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Background: In literature, the majority of data about treatment with botulinum toxin A are based on the results of a single treatment. We evaluate the safety and effectiveness in the medium term of the use of botulinum toxin type A in patients with neurogenic bladder, taking into consideration the clinical and urodynamic parameters, particularly in cases with repeated injections. Methods: 25 patients were divided into 2 groups: a first group of patients with detrusor overactivity, and a second with overactive sphincter. We performed 20-30 injections (Dysport), at a dose ranging between 500 and 1000 U. The first group was treated with infiltration in the detrusor and in the detrusor and trigone. The second group received injections in the perisphinteric zone, and in the?perisphinteric zone and bladder neck. Of the 25 patients, 12 received a retreatment: the first group of patients kept a daily voiding diary to record the number of bladder emptying, incontinence episodes, nycturia and urgency of urination. The urodynamic parameters and symptoms pre-treatment and 4 months after the treatment were compared in both groups. Results: In the first group there were significant changes in the cystometric capacity, maximum detrusor pressure, and in the post-void residual urine 4 months after treatment. These patients were satisfied with the treatment because of the improvement of incontinence and episodes of urgency. In 9 out of 15 retreated patients, the therapeutic results were similar to the first treatment. The second group reported significant improvements in maximum urinary flow rate, post-void residual urine and maximum detrusor pressure. 3 out of 10 patients were retreated even in this group; the new therapeutic results were similar to the first treatment. Conclusions: Our results in 25 patients with neurogenic bladder showed a concordance with the literature data. The treatment of detrusor and sphincter neurogenic overactivity with botulinum toxin A is effective and safe. Also in the 12 patients with repeated injection treatment, it has been proven safe and effective.  相似文献   
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In heavy loaded mating components, such as sliders and sliding bearings, guaranteeing the efficiency of lubricant films for long times during severe service conditions is very complicated. In this work, the benefits deriving from the use of fiber laser sources for surface texturing of very thin TiN coatings in severe wear working conditions were demonstrated. Evaluations of the laser textured dimples shape, geometry and density are given. Wear performance of the fiber laser textured surfaces was evaluated in discontinuous oil lubricated conditions with a flat contact. High normal load and low sliding speed were applied. Comparison tests were also performed on commercial TiN and WC/C coatings. In terms of average wear volume and maximum wear depth, Laser Surface Texturing of TiN provided respectively a 70% and a 45% reduction if compared to plain TiN. If compared to WC/C the wear resistance gains were lower but LST TiN maintained such benefits for longer wear runs. SEM analysis also revealed that the laser interaction provided a localized thermal cracking to the TiN coating. However, the sliding action caused very limited and localized coating fragmentation or delamination.  相似文献   
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Type 2 deiodinase (D2) converts the prohormone thyroxine (T4) to the metabolically active molecule 3,5,3′-triiodothyronine (T3), but its global inactivation unexpectedly lowers the respiratory exchange rate (respiratory quotient [RQ]) and decreases food intake. Here we used FloxD2 mice to generate systemically euthyroid fat-specific (FAT), astrocyte-specific (ASTRO), or skeletal-muscle-specific (SKM) D2 knockout (D2KO) mice that were monitored continuously. The ASTRO-D2KO mice also exhibited lower diurnal RQ and greater contribution of fatty acid oxidation to energy expenditure, but no differences in food intake were observed. In contrast, the FAT-D2KO mouse exhibited sustained (24 h) increase in RQ values, increased food intake, tolerance to glucose, and sensitivity to insulin, all supporting greater contribution of carbohydrate oxidation to energy expenditure. Furthermore, FAT-D2KO animals that were kept on a high-fat diet for 8 weeks gained more body weight and fat, indicating impaired brown adipose tissue (BAT) thermogenesis and/or inability to oxidize the fat excess. Acclimatization of FAT-D2KO mice at thermoneutrality dissipated both features of this phenotype. Muscle D2 does not seem to play a significant metabolic role given that SKM-D2KO animals exhibited no phenotype. The present findings are unique in that they were obtained in systemically euthyroid animals, revealing that brain D2 plays a dominant albeit indirect role in fatty acid oxidation via its sympathetic control of BAT activity. D2-generated T3 in BAT accelerates fatty acid oxidation and protects against diet-induced obesity.  相似文献   
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