality of life in patients with COPD exacerbations, although it does not alter pulmonary function parameters
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