Methods:  In this study, 13 public hospitals in Mazandaran province were selected for review and required data collected for ten adult patients with mean weight of 7010kg in each projection. Then, information of each center was separately analyzed. Next, in order to measure x-ray output tube, the dosimeter RTI model Barracuda calibrated has been applied for measuring air karma within energy rage of 40-150kvp. ESAK and ESD parameters, usually used for monitoring DRL in conventional radiography, were calculated.

Conclusion:  The present study has determined wide variations in radiation dose of x-ray examinations among hospitals in Mazandaran, Iran. In order to reduce skin dose, an optimization procedure should be considered. Application of a reference dose (DRL) could be a practical method for this purpose. The role of optimization of radiography parameters for reducing patient dose is a significant issue. Through optimizing parameters, it would be possible to preserve image quality while reduction of patient dose.


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Use of radiation sources in Industrial Radiography is heavily regulated by state and federal organizations due to potential public and personal risks. Two of the most commonly used sources of radiation in industrial radiography are x-ray generators and gamma ray sources. Industrial radiography is often subdivided into "X-ray Radiography" or "Gamma Radiography", depending on the source of radiation used.

Trivitron offers a Premium Point-of-Care Ultrasound Solution with a cutting-edge technology for precise navigation improving quality of care and patient safety during critical care procedures. Focusing on every detail, Navi is designed to be indispensable as previously difficult tasks become routine with sight. It is simple to use and durable with best-in-class image quality. With its vision for precise navigation, conceptual design, it is setting up a new standard for Anaesthesia Ultrasound.

Root canal therapy is a very common endodontic treatment that saves a tooth when nerves are affected by decay or infection. Recent technological advances have improved the accuracy of root canal therapy and increased the overall satisfaction of our patients. Our Dynamic Dental Navigation System, by Navident, is the newest and most advanced 3D navigational system available. Originally used for implant placement, this system can also allow our Dr. Williams to access root canals with an unsurpassed level of precision and control. Adding this latest form of digital scanning software to our current capabilities has significantly enhanced the options of providing the most accurate root canal treatment possible.

What is Navi Radiography Pro? Navi Radiography is a mobile application that serves as a guide for radiography with 3D images. It offers 245 radiography methods, including tests for head and skull, vertebral column, thoraco-abdominal, upper extremities, and lower extremities. The app also features a Beam's Eye View with a 3D image on the X-ray incident direction, perfectly matched skin, bones, and X-ray picture, adjusting transparency with one-tap, and identifying the principles of X-ray picture easily and perfectly. Additionally, it provides a Position & X-ray feature with a 3D image reproducing the posture of the patient perfectly, front view, side view, perspective view, direction of beam, angles, and various radiographic parameters, X-ray image atlas, anatomical and medical terms. The Summary feature includes various languages with medical terms, region, pathology, IR size, SID, the central ray, respiration, patient position, collimation, kVp, mAs, image evaluation, and tips. The app is designed for radiologic technologists, radiographers, radiologists, medical doctors, medical school students, health college students, employees in hospitals, medical institutions, and health institutions.

For a simple photograph ("Lichtbild"), such as simple passport photos from Photo booths, photos from satellites, pictures from radiography, it was either published more than 50 years ago or it was taken more than 50 years ago and never published within 50 years of its creation.

Prosthetic joint infections (PJIs), although not very common, currently pose a very significant threat since they are associated with severe complications, high morbidity rates and substantial costs. PJIs are most commonly caused by Staphylococcus aureus and coagulase-negative staphylococci. The diagnosis of implant-associated infections is very challenging since no single routinely used laboratory or clinical test has been shown to demonstrate adequate results with respect to sensitivity, specificity and accuracy. In most cases, a sum of clinical signs and symptoms, histopathology, blood tests, radiography, bone scans and microbiological testing is considered to arrive at an accurate diagnosis. Treatment of PJIs is also very difficult since most of the infections are caused by biofilm-producing microorganisms which are significantly more resistant to the hosts natural defense mechanisms and antibiotic treatment. For successful management, a combination of both antibiotic and surgical treatment is most often required, and early diagnosis is of the utmost importance. Thus, a multidisciplinary approach is potentially the best option in dealing with PJI, and should include the involvement of microbiologists, orthopedic specialists, clinicians, pathologists and radiologists in order to improve decision-making processes and ensure overall success. The following review aims at briefly outlining the microbiology, diagnostic and treatment options, and preventive measures associated with such infections. e24fc04721

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