اﻟ ﺪ ﻛ ﺘ ﻮ ر ﻣ ﺮ اد ﺑ ﻦ ﻣ ﺤ ﺴ ﻦ ا ﻟﺜ ﺒﯿ ﺘ ﻲ
أ ﺳ ﺘﺎ ذ ﻣ ﺴ ﺎ ﻋ ﺪ و ﻋ ﻤ ﯿ ﺪ ﻛ ﻠﯿ ﺔ ا ﻟ ﮭ ﻨ ﺪ ﺳ ﺔ ا ﻟ ﻤ ﻜ ﻠ ﻒ ) ﺟ ﺎ ﻣ ﻌ ﺔ ا ﻹ ﻣ ﺎ م ﻋ ﺒ ﺪا ﻟ ﺮ ﺣ ﻤ ﻦ ﺑ ﻦ ﻓ ﯿ ﺼ ﻞ (
ﻣ ﮭ ﻨ ﺪ س ﻣ ﺤ ﺘ ﺮ ف ﺑ ﺎﻟ ﮭ ﯿﺌ ﺔ ا ﻟ ﺴ ﻌ ﻮ د ﯾ ﺔ ﻟ ﻠ ﻤ ﮭ ﻨ ﺪ ﺳ ﯿ ﻦ
اﻟ ﻤ ﻌ ﻠ ﻮ ﻣ ﺎ ت ا ﻟ ﺸ ﺨ ﺼ ﯿ ﺔ
اﻟ ﺠ ﻨ ﺴ ﯿ ﺔ | ﺳ ﻌ ﻮ د ي
اﻟ ﻘ ﺴ ﻢ | ا ﻟ ﮭ ﻨ ﺪ ﺳ ﺔ ا ﻟ ﻄ ﺒﯿ ﺔ ا ﻟ ﺤ ﯿ ﻮ ﯾ ﺔ
اﻟ ﺒ ﺮ ﯾ ﺪ ا ﻟ ﺠ ﺎ ﻣ ﻌ ﻲ ا ﻟ ﺮ ﺳ ﻤ ﻲ |
[email protected]اﻟ ﻤ ﮭ ﺎ ر ا ت ا ﻟﻠ ﻐ ﻮ ﯾ ﺔ ﺗ
ﺤ ﺪ
ث ﺔ ﺑ ﺘﺎ ﻛ ة ء ا ﺮ ﻗ ﺔ ﻐ ﻠ اﻟ
اﻟ ﻠ ﻐ ﺔ ا ﻷ
م م ﻷ ا ﺔ ﻐ ﻠ اﻟ م ﻷ ا ﺔ ﻐ ﻠ اﻟ ﺔ ﺑﯿ ﺮ ﻌ اﻟ
إ ﺟ ﺎ د
ة ة د ﺎ ﺟ إ ة د ﺎ ﺟ إ ﺔ ﯾ ﺰ ﻠﯿ ﺠ ﻧ ﻻ ا
اﻟ ﻤ ﺆ ھ ﻼ ت ا ﻟ ﻌ ﻠ ﻤ ﯿ ﺔ و اﻟ ﺸ ﮭ ﺎ د ا ت ) ﺑ ﺪ ء ا ﻣ ﻦ ا ﻷ ﺣ ﺪ ث ( اﻟ
ﻌ ﻨ ﻮ ا
ن ر و ﺪ ﺼ ﻟ ا ن ﺎ ﻜ ﻣ ﺔ ﯿ ﻤ ﯾ د ﺎ ﻛ ﻷ ا ة د ﺎ ﮭ ﺸ اﻟ ﺦ ﯾ ر ﺘﺎ اﻟ ﺳ
ﺘ ﻮ ر ز - أ ﻣ ﺮ ﯾ ﻜ
ﺎ ﺖ ﻜ ﺘﯿ ﻧﯿ ﻮ ﻛ ﺔ ﻌ ﻣ ﺎ ﺟ ﺔ ﯾ ﻮ ﯿ ﺤ ﻟ ا ﺔ ﺒﯿ ﻄ ﻟ ا ﺔ ﺳ ﺪ ﻨ ﮭ ﻟ ا ﻲ ﻓ اه ر ﻮ ﺘ ﻛ ﺪ اﻟ ٢٠١٧ دا
ﯾﺘ ﻮ ن - أ ﻣ ﺮ ﯾ ﻜ
ﺎ ﺔ ﯿ ﻣ ﻮ ﻜ ﺤ ﻟ ا ﺖ ﺘﯿ ﺳ ﺖ اﯾ ر ﺔ ﻌ ﻣ ﺎ ﺟ ﺔ ﯾ ﻮ ﯿ ﺤ ﻟ ا ﺔ ﺒﯿ ﻄ ﻟ ا ﺔ ﺳ ﺪ ﻨ ﮭ ﻟ ا ﻲ ﻓ ﺮ ﺘﯿ ﺴ ﺟ ﺎ ﻤ اﻟ ٢٠١٣ دا
ﯾﺘ ﻮ ن - أ ﻣ ﺮ ﯾ ﻜ
ﺎ ﺔ ﯿ ﻣ ﻮ ﻜ ﺤ ﻟ ا ﺖ ﺘﯿ ﺳ ﺖ اﯾ ر ﺔ ﻌ ﻣ ﺎ ﺟ ﺔ ﯾ ﻮ ﯿ ﺤ ﻟ ا ﺔ ﺒﯿ ﻄ ﻟ ا ﺔ ﺳ ﺪ ﻨ ﮭ ﻟ ا ﻲ ﻓ س ﻮ ﯾ ر ﻮ ﻠ ﻛ ﺒﺎ اﻟ ٢٠١١ ﻋ ﻨ ﻮ ا ن ﺑ ﺤ ﺚ ﻛ ﻞ ﻣ ﻦ ا ﻟ ﺪ ﻛ ﺘ ﻮ ر اة و اﻟ ﻤ ﺎ ﺟ ﺴ ﺘﯿ ﺮ و اﻟ ﺰ ﻣ ﺎﻟ ﺔ
