№ files_lp_4_process_3_111253
File format: docx
Character count: 19003
File size: 7608 KB
Year:
2024
Region / City:
Shimla
Topic:
Diabetic Peripheral Neuropathy, Shear Wave Elastography
Document Type:
Research Study
Institution:
Indira Gandhi Medical College, Shimla
Author:
Not mentioned
Target Audience:
Healthcare professionals, researchers
Period of Validity:
January 2024 - May 2025
Approval Date:
Not specified
Date of Changes:
Not specified
Keywords:
Diabetic Peripheral Neuropathy, Shear Wave Elastography, Nerve Conduction Studies, Ultrasonography, Tibial Nerve
Context:
This research paper evaluates the effectiveness of Shear Wave Elastography (SWE) in diagnosing Diabetic Peripheral Neuropathy (DPN), comparing it with traditional methods like Nerve Conduction Studies (NCS) and ultrasonography.
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The product description is provided for reference. Actual content and formatting may differ slightly.
Year:
2023
Region / city:
Wuhan, China
Topic:
Medical Imaging, Artificial Intelligence, Gastrointestinal Stromal Tumors
Document Type:
Research Article
Organization / Institution:
Renmin Hospital of Wuhan University
Authors:
Chenxia Zhang, Wei Tan, Xun Li, Xiao Tao, Bing Xiao, Wei Zhou, Honggang Yu
Target Audience:
Medical professionals, researchers in gastroenterology and artificial intelligence
Period of Application:
Not specified
Date of Approval:
Not specified
Date of Changes:
Not specified
Keywords:
Gastrointestinal Stromal Tumors, Endoscopic Ultrasound, Artificial Intelligence, Risk Stratification, Deep Learning
Methodology:
Image Classification, Image Segmentation, Deep Convolutional Neural Network (DCNN), ResNet, Unet++
Evaluation Metrics:
Accuracy, Intersection over Union (IoU), Precision, Recall, F1 score
Conclusion:
The use of AI-based risk stratification and image analysis improves GIST diagnosis accuracy
References:
Li J, Zhu Y, Dong Z, et al., Yao L, Zhang J, Liu J, et al., Zhou Z, Siddiquee MMR, Tajbakhsh N, Liang J
Year:
2014
Region / City:
Converse, Texas
Topic:
Construction Specifications
Document Type:
Product Guide Specification
Organization / Institution:
Halfen USA, Inc.
Author:
Halfen USA, Inc.
Target Audience:
Architects, Engineers, Contractors
Period of Validity:
Not specified
Approval Date:
Not specified
Date of Amendments:
Not specified
Year:
2018
Region / City:
Canada
Topic:
Structural Engineering, Bridge Design
Document Type:
Research Paper
Organization / Institution:
Ryerson University
Author:
Diab, Ahmed; Sennah, Khaled
Target Audience:
Civil Engineers, Structural Designers
Period of Validity:
N/A
Approval Date:
N/A
Modification Date:
N/A
Year:
Not specified
Region / Country:
Not specified
Academic Field:
Biomedical Engineering
Research Area:
Stem Cell Bioprocess Engineering
Keywords:
Suspension Bioreactor, Neural Stem Cells, Shear Stress, Differentiation, Mesenchymal Stem Cells
Document Type:
Academic Project Final Report
Course:
BEE 4530 Computer-Aided Engineering: Applications to Biomedical Processes
Authors:
Dustin Steinhagen; Gabrielle Ravelo; Sophia He
Institution:
Not specified
Software Used:
COMSOL Multiphysics
Main Methods:
Fluid flow modeling using Navier–Stokes equations and Darcy flow; sensitivity analysis
Biological Focus:
Mesenchymal stem cells and neural stem cell differentiation
Application Context:
Bioreactor design for therapeutic-scale stem cell production
Sections Included:
Executive Summary; Introduction; Literature Review; Problem Formulation; Governing Equations; Numerical Implementation; Results; Validation; Discussion; Appendix
Target Audience:
Students and researchers in biomedical and bioprocess engineering
Year:
2026
Location:
London, UK
Subject:
Distal Hereditary Motor Neuropathy, muscle function, gait analysis, rehabilitation
Document Type:
Participant Information Sheet
Institution:
Queen Square Centre for Neuromuscular Diseases, National Hospital for Neurology and Neurosurgery
Chief Investigator:
Dr Gita Ramdharry
Researcher:
Aljwhara Alangary
Target Audience:
Patients with distal hereditary motor neuropathy
Study Duration:
16 months
Measurement Sessions:
0 months, 12 months, 16 months
Intervention:
4-month therapeutic exercise program, ankle braces, physical therapy
Data Collection Methods:
Gait analysis, muscle strength measurement, MRI scans
Consent Required:
Yes
Confidentiality:
Maintained according to privacy regulations; data may be shared anonymously for future research
Year:
2025
Region / City:
Amsterdam, Netherlands
Topic:
Medical research, Neurology
Document type:
Research protocol
Institution:
Amsterdam University Medical Centers, Amsterdam Neuroscience
Author:
Filip Eftimov
Target audience:
Researchers, healthcare professionals
Duration:
Ongoing
Approval date:
20-Mar-2025
Amendment date:
Not applicable
Date of changes:
Not applicable
Year:
2025
Region / City:
Not specified
Topic:
Diabetic Peripheral Neuropathy management
Document Type:
Clinical case series
Organization / Institution:
Unani Medicine Department / In-Patient Department
Author:
Not specified
Target Audience:
Healthcare professionals and researchers
Treatment Evaluated:
Qurse Ziabetas Khas (QZK) and Habb-e-Azaraqi (HA)
Patient Population:
Adults with Type 2 Diabetes Mellitus and DPN
Number of Cases:
3
Duration of Intervention:
56 days
Assessment Methods:
Toronto Clinical Neuropathy Score, Vibration Perception Threshold, Visual Analogue Scale, HbA1c, WHOQOL-BREF
Outcomes:
Neuropathic symptom relief, improved glycemic control, enhanced quality of life
Adverse Events:
None reported
Contextual Description:
Case series reporting clinical outcomes of three male patients with diabetic peripheral neuropathy treated with Unani formulations QZK and HA alongside conventional therapy.
Year:
2012
Location:
Port St. Lucie, Florida, USA
Topic:
Chronic and Neuropathic Pain Management
Document Type:
Event Invitation
Organization:
Treasure Coast Nurse Practitioner Association
Sponsor:
Depomed
Representative:
Laurel Briggs
Guest Speaker:
Bruce Hendi, R.Ph, DO
Target Audience:
Nurse Practitioners
Event Date:
September 1, 2012
Event Time:
6:30 PM
Venue:
Tutto Fresco, 905 Reserve Blvd
Registration:
Required via ENP Network website