Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Life Sciences (5)
- Biomedical Engineering and Bioengineering (3)
- Body Regions (3)
- Engineering (3)
- Kinesiology (3)
-
- Medical Sciences (3)
- Nervous System (3)
- Physiology (3)
- Biomechanics (2)
- Integumentary System (2)
- Musculoskeletal, Neural, and Ocular Physiology (2)
- Animal Sciences (1)
- Animal Structures (1)
- Anthropology (1)
- Arts and Humanities (1)
- Biological and Physical Anthropology (1)
- Biology (1)
- Biomechanics and Biotransport (1)
- Cell Anatomy (1)
- Cell Biology (1)
- Cell and Developmental Biology (1)
- Cells (1)
- Cellular and Molecular Physiology (1)
- Diseases (1)
- Ecology and Evolutionary Biology (1)
- Evolution (1)
- Film Production (1)
- Keyword
-
- AGING (1)
- ANALYSIS/QUANTITATION OF BONE (1)
- ANTIRESORPTIVES (1)
- Anatomy (1)
- Articular Cartilage (1)
-
- BIOMECHANICS (1)
- BONE (1)
- BONE HISTOMORPHOMETRY (1)
- BONE MICRO-COMPUTED TOMOGRAPHY (μCT) (1)
- BONE MODELING AND REMODELING (1)
- BONE QUANTITATIVE (QCT) (1)
- Biomechanics (1)
- Body Mind Centering (1)
- Brachial plexus (1)
- Breathing (1)
- Camera angles (1)
- Course map (1)
- DISEASES AND DISORDERS OF/RELATED TO BONE (1)
- Dance ecology (1)
- Dance film (1)
- Dance improvisation (1)
- Expected learning outcomes (1)
- Film editing (1)
- MOUSE (1)
- Meta-analysis (1)
- Motor empathy. (1)
- Mouse (1)
- OSTEOPOROSIS (1)
- Osteoarthritis (1)
- Osteogenesis imperfecta (1)
- Publication
- Publication Type
- File Type
Articles 1 - 8 of 8
Full-Text Articles in Musculoskeletal System
Cellular Signatures In Human Blood Track Bone Mineral Density In Postmenopausal Women, Kaichi Kaneko, Jefferson Tsai, Deniece Meñez, Brian Oh, Andrew Junwoo Suh, Seyeon Bae, Masataka Mizuno, Akio Umemoto, Eugenia G. Giannopoulou, Takayuki Fujii, Yaxia Zhang, Emily M. Stein, Richard S. Bockman, Kyung-Hyun Park-Min
Cellular Signatures In Human Blood Track Bone Mineral Density In Postmenopausal Women, Kaichi Kaneko, Jefferson Tsai, Deniece Meñez, Brian Oh, Andrew Junwoo Suh, Seyeon Bae, Masataka Mizuno, Akio Umemoto, Eugenia G. Giannopoulou, Takayuki Fujii, Yaxia Zhang, Emily M. Stein, Richard S. Bockman, Kyung-Hyun Park-Min
Publications and Research
Osteoclasts are the sole bone-resorbing cells and are formed by the fusion of osteoclast precursor cells (OCPs) derived from myeloid lineage cells. Animal studies reveal that circulating OCPs (cOCPs) in blood travel to bone and fuse with bone-resident osteoclasts. However, the characteristics of human cOCPs and their association with bone diseases remain elusive. We have identified and characterized human cOCPs and found a positive association between cOCPs and osteoclast activity. Sorted cOCPs have a higher osteoclastogenic potential than other myeloid cells and effectively differentiate into osteoclasts. cOCPs exhibit distinct morphology and transcriptomic signatures. The frequency of cOCPs in the blood …
Bodyverse, Colin B. Stilwell
Bodyverse, Colin B. Stilwell
Theses and Dissertations
This paper supports the MFA dance thesis film BodyVerse. Exploring the intertwining relationship of body systems with the natural world, it brings somatic principles such as Body Mind Centering and dance improvisation together with film legacies and digital platforms.
