Background:Dyslipideamia is an important major risk factor for cardiovascular disease (CVD), which is the leading cause of death in the developed and developing countries. The world health organization estimates that dyslipideamia is associated with more than half of global cases of ischemic heart disease and more than 4 million deaths per year.
Objective:To assess the serum lipid profile in hypertensive patients.
Patients and methods: A case – control study was carried out at AL – Mustansyria , AL- Dubbat primary care centers for family Medicine and Medical city out patients clinic.Lipid profile were studied in 100 hypertensive patients and 100 healthy volunteers individuals attending these clinics matched for age and sex, serving as a control group. Full history was taken, complete clinical examination was done and various laboratory investigations were carried for all individuals in both groups.
Results: The mean age was (50.9±9.1)year ; (49.7±9.7)year for hypertensive and control individuals. With 50 % for males and females in both groups. The hypertensive patients had significantly higher body mass index than controls (P=0.005).The hypertensive patients had significantly higher total cholesterol (TC), triglycerides (TG), low density lipoprotein (LDL), and lower high density lipoprotein (HDL),( 204.6±20.8, 162.7±45.2,126.0±23.0, 46.1±7.4) , than control group (176.0±11.8, 151.5± 120.8, 102.6±121.6, 56.2±7.5). In hypertensive patients the TC was significantly increasing with age, overweight, and more in males than females. The TG were slightly more in males than females. LDL had increasing value with gender and BMI. Also there is significant association between serum HDL and obesity in both hypertensive and control patients but more with hypertensive patients.
Conclusion:There is a significant relationship between dyslipideamia, B.M.I and hypertension.
X-ray phase analysis was used to analyse the composition of Pb8Na(2±x)(PO4)6 (lead-sodium apatite structure) with different X values (X values refer to changes in the excess or lack of sodium (2±X) in the apatite structure): -0.15, -0.10, -0.05, 0.00, +0.05, +0.10, and +0.15. The ceramic method (solid-state reaction) was used to synthesize all samples at a temperature of 800 °C. Many programs, such as match software (v.3), PDF-4 database (ICCD), and database PDF-4 (ASTM), were used to study the single phases. The least-squares method was used to calculate the unit cell parameters. Results have shown that the following compositions: Pb8Na2(PO4)6<
... Show MoreThe skull is one of the largest bones in the body. It is classified into flat bones that maintain the important organic structures; which are the brain, eyes, and tongue. The skull is a strong support for preserving these organs but they are various according to the type of animals and the environments in which they live and the nature of their nutrition. There are many differences among living organisms in terms of the bones in the skull, their difference or disappearance and their length in the shape of the head. The samples were taken from the scientific storage in the Iraq Natural History Research Center and Museum; Cape hare Lepus capensis (Linnaeus, 1758) and Red fox Vulpes vulpes (Linnaeus, 1758) and the study was conducted o
... Show MoreBACKGROUND: SARS-CoV-2 (COVID-19) is considered a highly infectious and life threatening disease. OBJECTIVE: The present paper aims to evaluate various aspects of preventive measures and clinical management of the scheduled visits for orthodontic patients to the dental clinics during the outbreak of COVID-19, and to assess how orthodontists dealt with this challenge. METHODS: Orthodontists in private and public clinics were invited to fill a questionnaire that addressed infection control protocols and concerns about clinical management of patients in the clinics during the pandemic. Frequncies and percentages of the responses were obtained and compared using Chi-square tests. RESULTS: About 77% of those working in private clinics, a
... Show MoreThe skull is one of the largest bones in the body. It is classified into flat bones that maintain the important organic structures; which are the brain, eyes, and tongue. The skull is a strong support for preserving these organs but they are various according to the type of animals and the environments in which they live and the nature of their nutrition. There are many differences among living organisms in terms of the bones in the skull, their difference or disappearance and their length in the shape of the head. The samples were taken from the scientific storage in the Iraq Natural History Research Center and Museum; Cape hare Lepus capensis (Linnaeus, 1758) and Red fox Vulpes vulpes (Linnaeus, 1758) and the study was conducted o
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