Implications Of Intravascular Catheter In A Blood Vessel During Medical Treatment Using Computational Fluid Dynamics

Intravascular (IV) catheters are a frequently used medical device in intravenous treatment, which is the administration of medications or fluids into a patient's veins. It is also one of the most frequently used invasive medical procedures. IV catheters frequently cause numerous relevant compli...

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Main Author: Chong, Shin Yun
Format: Monograph
Language:English
Published: Universiti Sains Malaysia 2021
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Online Access:http://eprints.usm.my/55773/1/Implications%20Of%20Intravascular%20Catheter%20In%20A%20Blood%20Vessel%20During%20Medical%20Treatment%20Using%20Computational%20Fluid%20Dynamics.pdf
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spelling my.usm.eprints.55773 http://eprints.usm.my/55773/ Implications Of Intravascular Catheter In A Blood Vessel During Medical Treatment Using Computational Fluid Dynamics Chong, Shin Yun T Technology TJ Mechanical engineering and machinery Intravascular (IV) catheters are a frequently used medical device in intravenous treatment, which is the administration of medications or fluids into a patient's veins. It is also one of the most frequently used invasive medical procedures. IV catheters frequently cause numerous relevant complications, which often result in patient discomfort. Most of the current research is based on experiment or randomised controlled trials involving both real-life patients and medical practitioners. The purpose of this project is to investigate the impact of different diameters of intravascular catheters and saline solution input velocities on the blood vein through Computational Fluid Dynamics (CFD) in ANSYS Fluent. The simulation is also verified against experimental data. From the results, the 22G catheter has the most steady and lowest maximum pressure among the five diameters, whereas the 18G and 22G catheters have the lowest maximum velocity in general. The inlet saline velocity of 0.7 m/s have a consistent decrease in maximum velocities with time compared to other velocities, while the inlet saline velocity of 0.3 m/s has the consistent lower maximum pressures. Overall, the 22G catheter with inlet saline velocity of 0.3 m/s can be chosen to be used in intravenous therapy for patients as it has lower risks of affecting the blood vein of patients. Universiti Sains Malaysia 2021-07-01 Monograph NonPeerReviewed application/pdf en http://eprints.usm.my/55773/1/Implications%20Of%20Intravascular%20Catheter%20In%20A%20Blood%20Vessel%20During%20Medical%20Treatment%20Using%20Computational%20Fluid%20Dynamics.pdf Chong, Shin Yun (2021) Implications Of Intravascular Catheter In A Blood Vessel During Medical Treatment Using Computational Fluid Dynamics. Project Report. Universiti Sains Malaysia, Pusat Pengajian Kejuruteraan Mekanik. (Submitted)
institution Universiti Sains Malaysia
building Hamzah Sendut Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sains Malaysia
content_source USM Institutional Repository
url_provider http://eprints.usm.my/
language English
topic T Technology
TJ Mechanical engineering and machinery
spellingShingle T Technology
TJ Mechanical engineering and machinery
Chong, Shin Yun
Implications Of Intravascular Catheter In A Blood Vessel During Medical Treatment Using Computational Fluid Dynamics
description Intravascular (IV) catheters are a frequently used medical device in intravenous treatment, which is the administration of medications or fluids into a patient's veins. It is also one of the most frequently used invasive medical procedures. IV catheters frequently cause numerous relevant complications, which often result in patient discomfort. Most of the current research is based on experiment or randomised controlled trials involving both real-life patients and medical practitioners. The purpose of this project is to investigate the impact of different diameters of intravascular catheters and saline solution input velocities on the blood vein through Computational Fluid Dynamics (CFD) in ANSYS Fluent. The simulation is also verified against experimental data. From the results, the 22G catheter has the most steady and lowest maximum pressure among the five diameters, whereas the 18G and 22G catheters have the lowest maximum velocity in general. The inlet saline velocity of 0.7 m/s have a consistent decrease in maximum velocities with time compared to other velocities, while the inlet saline velocity of 0.3 m/s has the consistent lower maximum pressures. Overall, the 22G catheter with inlet saline velocity of 0.3 m/s can be chosen to be used in intravenous therapy for patients as it has lower risks of affecting the blood vein of patients.
format Monograph
author Chong, Shin Yun
author_facet Chong, Shin Yun
author_sort Chong, Shin Yun
title Implications Of Intravascular Catheter In A Blood Vessel During Medical Treatment Using Computational Fluid Dynamics
title_short Implications Of Intravascular Catheter In A Blood Vessel During Medical Treatment Using Computational Fluid Dynamics
title_full Implications Of Intravascular Catheter In A Blood Vessel During Medical Treatment Using Computational Fluid Dynamics
title_fullStr Implications Of Intravascular Catheter In A Blood Vessel During Medical Treatment Using Computational Fluid Dynamics
title_full_unstemmed Implications Of Intravascular Catheter In A Blood Vessel During Medical Treatment Using Computational Fluid Dynamics
title_sort implications of intravascular catheter in a blood vessel during medical treatment using computational fluid dynamics
publisher Universiti Sains Malaysia
publishDate 2021
url http://eprints.usm.my/55773/1/Implications%20Of%20Intravascular%20Catheter%20In%20A%20Blood%20Vessel%20During%20Medical%20Treatment%20Using%20Computational%20Fluid%20Dynamics.pdf
http://eprints.usm.my/55773/
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