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Initial Study On The Implementation Of Reflection Method In Ultrasonic Tomography

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Matlamat utama projek ini adalah untuk mereka bentuk suatu sistem pengimbas ultrasonik dengan menggunakan kaedah pantulan yang dijana dan diterima oleh alatan ultrasonik yang lazim digunakan di dalam bidang perubatan. Disebabkan oleh kos yang tinggi dan konfigurasi yang rumit bagi sesetengah alat-alat perubatan yang berjenama seperti Philips dan Brauns, sistem pengimbas ultrasonik yang direkabentuk dalam projek ini adalah berhasrat untuk mengurangkan kos dan juga memudahkan konfigurasi. Pada asasnya, sistem pengimbas ultrasonik terdiri daripada dua bahagian; pemancar dan penerima. Dalam projek ini, satu mikropengawal pengimbas ultrasonik perubatan yang telah dipilih. Isyarat pantulan yang dikesan penerima pengimbas ultrasonik perubatan diperhatikan dengan menggunakan osiloskop digital. Sistem pengimbas yang direka kemudian diuji dengan mengimbas sebuah betik. Kata kunci: Tomography ultrasonik; pantulan; gambaran perubatan; pengimbas ultrasonik; pendekatan secara eksperimen The main purpose of this project is to design an ultrasonic scanner system which implements the reflection method through a medical ultrasound probe. Due to the high–cost and complex configuration of some of the well–known names in medical devices; such as Philips, and Brauns, the ultrasonic scanner system in this project is aimed to be cost effective and simple. Basically, the ultrasonic scanner system consists of two parts; the transmitter and the receiver. In this project, a PIC microcontroller was used in the transmitter circuit in order to produce a 2 MHz signal to excite the 2.25 MHz ultrasonic transmitter that exists in the medical ultrasound probe that had been selected, whereas the output or the reflected signal was obtain by tapping at the receiver of the medical ultrasound probe and was observed by using a digital oscilloscope. The ultrasonic scanner system was later tested by scanning a papaya. This project was verified by obtaining the reflected signals that resulted from the papaya scanning tests. Key words: Ultrasonic tomography; reflective; medical imaging; ultrasound probe; experimental approach
Title: Initial Study On The Implementation Of Reflection Method In Ultrasonic Tomography
Description:
Matlamat utama projek ini adalah untuk mereka bentuk suatu sistem pengimbas ultrasonik dengan menggunakan kaedah pantulan yang dijana dan diterima oleh alatan ultrasonik yang lazim digunakan di dalam bidang perubatan.
Disebabkan oleh kos yang tinggi dan konfigurasi yang rumit bagi sesetengah alat-alat perubatan yang berjenama seperti Philips dan Brauns, sistem pengimbas ultrasonik yang direkabentuk dalam projek ini adalah berhasrat untuk mengurangkan kos dan juga memudahkan konfigurasi.
Pada asasnya, sistem pengimbas ultrasonik terdiri daripada dua bahagian; pemancar dan penerima.
Dalam projek ini, satu mikropengawal pengimbas ultrasonik perubatan yang telah dipilih.
Isyarat pantulan yang dikesan penerima pengimbas ultrasonik perubatan diperhatikan dengan menggunakan osiloskop digital.
Sistem pengimbas yang direka kemudian diuji dengan mengimbas sebuah betik.
Kata kunci: Tomography ultrasonik; pantulan; gambaran perubatan; pengimbas ultrasonik; pendekatan secara eksperimen The main purpose of this project is to design an ultrasonic scanner system which implements the reflection method through a medical ultrasound probe.
Due to the high–cost and complex configuration of some of the well–known names in medical devices; such as Philips, and Brauns, the ultrasonic scanner system in this project is aimed to be cost effective and simple.
Basically, the ultrasonic scanner system consists of two parts; the transmitter and the receiver.
In this project, a PIC microcontroller was used in the transmitter circuit in order to produce a 2 MHz signal to excite the 2.
25 MHz ultrasonic transmitter that exists in the medical ultrasound probe that had been selected, whereas the output or the reflected signal was obtain by tapping at the receiver of the medical ultrasound probe and was observed by using a digital oscilloscope.
The ultrasonic scanner system was later tested by scanning a papaya.
This project was verified by obtaining the reflected signals that resulted from the papaya scanning tests.
Key words: Ultrasonic tomography; reflective; medical imaging; ultrasound probe; experimental approach.

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