Background: Bone mineral density (BMD) has been assessed using Dual-Energy X-ray absorptiometry (DEXA). This procedure is considered to be of vital importance in assessing the general condition of individuals concerning their skeletal mineralization. BMD is measured according to the results of the DEXA examination of the vertebral column and pelvis. Although diabetes mellitus (D.M.)is known to affect BMD, the information regarding this relationship is not currently particularly clear. Objective: This study concentrates on the point that the assessment of BMD for the vertebral column is insuffi-cient to give a realistic and correct picture of the mineralization of the remaining part of the skeleton. Besides, this study elicited a generalized view of the mineralization of the different body parts between genders and between the left and right sides of the body. The effect of DM I on BMD was evaluated well in this research. Method: This study involved 165 patients complaining of bone pain (85 male and 80 female), about half of whom suffered from diabetes, involving both genders. Further, 90 healthy volunteers had been studied and were considered to constitute the control group. All individuals (255) in this study were exposed to the study of their BMD via DEXA for all parts of the body. Results: The DEXA exam revealed highly statistically significant differences between the sides of the body in the same subject. In addition, there were significant differences in BMD between females and males and highly statistically significant differences between the control and patient groups with DM I. Finally, this study offered strong evidence that the BMD of the vertebral column and pelvis did not give an accurate picture of mineralization in the different parts of the body for a given subject. In conclusion, the DEXA scan for the whole body and each part separately shows promising results as alternative parameters of the DEXA scan for the spine or hip only for accurate diagnosis. Our results indicate that the BMD of the left and right sides for women was less than for men in all cases (average, osteoporosis, and DMI with osteoporosis) for the same sides and between their upper and lower limbs. Patients with DMI revealed significant reductions in BMD in comparison with other subjects who were not diabetic, even if they had osteoporosis. Keywords: DEXA scan, Osteoporosis, DMI, BMD
KE Sharquie, AA Noaimi, S Adnan, AM Al-Niddawi, WK Aljanabi, American Journal of Dermatology and Venereology, 2020 - Cited by 2
We investigated at the optical properties, structural makeup, and morphology of thin films of cadmium telluride (CdTe) with a thickness of 150 nm produced by thermal evaporation over glass. The X-ray diffraction study showed that the films had a crystalline composition, a cubic structure, and a preference for grain formation along the (111) crystallographic direction. The outcomes of the inquiry were used to determine these traits. With the use of thin films of CdTe that were doped with Ag at a concentration of 0.5%, the crystallization orientations of pure CdTe (23.58, 39.02, and 46.22) and CdTe:Ag were both determined by X-ray diffraction. orientations (23.72, 39.21, 46.40) For samples that were pure and those that were doped with
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... Show MoreThis paper presents the ability to use cheap adsorbent (corn leaf) for the removal of Malachite Green (MG) dye from its aqueous solution. A batch mode was used to study several factors, dye concentration (50-150) ppm, adsorbent dosage (0.5-2.5) g/L, contact time (1-4) day, pH (2-10), and temperature (30-60) The results indicated that the removal efficiency increases with the increase of adsorbent dosage and contact time, while inversely proportional to the increase in pH and temperature. An SEM device characterized the adsorbent corn leaves. The adsorption's resulting data were in agreement with Freundlich isotherm according to the regression analysis, and the kinetics data followed pseudo-first-or
... Show MoreConstruction of artificial higher order protein complexes allows sampling of structural architectures and functional features not accessible by classical monomeric proteins. Here, we combine in silico modelling with expanded genetic code facilitated strain promoted azide-alkyne cycloaddition to construct artificial complexes that are structurally integrated protein dimers and demonstrate functional synergy. Using fluorescent proteins sfGFP and Venus as models, homodimers and heterodimers are constructed that switched ON once assembled and display enhanced spectral properties. Symmetrical crosslinks are found to be important for functional enhancement. The determined molecular structure of one artific