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Om Dhungyel Natalie Schiller Jeff Eppleston Deb Lehmann Paul Nilon Andrew Ewers Richard Whittington 《Vaccine》2013
Footrot is a contagious disease of small ruminants which is caused by the bacterium Dichelobacter nodosus. In its virulent form there are severe economic losses and a very significant animal welfare issue. Sheep and goats can be vaccinated for treatment and prevention of the disease. There are 10 different serogroups of D. nodosus (A–I and M) and immunity is serogroup-specific. When all 10 serogroups are presented together in a vaccine, protection persists for only a few months due to “antigenic competition”. Consequently we evaluated the use of sequential monovalent or bivalent vaccines to control/eliminate/eradicate virulent footrot in a longitudinal intervention study on 12 commercial farms in southeast Australia with flock sizes of approximately 1200–4200 sheep. Overall, virulent footrot was eradicated from 4 of the flocks, 2 of which had 2 serogroups, and the others 4 or 5 serogroups. Where there were only 1 or 2 serogroups (3 farms) the clinical response was rapid and dramatic; prevalence was reduced from 45 to 50% before vaccination to 0% (2 farms) or 0.4% (1 farm) after one round of vaccination. In the remaining 9 flocks there were more than 2 serogroups and successive bivalent vaccines were administered leading to eradication of virulent footrot on 2 farms over 4 years and control of the disease on all but 3 of the others. Of the latter farms, 1 discontinued, and 2 initially had poor response to vaccine due to misdiagnosis of serogroup ‘M’, which was previously unknown in Australia. Control was achieved after administration of a serogroup M vaccine. These results provide clear evidence for control, elimination and eradication of virulent footrot by outbreak-specific vaccination in Australia. 相似文献
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Rebecca L. Routson David J. Clark Mark G. Bowden Steven A. Kautz Richard R. Neptune 《Gait & posture》2013,37(3):511-517
Recent studies have suggested the biomechanical subtasks of walking can be produced by a reduced set of co-excited muscles or modules. Individuals post-stroke often exhibit poor inter-muscular coordination characterized by poor timing and merging of modules that are normally independent in healthy individuals. However, whether locomotor therapy can influence module composition and timing and whether these improvements lead to improved walking performance is unclear. The goal of this study was to examine the influence of a locomotor rehabilitation therapy on module composition and timing and post-stroke hemiparetic walking performance.Twenty-seven post-stroke hemiparetic subjects participated in a 12-week locomotor intervention incorporating treadmill training with body weight support and manual trainers accompanied by training overground walking. Electromyography (EMG), kinematic and ground reaction force data were collected from subjects both pre- and post-therapy and from 19 age-matched healthy controls walking on an instrumented treadmill at their self-selected speed. Non-negative matrix factorization was used to identify the module composition and timing from the EMG data. Module timing and composition, and various measures of walking performance were compared pre- and post-therapy.In subjects with four modules pre- and post-therapy, locomotor training resulted in improved timing of the ankle plantarflexor module and a more extended paretic leg angle that allowed the subjects to walk faster and with more symmetrical propulsion. In addition, subjects with three modules pre-therapy increased their number of modules and improved walking performance post-therapy. Thus, locomotor training has the potential to influence module composition and timing, which can lead to improvements walking performance. 相似文献
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Richard A. Deyo Karen T. Straube James R. Moyer Jr. John F. Disterhoft 《Experimental aging research》2013,39(4):169-175
Abstract The open-field behavior of old rabbits (32-50 months) was compared to that of young-controls (3 months). Old rabbits engaged in less grooming and rearing behaviors and were more active than young controls. The old rabbits demonstrated a pattern of ambulation which did not indicate a preference for any particular area of the open-field. In contrast, young rabbits exhibited a very stereotypic pattern of exploration in the open-field, engaging in relatively low levels of ambulation confined to the area near the sides of the open-field. Old rabbits fed a diet which included 860 ppm nimodipine showed behaviors in the open-field which closely approximated those of the young-controls. Nimodipine-treated rabbits made fewer crossings and more rears and grooms than the old controls. These results indicate that very specific aging-related changes occur in the open-field behaviors of rabbits, and that nimodipine effectively reverses these aging-associated changes. These data are consistent with previous studies that have shown improvements in open-field behaviors by old rats receiving nimodipine. 相似文献