Methods for Improving the Reconstruction of Diffuse Optical Tomography for Breast Cancer
Detection
اة ر ﻮ ﺘ ﻛ ﺪ اﻟ اﻟ ﺴ ﺠ ﻞ ا ﻟ ﻤ ﮭ ﻨ ﻲ ) ﺑ ﺪ ء ا ﻣ ﻦ ا ﻷ ﺣ ﺪ ث ( اﻟ
ﺘﺎ ر ﯾ
ﺦ ﻞ ﻤ ﻌ ﻟ ا ﺔ ﮭ ﺟ ن ا ﻮ ﻨ ﻋ و ن ﺎ ﻜ ﻣ ﺔ ﻔ ﯿ ظ ﻮ ﻟ ا ﺔ ﺗﺒ ر
٢٠٢١ - ا ﻵ
ن ﻞ ﺼ ﯿ ﻓ ﻦ ﺑ ﻦ ﻤ ﺣ ﺮ ﻟ ﺪا ﺒ ﻋ م ﺎ ﻣ ﻹ ا ﺔ ﻌ ﻣ ﺎ ﺟ ﺔ ﺳ ﺪ ﻨ ﮭ ﻟ ا ﺔ ﻠﯿ ﻛ ﺪ ﯿ ﻤ ﻋ ٢٠١٩
- ا ﻵ
ن ﻞ ﺼ ﯿ ﻓ ﻦ ﺑ ﻦ ﻤ ﺣ ﺮ ﻟ ﺪا ﺒ ﻋ م ﺎ ﻣ ﻹ ا ﺔ ﻌ ﻣ ﺎ ﺟ ﺔ ﯿ ﻤ ﯾ د ﺎ ﻛ ﻷ ا ن و ﺆ ﺸ ﻠ ﻟ ﺔ ﺳ ﺪ ﻨ ﮭ ﻟ ا ﺔ ﻠﯿ ﻛ ﻞ ﯿ ﻛ و ٢٠١٧
-ا ﻵ
ن ﻞ ﺼ ﯿ ﻓ ﻦ ﺑ ﻦ ﻤ ﺣ ﺮ ﻟ ﺪا ﺒ ﻋ م ﺎ ﻣ ﻹ ا ﺔ ﻌ ﻣ ﺎ ﺟ ﺪ ﻋ ﺎ ﺴ ﻣ ذ ﺘﺎ ﺳ أ ٢٠١٣
-
٢٠١٧ ﻞ ﺼ ﯿ ﻓ ﻦ ﺑ ﻦ ﻤ ﺣ ﺮ ﻟ ﺪا ﺒ ﻋ م ﺎ ﻣ ﻹ ا ﺔ ﻌ ﻣ ﺎ ﺟ ﺮ ﺿ ﺎ ﺤ ﻣ
٢٠١٤ -
٢٠١٧ ﺖ ﻜ ﺘﯿ ﻧﯿ ﻮ ﻛ ﺔ ﻌ ﻣ ﺎ ﺟ ﺚ ﺣ ﺎ ﺑ ﺪ ﻋ ﺎ ﺴ ﻣ
٢٠١٢ -
٢٠١٣ ﺔ ﯿ ﻣ ﻮ ﻜ ﺤ ﻟ ا ﺖ ﺘﯿ ﺳ ﺖ اﯾ ر ﺔ ﻌ ﻣ ﺎ ﺟ ﺚ ﺣ ﺎ ﺑ ﺪ ﻋ ﺎ ﺴ ﻣ
ﺻ ﯿ ﻒ
٢٠١١ ﺔ ﺒﯿ ﻄ ﻟ ا ﺔ ﺳ ﺪ ﻨ ﮭ ﻟ ا ﻢ ﺴ ﻗ - ة ﺪ ﺠ ﺑ ﻲ ﺼ ﺼ ﺨ ﻟﺘ ا ﻞ ﺼ ﯿ ﻓ ﻚ ﻠ ﻤ ﻟ ا ﻰ ﻔ ﺸ ﺘ ﺴ ﻣ ب ر ﺪ ﺘ ﻣ
ا ﻹ ﻧ ﺠ ﺎ ز ا ت ا ﻟ ﻌ ﻠ ﻤ ﯿ ﺔ
ا ﻷ ﺑ ﺤ ﺎ ث ا ﻟ ﻌ ﻠ ﻤ ﯿ ﺔ ا ﻟ ﻤ ﻨ ﺸ ﻮ ر ة
# Name of Investigator(s)
Research Title Journal Acceptance
Date 1 Althobaiti M, Al-
Naib I
Recent Developments in
Instrumentation of Functional Near- Infrared Spectroscopy Systems
Applied Sciences 2020
2 Almulla A, Al-Naib I,
Althobaiti M Hemodynamic responses during standing and sitting activities: a study toward fNIRS-BCI
Biomed. Phys.
Eng. Express 2020 3 Vavadi H, Mostafa A,
Zhou F, Uddin K, Althobaiti M, Xu C, Zhu Q
Compact ultrasound-guided diffuse optical tomography system for breast cancer imaging
Journal of Biomedical Optics
2018
4 Althobaiti M, Vavadi H, Zhu Q
An automated preprocessing method for Diffuse Optical Tomography to improve breast cancer diagnosis
Technology in Cancer Research
& Treatment
2018
5 Althobaiti M, Vavadi H, Zhu Q
Diffuse optical tomography reconstruction method using ultrasound images as prior for regularization matrix
Journal of Biomedical Optics
2017
Scientific Research Papers Presented to Refereed Specialized Scientific Conferences
# Name of Investigator(s) Research Title Conference and Publication Date 1 Vavadi H, Althobaiti M,
Mostafa A, Uddin, F. Zhou, C. Xu, R. Bansal, and Q.
