Background: Mobile phones are approximately widely used everywhere like in hospital wards, clinics and universities as well as biomedical laboratories. They have become very important tool in students’ life. In contrast, these tools carry many harmful bacteria which are responsible for infectious diseases in human because they serve as a reservoir for different pathogens. Current study was aimed to isolate bacteria from students’ mobile phones at the Institute of Medical Technology/Al-Mansour/The Middle Technical University, Baghdad, Iraq. Also, the study investigated microbial resistance to many antimicrobial agents as well as the appropriate remedial measures. Method: Four hundred and fifty swabs from mobile phones were collected from 450 students (271 males and 179 females). Their age range was (17-30) years. Swabs were collected from students during March 2018. Results: Out of the 450 swabs, 150(33.33%) swabs were positive. The percentages of the isolated bacteria according to gender were 53.33%(80 isolates) from males’ mobile phones and 46.66%(70 isolates) from females’ mobile phones. The most frequent Gram-positive bacteria isolated were Staphylococcus aureus (50%) followed by S. epidermidis (20%), whereas Gram-negative bacteria isolated were Escherichia coli (6.0%), Proteus mirabilis (2.66%), Proteus vulgaris (2.66%) and Pseudomonas aeruginosa (2.66%). The isolated bacteria showed variable antimicrobial sensitivity patterns for different antibiotics. Most S. aureus isolates were resistant to Cefotaxime, Gentamycin, Amoxicillin, Ciprofloxacin and Augmentin, whereas other isolated species showed the highest resistance to many antibiotics of interest. The isolates of Micrococcus spp. were sensitive to all the studied antibiotics except Tetracycline and Fucidic acid. Conclusion: The present findings indicated that contaminated students’ mobile phones could serve as reservoirs of bacterial agents. Also, most of the latter were resistant to many commonly prescribed antimicrobial agents.
The current study introduces a novel technique to handle electrochemical localized corrosion in certain limited regions rather than applying comprehensive cathodic protection (CP) treatment. An impressed current cathodic protection cell (ICCPC) was fabricated and firmly installed on the middle of a steel structure surface to deter localized corrosion in fixed or mobile steel structures. The designed ICCPC comprises three essential parts: an anode, a cathode, and an artificial electrolyte. The latter was developed to mimic the function of the natural electrolyte in CP. A proportional-integrated-derivative (PID) controller was designed to stabilize this potential below the ICCPC at a cathodic potential of −850 mV, which is crucial for prote
... Show MoreDiagram of CFIA system: (A) Fe 3+ line; (B) SCN − line; (C) A.A carrier; (D) sample valve; (E) mixing/reaction coil quenched by A.A; (F) blue LED detector.
Used in the study especially calibrated Erwa to determine the number of neighborhood or the Alayoshi number of bacteria in the count modeling and casting method dishes in addition to using the drop method yielded significant results for a match between the methods used ..
Background: The study of human leukocytes (HLA) alleles, and haplotype frequencies within populations provide an important source of information for anthropological investigation, organ and hematopoietic stem cell transplantation as well as disease association, certain diseases showed association with specific alleles specially those of known or suspected hereditary origin or immunological basis, whether simple renal cyst is congenital or acquired is still unclear and need to be investigated.Objectives: To study the genetic aspect of simple renal cysts by detecting the gene frequency and the haplotype of HLA class I of patients with simple renal cysts, and to find the presence of these cysts in other family members.Method: Thirty patient
... Show MoreIn this study, an improved process was proposed for the synthesis of structure-controlled Cu2O nanoparticles, using a simplified wet chemical method at room temperature. A chemical solution route was established to synthesize Cu2O crystals with various sizes and morphologies. The structure, morphology, and optical properties of Cu2O nanoparticles were analyzed by X-ray diffraction, SEM (scanning electron microscope), and UV-Vis spectroscopy. By adjusting the aqueous mixture solutions of NaOH and NH2OH•HCl, the synthesis of Cu2O crystals with different morphology and size could be realized. Strangely, it was found that the change in the ratio of de-ionized water and NaOH aqueous solution led to the synthesis of Cu2O crystals of differen
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