Background: Inflammation and more specifically inflammatory cytokines are determinant in the development of microvascular diabetic complications, including neuropathy, retinopathy and nephropathy.
Objective: The aim of present study is to evaluate the relationships between high sensitive C-reactive protein, microalbuminuria and risk factors for cardiovascular disease.
Subjects and methods: the study involved (30) patients with type 1 diabetic mellitus compared to (30) healthy control. A fasting blood sample was drawn from all subjects after an overnight fasting to measure the biochemical parameters which including glycated hemoglobin, lipid profile, atherogenic index of plasma and high sensitive C-reactive protein concentration in blood of all subjects, also evaluating microalbuminuria, creatinine, urea level in urine of type 1 diabetic mellitus patients and healthy control.
Results: results revealed a significant increase in the level of glycated hemoglobin, total cholesterol, triglyceride, low density lipoprotein, high sensitive C-reactive protein, microalbuminuria, urea and atherogenic index of plasma. While a significant decrease in high density lipoprotein level in patients group compared with control group. Also, there were a highly significant positive correlation between high sensitive C-reactive protein and glycated hemoglobin, atherogenic index of plasma and microalbuminuria.
Conclusions: the results of this study suggests that high sensitive C-reactive protein can be use with microalbuminuria as a biochemical marker to predict the early stage of cardiovascular disease in children and adolescents with type 1 diabetic mellitus.
The research aims to find the impact of a proposed strategy according to the Luria model on realistic thinking among fifth-class scientific students and their achievement in mathematics. To achieve it, the experimental research method and the quasi-experimental design were used for two equal groups, one of them is a control group taught in traditional way and the other is an experimental one taught according to strategy based on Luria model. The research community represents the students of the fifth scientific class from the General Directorate of Education of Karkh First. The research sample (40) students were deliberately chosen and distributed equally between the two groups after making sure that they were equals in their previo
... Show MoreWe study the physics of flow due to the interaction between a viscous dipole and boundaries that permit slip. This includes partial and free slip, and interactions near corners. The problem is investigated by using a two relaxation time lattice Boltzmann equation with moment-based boundary conditions. Navier-slip conditions, which involve gradients of the velocity, are formulated and applied locally. The implementation of free-slip conditions with the moment-based approach is discussed. Collision angles of 0°, 30°, and 45° are investigated. Stable simulations are shown for Reynolds numbers between 625 and 10 000 and various slip lengths. Vorticity generation on the wall is shown to be affected by slip length, angle of incidence,
... Show MoreCryptography algorithms play a critical role in information technology against various attacks witnessed in the digital era. Many studies and algorithms are done to achieve security issues for information systems. The high complexity of computational operations characterizes the traditional cryptography algorithms. On the other hand, lightweight algorithms are the way to solve most of the security issues that encounter applying traditional cryptography in constrained devices. However, a symmetric cipher is widely applied for ensuring the security of data communication in constraint devices. In this study, we proposed a hybrid algorithm based on two cryptography algorithms PRESENT and Salsa20. Also, a 2D logistic map of a chaotic system is a
... Show MoreThis paper deals with a mathematical model of a fluid flowing between two parallel plates in a porous medium under the influence of electromagnetic forces (EMF). The continuity, momentum, and energy equations were utilized to describe the flow. These equations were stated in their nondimensional forms and then processed numerically using the method of lines. Dimensionless velocity and temperature profiles were also investigated due to the impacts of assumed parameters in the relevant problem. Moreover, we investigated the effects of Reynolds number , Hartmann number M, magnetic Reynolds number , Prandtl number , Brinkman number , and Bouger number , beside those of new physical quantities (N , ). We solved this system b
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