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AimTo verify whether arterial stiffness and endothelial dysfunction influence lower limb muscle strength and gait speed in older adults with type 2 diabetes mellitus (T2DM).MethodsCross-sectional study including seventy-eight older adults with T2DM (aged 67 ± 6 years and 42 % male). Arterial stiffness was assessed using pulse wave velocity (PWV), while endothelial function was measured by flow-mediated dilation (FMD). Lower limb muscle strength and gait speed were assessed using the 30-second chair stand test (30s-CST) and 10-Meter Walk Test, respectively.ResultsBoth PWV (m/s) and FMD (%) were univariately associated with number of repetitions in 30s-CST and gait speed (P < 0.05). After control for age, sex and body mass index, PWV remained associated with repetitions in 30s-CST (95 % CI: ?0.494 to ?0.054; P = 0.015) and gait speed (95 % CI: ?0.039 to ?0.002; P = 0.031). After adjustments for control variables, T2DM duration and glycemic control, FMD was associated with repetitions in 30s-CST (95 % CI: 0.008 to 0.324; P = 0.039) and gait speed (95 % CI: 0.011 to 0.038; P = 0.001).ConclusionIn older adults with T2DM, both arterial stiffness and endothelial dysfunction are associated with decreased leg muscle strength and slower gait speed.  相似文献   
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PurposeTo provide means for calculating the dose received by various tissues of the patient, calculate lung shield, and verify received dose using a phantom as a tool for quality assurance for a planned Total Body Irradiation (TBI) procedure in radiotherapy.MethodUsing Microsoft Visual Basic, MATLAB, and Python, a program for Total Body Irradiation Calculation in Radiotherapy (TBICR) is constructed. It uses patient translation and beam zone method for total body irradiation calculations to compute the proper dose received by the patient and determine the lung shield thickness. There are three main user-friendly interfaces in the application. The first one allows the user to upload the TBI topography and estimate the distances needed for TBI calculations. The second one enables the user to count the number of beam zones needed for each point and estimate the effective area (Aeff) for each level. The third interface estimates the velocity required to deliver the relative dose depending on patient separation, Monitor Units (MU), couch speed and travel distance. It allows the user to compute the required lung shield thickness, read any patient's CT DICOM file and acquire dose in any distinct location using machine learning model to predict the dose.ResultsThe TBICR software has been successfully validated by reproducing all of the manual calculations in an exact and timely manner. TBICR generated more accurate results and confirmed the absorbed dose to patient through measurements on Anderson phantom.ConclusionsA computer program for the calculation of total body irradiation (TBI) is described in full. The dose received at each point on the patient, the calculation of lung shield and the determination of the velocity and time required for the couch movement are all made possible using the software. The ease of use, precision, data storage and printing are some important features of the present software.  相似文献   
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目的 基于文本挖掘技术和生物医学数据库对新型冠状病毒肺炎(COVID-19)相关文献进行数据挖掘分析,探究COVID-19及其主要症状发热、咳嗽、呼吸障碍相关基因靶点,筛选潜在有效的化学药和中药。方法 使用GenCLiP 3网站获取COVID-19和其主要症状咳嗽、发热、呼吸障碍共4个关键词的共有靶点,在METASCAPE数据库中对其进行基因本体(GO)和通路富集分析,再利用String数据库和Cytoscape软件构建共有靶点的蛋白质相互作用网络,筛选获得核心基因,运用DGIdb数据库、SymMap数据库针对核心基因进行中西医治疗药物预测。结果 获得COVID-19及其主要症状共有基因靶点28个,其中有IL2、IL1B、CCL2等核心基因16个,使用DGIdb数据库筛选获得与16个关键靶点相互作用的化学药包括沙利度胺、来氟米特、环孢素等28种,中药包括虎杖、黄芪、芦荟等70味。结论 COVID-19及其主要症状的病理机制可能和CD4、KNG1、VEGFA等28个共有基因相关,可能通过介导TNF、IL-17等信号通路参与COVID-19病理过程。潜在有效药物可能通过作用相关靶点通路起到治疗COVID-19的作用。  相似文献   
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ObjectiveThe purpose of the study was to investigate pulmonary functions of patients with chronic neck pain and compare them with those of asymptomatic controls.MethodsThis case-control study was conducted with 25 patients with chronic neck pain (age, 26.84 ± 7.89 years) and 27 age-matched asymptomatic controls (age, 25.96 ± 7.13 years). Pulmonary function tests were performed using spirometry (Quark PFT, COSMED, Rome, Italy). Forced vital capacity (FVC), forced expiratory volume in the first second (FEV1), forced expiratory flow at 25% to 75% vital capacity, peak expiratory flow, maximum voluntary ventilation, and the FEV1/FVC ratio were measured and are expressed as (%) predicted value for patients with chronic neck pain and asymptomatic controls.ResultsThe chronic neck pain group had lower FEV1 (P = .015), FVC (P = .029), forced expiratory flow at 25% to 75% vital capacity (P = .040), and maximum voluntary ventilation (P = .042) compared with asymptomatic controls; however, FEV1/FVC (P = .470) and peak expiratory flow (P = .183) were similar in both groups.ConclusionThese results demonstrated that dynamic lung volumes were lower in patients with chronic neck pain compared with asymptomatic controls.  相似文献   
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目的 评价碳离子和质子治疗胰腺癌(PaC)的安全性和有效性。方法 检索数据库纳入碳离子和质子治疗PaC的临床研究,检索时间为自建库至2019年6月。两位研究者独立筛选文献、提取资料。采用STATA 12.0和MetaAnalyst Beta 3.13软件进行Meta分析。结果 共纳入8篇文献,包含459例PaC患者。效应模型Meta分析显示,碳离子和质子治疗PaC的2、3、5级胃肠道溃疡发生率分别为7%、2%、0;2、3、4级厌食症发生率分别为6%、3%、0;1、2年总生存率(OS)分别为77%、45%;2年局部控制率为81%;1年无局部进展率为88%;1年局部复发率为15%。碳离子和质子治疗PaC的2、3、2~3级胃肠道溃疡发生率分别为6.8%、1.5%、9.2%和3.5%、8.3%、6.1%(均P>0.05);1、2年OS分别为77.1%、44.4%和77.6%、49.7%(P均>0.05)。结论 碳离子和质子治疗PaC安全有效,两者的安全性和有效性相似。  相似文献   
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Inference of biogeographic origin is an important factor in clinical, population and forensic genetics. The information provided by AIMs (Ancestry Informative Markers) can allow the differentiation of major continental population groups, and several AIM panels have been developed for this purpose. However, from these major population groups, Eurasia covers a wide area between two continents that is difficult to differentiate genetically. These populations display a gradual genetic cline from West Europe to South Asia in terms of allele frequency distribution. Although differences have been reported between Europe and South Asia, Middle East populations continue to be a target of further investigations due to the lack of genetic variability, therefore hampering their genetic differentiation from neighboring populations. In the present study, a custom-built ancestry panel was developed to analyze North African and Middle Eastern populations, designated the ‘NAME’ panel. The NAME panel contains 111 SNPs that have patterns of allele frequency differentiation that can distinguish individuals originating in North Africa and the Middle East when combined with a previous set of 126 Global AIM-SNPs.  相似文献   
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