Zhu,
A calibration method for diffuse optical tomography based on extracted target depth and size from Ultrasound images
Biophotonics Congress: Biomedical Optics Congress (April, 2018)
2 Althobaiti M, and Zhu Q An automated preprocessing method based on multiple wavelength measurements for image reconstruction of ultrasound-guided DOT
Proc. SPIE 10685, Biophotonics:
Photonic Solutions for Better Health Care VI (May, 2018)
3 Althobaiti M, Vavadi H, Zhu Q
Assessment of using
ultrasound images as prior for diffuse optical tomography regularization matrix
Proc. SPIE 10059, Optical Tomography and Spectroscopy of Tissue XII, 1005921 (February, 2017) 4 Althobaiti M, Zhu Q Evaluation of a Dual-Mesh
for Reconstruction of Diffuse Optical Tomography using NIRFAST
Proc. OSA BIOMEDICAL OPTICS, Cancer Imaging and Therapy (April, 2016)
5 Althobaiti M, Salehi H, Zhu Q
Assessment of Diffuse Optical Tomography Image
Reconstruction Methods Using Photon Transport Model
Proc. of the 2015 COMSOL Conference in Boston (October 2015)
Boston, USA
ا ﻷ ﺑ ﺤ ﺎ ث ا ﻟ ﻤ ﺪ ﻋ ﻮ ﻣ ﺔ ا ﻟ ﺤ ﺎﻟ ﯿ ﺔ
# Research Title Name of Investigator(s)
1 Near infrared imaging for non-invasive detection and assessment of brain functional activities
( 2019-013-Eng)
Althobaiti M (PI)
2 Smart Prosthetic Knees Controlled by Motor Imagery via fNIRS Measurements
( 2019-391-Eng)
Al-Naib I (PI)
Althobaiti M (Co-Investigator) 3 Development of Novel Non- invasive Systems for the
Characterization of the Blood Glucose Levels (IF-2020-Eng-13)
