100% satisfaction guarantee Immediately available after payment Both online and in PDF No strings attached 4.2 TrustPilot
logo-home
Exam (elaborations)

MR formulas Exam Questions With Correct Answers.

Rating
-
Sold
-
Pages
8
Grade
A+
Uploaded on
01-08-2024
Written in
2024/2025

MR formulas Exam Questions With Correct Answers. Calculate the scan time for a 3D gradient echo sequence with the following parameters: FOV 20cm, TR 24, TE 10, 224 x 256 matrix, 1 NEX, 3.5 mm slice thickness, 40 slices - answer3 min 35 sec 3D sequence scan time : TR x Phase Matrix x NSA/NEX x # Slices = 3D Scan Time, ÷ 1000 to convert to seconds. 24 x 224 x 1 x 40 ÷ 1000 = 215 seconds (3 min 35sec) Calculate the scan time for a spin echo sequence with the following parameters: TR 500, TE 24, 224 x 256 matrix, 3 NEX, 4 mm slice thickness. - answer5 min 36 sec TR x Phase Matrix x NSA/NEX = Scan Time in a Spin Echo sequence, Divide by 1000 to convert ms (milliseconds) into seconds. 500 x 224 x 3 ÷ 1000 = 336 seconds. Calculate the voxel volume for a fast spin echo sequence with the following parameters: FOV 20cm, TR 3000, TE 120, 224 x 256 matrix, 3 NEX, 5 mm slice thickness, 12 ETL - answerFOV ÷ phase matrix = phase dimension pixelFOV ÷ frequency matrix = frequency pixelMultiply phase pixel size x frequency pixel size = Pixel area (answer squared2)Pixel area x slice thickness = Voxel volume (answer cubic3) Convert 20cm to 200 mm before calculating. 200 ÷ 224 = 0.89mm (phase dimension) EXAM STUDY MATERIALS July 29, 2024 12:59 PM 200 ÷ 256 = 0.78mm (frequency dimension) 0.89 x 0.78 = 0.69mm2 (pixel area) 0.69 x 5mm(slice thickness) = 3.45mm3 Calculate the pixel size for a fast spin echo sequence with the following parameters: FOV 30cm, TR 600, TE 10, 320 x 320 matrix, 4 NEX, 3 mm slice thickness, 3 ETL - answer0.94 mm x 0.94 mm Convert Convert 30cm to 300 mm before calculating. 300 ÷ 320 = 0.94mm (phase dimension) 300 ÷ 320 = 0.94mm (frequency dimension) Calculate the pixel size for a fast spin echo sequence with the following parameters: FOV 28cm, TR 2000, TE 30, 256 x 320 matrix, 2 NEX, 4 mm slice thickness, 8 ETL - answer1.09 mm x 0.88 mm Convert 28cm to 280 mm before calculating. 280 ÷ 256 = 1.09mm (phase dimension) 280 ÷ 320 = 0.88mm (frequency dimension) Calculate the scan time for a spin echo sequence with the following parameters: TR 350, TE 10, 256 x 256 matrix, 2 NEX, 5 mm slice thickness - answer2 min 59 sec TR x Phase Matrix x NSA/NEX = Scan Time in a Spin Echo sequence, Divide by 1000 to convert ms (milliseconds) into seconds. 350 x 256 x 2 ÷ 1000 = 179 second

Show more Read less
Institution
MRI
Course
MRI









Whoops! We can’t load your doc right now. Try again or contact support.

Written for

Institution
MRI
Course
MRI

Document information

Uploaded on
August 1, 2024
Number of pages
8
Written in
2024/2025
Type
Exam (elaborations)
Contains
Questions & answers

Subjects

Get to know the seller

Seller avatar
Reputation scores are based on the amount of documents a seller has sold for a fee and the reviews they have received for those documents. There are three levels: Bronze, Silver and Gold. The better the reputation, the more your can rely on the quality of the sellers work.
Thebright Florida State University
View profile
Follow You need to be logged in order to follow users or courses
Sold
176
Member since
1 year
Number of followers
6
Documents
12345
Last sold
3 days ago
Topscore Emporium.

On this page, you find verified, updated and accurate documents and package deals.

3.8

35 reviews

5
13
4
10
3
7
2
1
1
4

Recently viewed by you

Why students choose Stuvia

Created by fellow students, verified by reviews

Quality you can trust: written by students who passed their tests and reviewed by others who've used these notes.

Didn't get what you expected? Choose another document

No worries! You can instantly pick a different document that better fits what you're looking for.

Pay as you like, start learning right away

No subscription, no commitments. Pay the way you're used to via credit card and download your PDF document instantly.

Student with book image

“Bought, downloaded, and aced it. It really can be that simple.”

Alisha Student

Frequently asked questions