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ObjectivesThe primary aim was to study the prevalence of generalized joint hypermobility (GJH) among Thai physical therapy (PT) students. The secondary aims were to compare the lower limb alignments and lower limb joint pain and injury between GJH and non-GJH individuals. Furthermore, the association between GJH, lower limb alignment, and joint pain and injury were also evaluated.Material and methodsGeneralized joint hypermobility was assessed using the Beighton score with a cut-off of 4/9 in 255 PT students. The lower limb alignments measured in the study included pelvic tilt angle, tibiofemoral angle, quadriceps angle (QA), and navicular drop. Tibiofemoral angle and QA were measured with and without quadriceps contraction. The history of lower limb joint pain and injury was recorded with a simple questionnaire. Lastly, logistic regression analysis was used to study the association between GJH, lower limb alignment, and joint pain and injury.ResultsThe prevalence of GJH was 21.18% among the studied population. Quadriceps angle during quadriceps relaxation of the non-dominant leg of the GJH group was the only lower limb alignment found greater than those of the non-GJH group. The rate of lower limb joint pain and injury was not different between the two groups. Furthermore, no significant association between GJH, lower limb alignment, and lower limb joint pain and injury was found.ConclusionsGJH is not uncommon among Thai PT students. Only the non-dominant QA was found different between groups. Generalized joint hypermobility neither increase risk nor is it associated with lower limb joint pain and injury among Thai PT students.  相似文献   
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BackgroundMeasurement of blood oxygen saturation is a vital part of monitoring coronavirus 2019 (COVID-19) patients. Pulse oximetry is commonly used to measure blood oxygen saturation and pulse rate for appropriate clinical intervention. But the majority of direct-to-consumer grade pulse oximeters did not pass through in-vivo testing, which results in their accuracy being questionable. Besides this, the ongoing COVID-19 pandemic exposed the limitations of the device in resource limited areas since independent monitoring is needed for COVID-19 patients. The purpose of this study was to perform an in-vivo evaluation of a newly developed smartphone powered low-cost pulse oximeter.MethodsThe new prototype of a smartphone powered pulse oximeter was evaluated against the standard pulse oximeter by taking measurements from fifteen healthy volunteers. The accuracy of measurement was evaluated by calculating the percentage error and standard deviation. A repeatability and reproducibility test were carried out using the ANOVA method.ResultsThe average accuracy for measuring spot oxygen saturation (SPO2) and pulse rate (PR) was 99.18% with a standard deviation of 0.57 and 98.78% with a standard deviation of 0.61, respectively, when compared with the standard pulse oximeter device. The repeatability and reproducibility of SPO2 measurements were 0.28 and 0.86, respectively, which is in the acceptable range.ConclusionThe new prototype of smartphone powered pulse oximeter demonstrated better performance compared to the existing low-cost fingertip pulse oximeters. The device could be used for independent monitoring of COVID-19 patients at health institutions and also for home care.  相似文献   
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The US government has initiated incentive programs to encourage the adoption of Electronic Medical Records (EMR). To qualify for the incentive payment, healthcare providers need to demonstrate “meaningful use” of EMR systems, which requires the use of certified EMRs and the implementation of a set of standard functionalities. In this paper, we examine how the meaningful use of EMRs would affect health care outcomes in outpatient settings. Our results show that the use of core functionalities required by “meaningful use” criteria and the use of certified EMRs have a positive impact on the quality and efficiency of health care. In addition, we find the relationship between the meaningful use and quality of care is moderated by the length of use. The implications of this study are also discussed.  相似文献   
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ObjectiveTo investigate the antibacterial potential of 5 different metal oxide nanoparticles against antibiotic resistant bacterial pathogens viz., Pseudomonas aeruginosa, Klebsiella sp. Streptococcus pneumoniae, Staphylococcus aureus and Streptococcus sp.MethodsThe antibacterial activity of the five different nanoparticles was assessed by well diffusion method. Different concentrations of the nanoparticles were analyzed by MIC and MBC techniques. Finally the potential MgO nanoparticle was also subjected for the time kill assay method.ResultsThe results reveal that, the MgO nanoparticle showed maximum sensitivity [(16.00±0.53) mm dia] against Streptococcus pneumoniae and showed minimum sensitivity against Klebsiella sp. [(9.00±0.31) mm dia]. None of the nanoparticles showed sensitivity against the Streptococcus sp. The MIC result reveals that, the MgO nanoparticle showed maximum inhibition at a concentration of 10 μ g against Streptococcus pneumoniae. Moreover, the time kill assay reveals that, the bacterial growth was inhibited from the 2nd h onwards at a concentration of 10μ g.ConclusionsIt is concluded from the present findings that, the MgO nanoparticle could be used as an alternative antibacterial agent after completing successful in vivo trials.  相似文献   
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