Al-Naib I (PI)
Althobaiti M (Co-Investigator)
اﻟ ﻤ ﺴ ﺎ ھ ﻤ ﺎ ت ﻓ ﻲ ا ﻟ ﻤ ﺆ ﺗ ﻤ ﺮ ا ت و اﻟ ﻨ ﺪ و ا ت ا ﻟ ﻌ ﻠ ﻤ ﯿ ﺔ ﻣ
ﺠ ﺎ ل ا ﻟ ﻤ ﺴ ﺎ ھ ﻤ
ﺔ ﺦ ﯾ ر ﺘﺎ اﻟ و ن ﺎ ﻜ ﻤ اﻟ ﺮ ﻤ ﺗ ﺆ ﻤ ﻟ ا ن ا ﻮ ﻨ ﻋ #
Talk title: Seeing through light: a new way to image the brain:
“fNIRS technology”
ﻋ ﺒ ﺮ ا ﻹ ﺗ ﺼ ﺎ ل ا ﻟ ﻤ ﺮ ﺋ ﻲ
16/6/2020
NeuroArab2020 conference
Lecture title: Image Quality in Medical Imaging
ﻣ ﺴ ﺘ ﺸ ﻔ ﻰ ا ﻟ ﻤ ﻠ ﻚ ﻓ ﯿ ﺼ ﻞ ا ﻟﺘ ﺨ ﺼ ﺼ ﻲ
ﻟ ﻸ ﺑ ﺤ ﺎ ث ﺑ ﺎﻟ ﺮ ﯾﺎ ض
11/2/2019
2019 Radiation in Medicine
ﻋ ﻨ ﻮ ا ن ا ﻟ ﻤ ﺤ ﺎ ﺿ ﺮ ة :
ﺑ ﺮ ا ﻣ ﺞ ا ﻟ ﮭ ﻨ ﺪ ﺳ ﺔ ا ﻟ ﻄ ﺒﯿ ﺔ ا ﻟ ﺤ ﯿ ﻮ ﯾ ﺔ -
د ر ا ﺳ ﺔ ﻣ ﻘ ﺎ ر ﻧ ﺔ -
ﺟ ﺎ ﻣ ﻌ ﺔ ا ﻹ ﻣ ﺎ م ﻋ ﺒ ﺪا ﻟ ﺮ ﺣ ﻤ ﻦ ﺑ ﻦ
ﻓﯿ ﺼ ﻞ - ﻛ ﻠﯿ ﺔ ا ﻟ ﮭ ﻨ ﺪ ﺳ ﺔ ا ﻟﺪ ﻣ ﺎ م
15 5
/
2018/
اﻟ ﮭ ﯿﺌ ﺔ ا ﻟ ﺴ ﻌ ﻮ د ﯾ ﺔ ﻟ ﻠ ﻤ ﮭ ﻨ ﺪ ﺳ ﯿ ﻦ : ﺷ ﻌ ﺒ ﺔ ا ﻟ ﮭ ﻨ ﺪ ﺳ ﺔ ا ﻟ ﻄ ﺒﯿ ﺔ
اﻟ ﺤ ﯿ ﻮ ﯾ ﺔ
اﻟ ﻤ ﻠﺘ ﻘ ﻰ ا ﻟﺜ ﺎﻟ ﺚ ﻟ ﻠ ﮭ ﻨ ﺪ ﺳ ﺔ ا ﻟ ﻄ ﺒﯿ ﺔ ا ﻟ ﺤ ﯿ ﻮ ﯾ ﺔ
اﻟ ﻌ ﻀ ﻮ ﯾﺎ ت و اﻟ ﻠ ﺠ ﺎ ن ا ﻟ ﻤ ﺸ ﺎ ر ك ﻓ ﯿ ﮭ ﺎ
ﻋ
•ﻀ ﻮ ﯾ ﺔ ا ﻟ ﮭ ﯿﺌ ﺔ ا ﻟ ﺴ ﻌ ﻮ د ﯾ ﺔ ﻟ ﻠ ﻤ ﮭ ﻨ ﺪ ﺳ ﯿ ﻦ
أﻧ ﺸ ﻄ ﺔ ا ﻟﺘ ﺪ ر ﯾ ﺲ
اﻟ ﺠ ﺎ ﻣ ﻌ ﯿ ﺔ# Course/Rotation Title No./Code Extent of Contribution
(no. of lectures/Tutorials. Or labs, Clinics)
Biomedical Optics BIOEN504 Lectures/Lab
Ultrasound BIOEN583 Lectures/Lab
Medical Imaging Systems BIOEN553 Lectures/Lab Senior Design Project BIOEN
531
Supervisorا ﻹ ﺷ ﺮ ا ف ﻋ ﻠ ﻰ ا ﻷ ﺑ ﺤ ﺎ ث
# Degree Type Title Institution Date
1 Undergraduate Development of microcontroller prosthetic knee for transfemoral amputees
IAU, KSA 2018/2019 2 Undergraduate Insulin infusion pump with Ketoacidosis
