Ran Guo

Ran Guo

University of Houston

H-index: 8

North America-United States

About Ran Guo

Ran Guo, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at University of Houston, specializes in the field of electromagnetics.

His recent articles reflect a diverse array of research interests and contributions to the field:

MRI‐Induced RF Heating Considerations for Devices and Accessories that are Partially in and Partially Out of the Human Body

RF‐induced heating for active implantable medical devices in dual parallel leads configurations at 1.5 T MRI

Patient-Specific RF-induced Heating Prediction for Deep Brain Stimulator System under Parallel Transmit at 3T with Machine Learning Method

A locally modified phantom model for assessing the worst-case heating configuration of orthopedic implants under MRI

Factors Affecting the RF-Induced Heating for the Electrodes Partially Inserted Inside Human Body at 1.5 T MRI

Evaluation of MRI RF-induced for Active Implantable Medical Implants in the vicinity of other implantable devices

MRI RF-Induced Heating Prediction of Complex-Shaped Passive Implantable Medical Devices Using Mesh-Based Convolutional Neural Network

Predicting RF-Induced Heating for Deep Brain Stimulator System Using an Artificial Neural Network

Ran Guo Information

University

Position

___

Citations(all)

171

Citations(since 2020)

164

Cited By

32

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

8

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

Ran Guo Skills & Research Interests

electromagnetics

Top articles of Ran Guo

MRI‐Induced RF Heating Considerations for Devices and Accessories that are Partially in and Partially Out of the Human Body

The Application of Heat in Oncology: Principles and Practice

2023/11/21

RF‐induced heating for active implantable medical devices in dual parallel leads configurations at 1.5 T MRI

Magnetic Resonance in Medicine

2023/8

Patient-Specific RF-induced Heating Prediction for Deep Brain Stimulator System under Parallel Transmit at 3T with Machine Learning Method

2023/7/29

A locally modified phantom model for assessing the worst-case heating configuration of orthopedic implants under MRI

2023/7/24

Factors Affecting the RF-Induced Heating for the Electrodes Partially Inserted Inside Human Body at 1.5 T MRI

2023/7/23

Evaluation of MRI RF-induced for Active Implantable Medical Implants in the vicinity of other implantable devices

2023/6/11

MRI RF-Induced Heating Prediction of Complex-Shaped Passive Implantable Medical Devices Using Mesh-Based Convolutional Neural Network

IEEE Transactions on Microwave Theory and Techniques

2022/12/2

Predicting RF-Induced Heating for Deep Brain Stimulator System Using an Artificial Neural Network

2022/11/18

Evaluation of Active Implantable Medical Device RF-Induced Heating in the Vicinity of an Orthopedic Plate during MRI

2022/9/5

Parallel Transmission Effect on RF-induced Local SAR of Face Mask during 3T MRI

2022/9/1

RF-induced Heating Evaluation for Passive Device in Tissue-Reduced Virtual Family Models at 1.5 T

2022/8/1

RF-induced heating for Cardiac Rhythm Management (CRM) in patients with different postures

2022/8/1

Prediction of Radiofrequency-induced Heating of Spinal Fixation System using Mesh-based Convolutional Neural Network

2022/7/10

Lead-Specific Transfer Function Validation Strategy for MRI RF Heating Evaluation

2022/7/10

Effect of Treatment for Abandoned DBS Leads on RF-Induced Heating during 1.5 T MRI

2022/6/19

Effects of strain relief loop on MRI RF-induced heating of active implantable medical devices

2022/4/19

A technique for the reduction of RF‐induced heating of active implantable medical devices during MRI

Magnetic Resonance in Medicine

2022/1

Magnetic resonance conditionality of abandoned leads from active implantable medical devices at 1.5 T

Magnetic Resonance in Medicine

2022/1

Prediction of Active Implantable Medical Device Electromagnetic Models Using a Neural Network

2021/12/4

A Cascaded Heterogeneous Equivalent Network for Evaluating RF-Induced Hazards on Active Implantable Medical Devices

IEEE Transactions on Electromagnetic Compatibility

2021/11/3

See List of Professors in Ran Guo University(University of Houston)