NEWS
Find a Professional: Explore Experts Across 197 Disciplines in 221 Countries!
Just Updated: Compare Your Institution (Live Data)
Print Your Certificate
New! Young University / Institution Rankings 2025
New! Art & Humanities Rankings 2025
New! Social Sciences and Humanities Rankings 2025
Highly Cited Researchers 2025 (Updated Today)
AD
Scientific Index 2025
Scientist Rankings
University Rankings
Subject Rankings
Country Rankings
Login
Register & Pricing
insights
H-Index Rankings
insights
i10 Productivity Rankings
format_list_numbered
Citation Rankings
subject
University Subject Rankings
school
Young Universities
format_list_numbered
Top 100 Scientists
format_quote
Top 100 Institutions
format_quote
For Students
local_fire_department
Country Reports
person
Find a Professional
Pascal R Buenzli
Queensland University of Technology - Brisbane / Australia
Natural Sciences / Mathematical Sciences
AD Scientific Index ID: 46832
Registration, Add Profile,
Premium Membership
Get Your Global Impact Certificate
Ranking &
Analysis
Job
Experiences
Education
Information
Published Books
Book Chapters
Articles
Presentations
Lessons
Projects
Co-Authors
Subject Leaders
Editorship, Referee &
Scientific Board
Patents /
Designs
Academic Grants
& Awards
Artistic
Activities
Certificate / Course
/ Trainings
Association &
Society Memberships
Contact, Office
& Social Media
person_outline
Pascal R Buenzli's MOST POPULAR ARTICLES
1-)
Quantifying the osteocyte network in the human skeleton Bone 75, 144-150, 2015
2-)
The influence of bone surface availability in bone remodelling—a mathematical model including coupled geometrical and biomechanical regulations of bone cells Engineering Structures 47, 134-147, 2013
3-)
Cell proliferation and migration explain pore bridging dynamics in 3D printed scaffolds of different pore size Acta Biomaterialia 114, 285-295, 2020
4-)
Spatio-temporal structure of cell distribution in cortical bone multicellular units: a mathematical model Bone 48 (4), 918-926, 2011
5-)
A multiscale mechanobiological model of bone remodelling predicts site-specific bone loss in the femur during osteoporosis and mechanical disuse Biomechanics and modeling in mechanobiology 15, 43-67, 2016
ARTICLES
Add your articles
We use cookies to personalize our website and offer you a better experience. If you accept cookies, we can offer you special services.
Cookie Policy
Accept