This curriculum vitae summarizes the qualifications and experience of Ahmed Abd Elrazek Mansour Mahmoud. He has a Bachelor of Science degree in Mechanical Engineering from Helwan University. He has worked as a Packaging and Maintenance Engineer at Afia International Co. since 2012, with some prior training experiences. His technical skills include SolidWorks, AutoCAD, and machine maintenance. He also completed management and soft skills courses. He is proficient in Arabic and English.
This curriculum vitae summarizes the qualifications and experience of Ahmed Abd Elrazek Mansour Mahmoud. He has a Bachelor of Science degree in Mechanical Engineering from Helwan University. He has worked as a Packaging and Maintenance Engineer at Afia International Co. since 2012, with some prior training experiences. His technical skills include SolidWorks, AutoCAD, and machine maintenance. He also completed management and soft skills courses. He is proficient in Arabic and English.
ספר פרויקט - סימולטור לימודי דינמי להערכת זרימה בחבל הטבור באמצעות אולטרה סאו...Ofir Agranat
The document describes the development of a dynamic simulator for assessing umbilical cord blood flow using Doppler ultrasound. The simulator aims to simulate various flow conditions in the umbilical cord to help train medical residents on interpreting Doppler ultrasound examinations of the umbilical cord. It consists of a flow system using a pump to circulate fluid through a model of the umbilical cord and placenta, a computer to control the pump and analyze ultrasound data, and a model of the umbilical cord and placenta within a surrounding environment. The goal is to provide a realistic training experience for residents to practice Doppler ultrasound assessments of umbilical cord blood flow under different simulated scenarios.
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This study assessed using intravenous sodium bicarbonate to verify proper intravenous catheter placement in mechanically ventilated children. The researchers injected diluted sodium bicarbonate or saline through catheters in 18 anesthetized children and measured end-tidal carbon dioxide levels. Injecting 2.1% sodium bicarbonate significantly increased end-tidal carbon dioxide within 3 breaths, correctly identifying catheter placement. A less concentrated solution caused a smaller increase. Saline did not affect carbon dioxide levels. Blood tests found no clinically significant changes. The study suggests intravenous sodium bicarbonate injection can safely confirm pediatric intravenous catheter function by detecting increased exhaled carbon dioxide.
ספר פרויקט - סימולטור לימודי דינמי להערכת זרימה בחבל הטבור באמצעות אולטרה סאו...Ofir Agranat
The document describes the development of a dynamic simulator for assessing umbilical cord blood flow using Doppler ultrasound. The simulator aims to simulate various flow conditions in the umbilical cord to help train medical residents on interpreting Doppler ultrasound examinations of the umbilical cord. It consists of a flow system using a pump to circulate fluid through a model of the umbilical cord and placenta, a computer to control the pump and analyze ultrasound data, and a model of the umbilical cord and placenta within a surrounding environment. The goal is to provide a realistic training experience for residents to practice Doppler ultrasound assessments of umbilical cord blood flow under different simulated scenarios.
Best B.Tech College in Delhi,NCR with all colleges details including campus,facilities,course,admission,activities and placement so that Dronacharya Group provides the list of top colleges for the educations and get the success in your life so that scholars learning may help for choose the better colleges if you want more details then you can visit above link.
This study assessed using intravenous sodium bicarbonate to verify proper intravenous catheter placement in mechanically ventilated children. The researchers injected diluted sodium bicarbonate or saline through catheters in 18 anesthetized children and measured end-tidal carbon dioxide levels. Injecting 2.1% sodium bicarbonate significantly increased end-tidal carbon dioxide within 3 breaths, correctly identifying catheter placement. A less concentrated solution caused a smaller increase. Saline did not affect carbon dioxide levels. Blood tests found no clinically significant changes. The study suggests intravenous sodium bicarbonate injection can safely confirm pediatric intravenous catheter function by detecting increased exhaled carbon dioxide.