Superficial temporal artery waveform

Journeying into the 21st century, aircrafts are no longer limited by the physical factors of the aircraft to achieve high speeds but by the biological constraints of the pilot. Pilot’s face the challenge of Gravity induced Loss of Consciousness (G-LOC) which could sometime prove fatal. This proje...

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Main Author: Ng, Gerald ZhengHan.
Other Authors: Yeo Joon Hock
Format: Final Year Project
Language:English
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/10356/54030
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-540302019-12-10T13:36:36Z Superficial temporal artery waveform Ng, Gerald ZhengHan. Yeo Joon Hock School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering::Assistive technology DRNTU::Engineering::Bioengineering Journeying into the 21st century, aircrafts are no longer limited by the physical factors of the aircraft to achieve high speeds but by the biological constraints of the pilot. Pilot’s face the challenge of Gravity induced Loss of Consciousness (G-LOC) which could sometime prove fatal. This project is a study focusing on improving the design of the prototype head attachment which can monitor the blood pressure within the Superficial Temporal Artery. It is hypothesized that the general blood pressure in the STA can reflect the amount of blood flowing into the head. Using this relationship the author attempts to fashion the headgear to measure the estimated blood flow to the head to help test subjects avoid the otherwise painful procedure of penetrating the internal carotid artery to measure the blood flow to the brain, which can also help anticipate when the pilot will go into G-LOC. The project was successful in fabricating a headgear which can accurately detect the pulse of the blood flowing through the STA. Results were thus drawn to test the workability of the design under vibrations and with the muscle movements a pilot would employ when conducting the Anti-G Straining Manoeuvre. The results obtained suggest a relationship between the blood supply to the brain and the blood pressure flowing through the STA. However, more tests and equipments are required to be conducted to draw a more concrete link. Bachelor of Engineering (Mechanical Engineering) 2013-06-11T08:55:13Z 2013-06-11T08:55:13Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/54030 en Nanyang Technological University 62 p. application/msword
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic DRNTU::Engineering::Mechanical engineering::Assistive technology
DRNTU::Engineering::Bioengineering
spellingShingle DRNTU::Engineering::Mechanical engineering::Assistive technology
DRNTU::Engineering::Bioengineering
Ng, Gerald ZhengHan.
Superficial temporal artery waveform
description Journeying into the 21st century, aircrafts are no longer limited by the physical factors of the aircraft to achieve high speeds but by the biological constraints of the pilot. Pilot’s face the challenge of Gravity induced Loss of Consciousness (G-LOC) which could sometime prove fatal. This project is a study focusing on improving the design of the prototype head attachment which can monitor the blood pressure within the Superficial Temporal Artery. It is hypothesized that the general blood pressure in the STA can reflect the amount of blood flowing into the head. Using this relationship the author attempts to fashion the headgear to measure the estimated blood flow to the head to help test subjects avoid the otherwise painful procedure of penetrating the internal carotid artery to measure the blood flow to the brain, which can also help anticipate when the pilot will go into G-LOC. The project was successful in fabricating a headgear which can accurately detect the pulse of the blood flowing through the STA. Results were thus drawn to test the workability of the design under vibrations and with the muscle movements a pilot would employ when conducting the Anti-G Straining Manoeuvre. The results obtained suggest a relationship between the blood supply to the brain and the blood pressure flowing through the STA. However, more tests and equipments are required to be conducted to draw a more concrete link.
author2 Yeo Joon Hock
author_facet Yeo Joon Hock
Ng, Gerald ZhengHan.
format Final Year Project
author Ng, Gerald ZhengHan.
author_sort Ng, Gerald ZhengHan.
title Superficial temporal artery waveform
title_short Superficial temporal artery waveform
title_full Superficial temporal artery waveform
title_fullStr Superficial temporal artery waveform
title_full_unstemmed Superficial temporal artery waveform
title_sort superficial temporal artery waveform
publishDate 2013
url http://hdl.handle.net/10356/54030
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