Nowadays, silicone based biocompatible polymers are used to produce catheters and other devices that are inserted into the body for interventional procedures.
The inserted parts are commonly filled with substances opaque to x-rays, thereby rendering the devices visible under fluoroscopy or x-ray imaging. These fillers or radiopacifiers are based on typically dense metal or metallic salt powders that affect the energy attenuation of photons in an x-ray beam as it passes through matter, reducing the intensity of the photons by absorbing or deflecting them. Because these materials exhibit a higher attenuation coefficient than soft tissue or bone, they appear lighter on a fluoroscope or x-ray film. This visibility helps to accurately position the device in the affected area. Image contrast and sharpness can be varied by the type and amount of radiopacifier used. Device design is also a factor; a higher loading of radiopaque material, for instance, is needed for thin-wall catheter tubing than for products with thicker walls. Generally, compounds should contain only the amount of additives absolutely required for the application, since overloading can result in the loss of the polymer’s mechanical properties. Blending together several radiopaque materials can produce better results than using only one type in the solution. Among the most widely used radio pacifiers for medical devices are barium sulfate, bismuth compounds, and tungsten - metals that are excellent absorbers of x-rays. Selection of the correct fillers in the proper amount requires a thorough understanding of attenuation and how it is affected by various radiopaque compounds.
Bu hikaye Pharma Bio World dergisinin February 2019 sayısından alınmıştır.
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Bu hikaye Pharma Bio World dergisinin February 2019 sayısından alınmıştır.
Start your 7-day Magzter GOLD free trial to access thousands of curated premium stories, and 9,000+ magazines and newspapers.
Already a subscriber? Giriş Yap
B&R Expands Gilgenberg Site
Automation specialist invests in production, office space and logisticsB&R is investing in its Gilgenberg site, located a few kilometers from the B&R headquarters in Eggelsberg. The expansion adds new offices, training rooms and production space. A new logistics hall has also been opened at the site.
Creating An Annual Event Of The Biopharma Industry By Focusing On Frontiers, & Promoting Leading Enterprises To Collaborate
The Union Budget 2018 was presented on February 1, 2018.
Pain Point To Gaining Brownie Points: Technology Is A Game Changer For Indian Pharma Sector
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Data Acquisition, Evaluation And Transmission To The Cloud
A single device to acquire data, evaluate it and send it to the cloud – that’s now possible with B&R’s Edge Controller. The powerful industrial PC can even be used for big data analysis and machine learning, while at the same time serving as a full-fledged industrial controller.
Just The Right Dose Of Intelligence
Nothing herein shall constitute an offer to sell, or a solicitation of an offer to buy. The ACOPO Strak product is not available for sale into the United States of America until September 2018.
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Packaging, route planning and risk analysis ensure safe conditions during transportation of delicate drugs. Drugs are sensitive goods to transport, which can be subject to irreversible damage if they are stored or transported at temperatures outside the tolerated range. If the temperature falls below or rises above the specified range the quality of drugs requiring refrigeration can be seriously affected and they may cease to be effective. This article therefore describes how transport conditions during the transportation of drugs can be optimised through suitable packaging, individualised process design, the analysis and assessment of potential risks and close collaboration between the sender and the freight carrier.