Julakha Jahan Jui is a dedicated professional with a background in [Field of Study], holding a Master’s degree from [University Name]. With a strong foundation in [Specific Areas], she has gained valuable experience in [Current Position or Field]. Her research interests include [Research Areas], and she is committed to advancing knowledge in [Field or Discipline]. Currently, she serves at [Organization/Institution], where she continues to contribute to [Field or Responsibilities].
Current Position: Julakha Jahan Jui currently holds the position of [Current Position Title] at [Organization/Institution], where she is responsible for [Brief Description of Responsibilities].
Previous Roles: She has previously worked as [Previous Position Title] at [Previous Organization/Institution], contributing to [Key Responsibilities or Achievements].
Research Interest:
Julakha Jahan Jui’s research interests span [Research Areas], with a particular focus on [Specific Topics or Fields of Interest]. She has published and presented her work in [List Relevant Publications or Conferences].
Chaohe Zheng is an Assistant Professor at the School of Energy and Power Engineering, Huazhong University of Science and Technology, Wuhan, China. He earned his Ph.D. in Energy and Power Engineering from the same institution, following his Bachelor’s degree in the field. His research primarily focuses on computational dynamics, molecular dynamics, quantum dynamics, carbon capture and utilization, and chemical looping technologies.
I pursued my academic journey at Kanazawa University, achieving significant milestones in health sciences. I completed a Doctoral Level Section of Integrated Course from the Graduate School of Medical Sciences (2018-2021), following a Masterโs Level Section of Integrated Course (2016-2018). Prior to this, I laid the foundation for my career at Kitasato University School of Allied Health Sciences (1999-2003), where I began my studies in the field.
Original Papers
My research contributions are reflected in several notable publications. Among them, I authored papers such as “Functional Assessment of Lumbar Nerve Roots Using Direct Coronal Single-Shot Turbo Spin-Echo Diffusion Tensor Imaging” published in Magnetic Resonance in Medical Sciences (May 2020), and “Distortion-free diffusion tensor imaging for evaluation of lumbar nerve roots” in Magnetic Resonance Imaging (June 2018). These studies have advanced the field of medical imaging, particularly in evaluating spinal and nerve conditions.
ย Research, Innovations, and Extension Activities
My work focuses on pioneering quantitative evaluation and imaging innovations. This includes developing methods like 3D MIXTURE for assessing knee articular cartilage to prevent knee osteoarthritis, refining distortion-free diffusion tensor imaging for lumbar spinal nerve evaluation, and improving diffusion-weighted imaging SNR using SSGR techniques.
ย Awards and Recognition
I have been honored with a total of seven awards and have served as an invited speaker or resource person at 20 events. My research has made a cumulative impact, reflected in an impact factor of 15 over the last three years. Additionally, I hold editorial appointments in five journals and conferences, contributing actively to the academic community.
ย Professional Affiliations and Contributions
As a member of various professional bodies, I have organized 10 research conferences and workshops and collaborated extensively on 24 joint publications and projects. These affiliations and contributions underscore my commitment to advancing medical sciences through research and collaborative efforts.
ย Education and Research Highlights
In addition to his academic achievements, Chaohe Zheng has developed industrial-scale solutions for chemical looping combustion and waste treatment. His research innovations have significantly influenced the design and operational strategies of oxygen carriers, enhancing their performance and longevity while minimizing environmental impact.
Publications
Clinical evaluation of 3D high-resolution isotropic knee MRI using Multi-Interleaved X-prepared TSE with inTUitive RElaxometry (MIXTURE) for simultaneous morphology and T2 mapping
Authors: Sakai, T., Yoneyama, M., Zhang, S., Ochi, S., Miyati, T.
Journal: European Journal of Radiology, 2024
A novel simultaneous three-dimensional volumetric morphological imaging and T2-mapping method, multi-interleaved X-prepared turbo-spin echo with intuitive relaxometry provides more accurate quantification of cervical spinal nerves
Relationship between assistantโs lens exposure and dose information during computed tomography examinations
Authors: Ito, H., Matsubara, K., Kobayashi, I., Yanagawa, N., Ochi, S.
Journal: Journal of Radiological Protection, 2024
Correction: Evaluation of x-ray effective focal spot size dependency on x-ray exposure settings using edge response analysis
Authors: Shimakawa, Y., Nishiki, M., Yanagita, S., Ochi, S., Yanagawa, N.
Journal: Radiological Physics and Technology, 2023
Evaluation of x-ray effective focal spot size dependency on x-ray exposure settings using edge response analysis
Authors: Shimakawa, Y., Nishiki, M., Yanagita, S., Ochi, S., Yanagawa, N.
Journal: Radiological Physics and Technology, 2023
Cardiac Magnetic Resonance Imaging Is Useful for Follow-up of Extremely Rare Pediatric COVID-19 Fulminant Myocarditis
Authors: Kinoshita, M., Higashi, K., Takaoka, H., Daimon, M., Kobayashi, Y.
Journal: Circulation Journal, 2023
Usefulness of a lead-acrylic shield for reducing lens dose of assistant in x-ray CT examination
Authors: Ito, H., Matsubara, K., Kobayashi, I., Yanagawa, N., Ochi, S.
Journal: Journal of Radiological Protection, 2022
Usefulness of Simultaneous Magnetic Resonance Neurography and Apparent T2 Mapping for the Diagnosis of Cervical Radiculopathy
Authors: Enomoto, K., Eguchi, Y., Sato, T., Takahashi, K., Ohtori, S.
Journal: Asian Spine Journal, 2022
An Injectable Hyaluronic Acid Hydrogel Promotes Intervertebral Disc Repair in a Rabbit Model
Authors: Inoue, M., Isa, I.L.M., Orita, S., Pandit, A., Ohtori, S.
Journal: Spine, 2021
Clinical feasibility of single-shot fluid-attenuated inversion recovery with wide inversion recovery pulse designed to reduce cerebrospinal fluid and motion artifacts for evaluation of uncooperative patients in acute stroke protocol
Authors: Kubota, Y., Yokota, H., Sakai, T., Ohira, K., Uno, T.
Journal: Journal of Magnetic Resonance Imaging, 2021