detection
IAU, KSA 2019/2020
اﻟ ﻤ ﮭ ﻤ ﺎ ت ا ﻹ د ا ر ﯾ ﺔ و اﻟ ﻠ ﺠ ﻨﺎ ت و ﺧ ﺪ ﻣ ﺔ ا ﻟ ﻤ ﺠ ﺘ ﻤ ﻊ ) ﺑ ﺪ ا ء ا ﻣ ﻦ ا ﻷ ﺣ ﺪ ث (
ﻋ ﻀ ﻮ ﯾ ﺔ ا ﻟﻠ ﺠ ﺎ ن اﻟ
ﺠ ﮭ
ﺔ ﺐ ﺼ ﻨ ﻤ اﻟ ﻰ إﻟ ﻦ ﻣ #
اﻟ ﮭ ﯿﺌ ﺔ ا ﻟ ﺴ ﻌ ﻮ د ﯾ ﺔ ﻟ ﻠ ﻐ ﺬ ا ء و اﻟ ﺪ و ا
ء ﻲ ﻓ ﺔ ﺋﯿ ﺑﺎ ﺮ ﮭ ﻜ ﻟ ا ة ﺰ ﮭ ﺟ ﻷ ا ت ﺎ ﻔ ﺻ ا ﻮ ﻣ ﺔ ﻨ ﺠ ﻟ ﻮ ﻀ ﻋ اﻟ ﺘ ﻄ ﺒﯿ ﻘ ﺎ ت ا ﻟ ﻄ ﺒﯿ ﺔ
ا ﻵ
ن ٢٠١٩ / ٤ ١
ﺟ ﺎ ﻣ ﻌ ﺔ ا ﻹ ﻣ ﺎ م ﻋ ﺒ ﺪ اﻟ ﺮ ﺣ ﻤ ﻦ ﺑ ﻦ ﻓ ﯿ ﺼ
ﻞ ﺔ ﻨ ﺴ ﻟ ا - ﻲ ﺳ ﺪ ﻨ ﮭ ﻟ ا ر ﺎ ﺴ ﻤ ﻟ ا ﺮ ﯾ ﻮ ﻄ ﺗ ﺔ ﻨ ﺠ ﻟ ﻮ ﻀ ﻋ اﻟ ﺘ ﺤ ﻀ ﯿ ﺮ ﯾ
ﺔ ن ﻵ ا ٢٠١٩ / ٣ ٢
ﺟ ﺎ ﻣ ﻌ ﺔ ا ﻹ ﻣ ﺎ م ﻋ ﺒ ﺪ اﻟ ﺮ ﺣ ﻤ ﻦ ﺑ ﻦ ﻓ ﯿ ﺼ
ﻞ ﺔ ﯾ ر ا د ﻹ ا و ﺔ ﺜﯿ ﺤ ﺒ اﻟ و ﺔ ﯿ ﻤ ﯾ د ﺎ ﻛ ﻷ ا ن ﺎ ﺠ ﻟﻠ ا ﻦ ﻣ د ﺪ ﻋ ﻓ ﻲ ﻛ ﻠﯿ ﺔ ا ﻟ ﮭ ﻨ ﺪ ﺳ ﺔ – ﺟ ﺎ ﻣ ﻌ ﺔ ا ﻹ ﻣ ﺎ م ﻋ ﺒ ﺪ اﻟ ﺮ ﺣ ﻤ ﻦ ﺑ ﻦ
ﻓ ﯿ ﺼ ﻞ
ا ﻵ
ن ٢٠١٧ / ٨
اﻟ ﻤ ﺸ ﺎ ر ﻛ ﺎ ت ا ﻟ ﻤ ﺠ ﺘ ﻤ ﻌ ﯿ ﺔ و
ﻗ ﺖ ﻛ ﺎ ﻣ ﻞ - و ﻗ ﺖ ﺟ ﺰ ﺋ
ﻲ ﺔ ﮭ ﺠ اﻟ ﻰ إﻟ ﻦ ﻣ #
ﻣ ﺪ ر ب ﻟ ﻤ ﺴ ﺎ ر
"
ﻣ ﺒﺎ د ئ ا ﻟﺘ ﺼ ﻤ ﯿ ﻢ ا ﻟ ﮭ ﻨ ﺪ ﺳ ﻲ
"
ﺧ ﻼ ل ﻓ ﺘ ﺮ ة ا ﻟ ﺼ ﯿ ﻒ
ﻣ ﺆ ﺳ ﺴ ﺔ ا ﻟ ﻤ ﻠ ﻚ ﻋ ﺒ ﺪ اﻟ ﻌ ﺰ ﯾ ﺰ و ر ﺟ ﺎﻟ ﮫ
ﻟﻠ ﻤ ﻮ ھ ﺒ ﺔ و ا ﻹ ﺑ ﺪ ا ع ) ﻣ ﻮ ھ ﺒ ﺔ (
٨ /
٢٠١٩ ٢٠١٩ / ٦ ١
ﻣ ﺪ ر ب ﻟ ﻤ ﺴ ﺎ ر
"
ﻣ ﺒﺎ د ئ ا ﻟﺘ ﺼ ﻤ ﯿ ﻢ ا ﻟ ﮭ ﻨ ﺪ ﺳ ﻲ
"
ﺧ ﻼ ل ﻓ ﺘ ﺮ ة ا ﻟ ﺼ ﯿ
ﻒ ﮫ ﺎﻟ ﺟ ر و ﺰ ﯾ ﺰ ﻌ اﻟ ﺪ ﺒ ﻋ ﻚ ﻠ ﻤ ﻟ ا ﺔ ﺴ ﺳ ﺆ ﻣ ﻟﻠ ﻤ ﻮ ھ ﺒ ﺔ و ا ﻹ ﺑ ﺪ ا ع ) ﻣ ﻮ ھ ﺒ ﺔ
( ٢٠٢٠ / ٨ ٢٠٢٠ / ٦ ٢
اﻟ ﻜ ﻔ ﺎ ء ا ت و اﻟ ﻤ ﮭ ﺎ ر ا ت ا ﻟ ﺸ ﺨ ﺼ ﯿ ﺔ ) اﻟ ﺤ ﺎ ﺳ ﺐ , ﺗ ﻘ ﻨﯿ ﺔ ا ﻟ ﻤ ﻌ ﻠ ﻮ ﻣ ﺎ ت , ا ﻟﺘ ﻘ ﻨﯿ ﺔ . . ا ﻟ ﺦ (
1 Programing Languages: MATLAB, C, C++
2 Software: COMSOL, LabVIEW, NIRFAST, Monte Carlo Simulation
3 Technical Skills: Image reconstruction, Image processing, DSP, Ultrasound beamforming.