A Systematic Review And Meta-Analysis On The Efficacy Of Stem Cell Therapy On Bone Brittleness In Mouse Models Of Osteogenesis Imperfecta, Lauren Battle, Shoshana Yakar, Alessandra Carriero
A Systematic Review And Meta-Analysis On The Efficacy Of Stem Cell Therapy On Bone Brittleness In Mouse Models Of Osteogenesis Imperfecta, Lauren Battle, Shoshana Yakar, Alessandra Carriero
Publications and Research
There is no cure for osteogenesis imperfecta (OI), and current treatments can only partially correct the bone phenotype. Stem cell therapy holds potential to improve bone quality and quantity in OI. Here, we conduct a systematic review and meta-analysis of published studies to investigate the efficacy of stem cell therapy to rescue bone brittleness in mouse models of OI. Identified studies included bone marrow, mesenchymal stem cells, and human fetal stem cells. Effect size of fracture incidence, maximum load, stiffness, cortical thickness, bone volume fraction, and raw engraftment rates were pooled in a random-effects meta-analysis. Cell type, cell number, injection …
A Bisphosphonate With A Low Hydroxyapatite Binding Affinity Prevents Bone Loss In Mice After Ovariectomy And Reverses Rapidly With Treatment Cessation, Abigail A. Coffman, Jelena Basta-Pljakic, Rosa M. Guerra, Frank H. Ebetino, Mark W. Lundy, Robert J. Majeska, Mitchell B. Schaffler
A Bisphosphonate With A Low Hydroxyapatite Binding Affinity Prevents Bone Loss In Mice After Ovariectomy And Reverses Rapidly With Treatment Cessation, Abigail A. Coffman, Jelena Basta-Pljakic, Rosa M. Guerra, Frank H. Ebetino, Mark W. Lundy, Robert J. Majeska, Mitchell B. Schaffler
Publications and Research
Bisphosphonates (BPs) are a mainstay of osteoporosis treatment; however, concerns about bone health based on oversuppression of remodeling remain. Long-term bone remodeling suppression adversely affects bone material properties with microdamage accumulation and reduced fracture toughness in animals and increases in matrix mineralization and atypical femur fractures in patients. Although a “drug holiday” from BPs to restore remodeling and improve bone quality seems reasonable, clinical BPs have long functional half-lives because of their high hydroxyapatite (HAP) binding affinities. This places a practical limit on the reversibility and effectiveness of a drug holiday. BPs with low HAP affinity and strong osteoclast inhibition …
Age And Sex Differences In Load-Induced Tibial Cortical Bone Surface Strain Maps, Alessandra Carriero, Behzad Javaheri, Neda Bassir Kazeruni, Andrew A. Pitsillides, Sandra J. Shefelbine
Age And Sex Differences In Load-Induced Tibial Cortical Bone Surface Strain Maps, Alessandra Carriero, Behzad Javaheri, Neda Bassir Kazeruni, Andrew A. Pitsillides, Sandra J. Shefelbine
Publications and Research
Bone adapts its architecture to the applied load; however, it is still unclear how bone mechano-adaptation is coordinated and why potential for adaptation adjusts during the life course. Previous animal models have suggested strain as the mechanical stimulus for bone adaptation, but yet it is unknown how mouse cortical bone load-related strains vary with age and sex. In this study, full-field strain maps (at 1 N increments up to 12 N) on the bone surface were measured in young, adult, and old (aged 10, 22 weeks, and 20 months, respectively), male and female C57BL/6J mice with load applied using a …
Human Anatomy And Physiology I: Course Map With Expected Learning Outcomes, Carlos Liachovitzky
Human Anatomy And Physiology I: Course Map With Expected Learning Outcomes, Carlos Liachovitzky
Open Educational Resources
This document contains a list with all the Anatomy and Physiology I expected learning outcomes organized by topics, and grouped into ten units: 1. Introduction to A&P: body plan & organization; 2. Introduction to A&P: homeostasis; 3. The chemical level of organization; 4. Levels of organization: the cellular level of organization; 5. Levels of organization: the tissue level of organization; 6. Support and movement: integumentary system; 7. Support and movement: skeletal system & articulations; 8. Support and movement: muscular system; 9. Regulation, integration, and control: nervous system; 10. Regulation, integration, and control: special senses
Each learning outcome is referred to …
The Morphology And Evolution Of The Primate Brachial Plexus, Brian M. Shearer
The Morphology And Evolution Of The Primate Brachial Plexus, Brian M. Shearer
Dissertations, Theses, and Capstone Projects
Primate evolutionary history is inexorably linked to the evolution of a broad array of locomotor adaptations that have facilitated the clade’s invasion of new niches. Researchers studying the evolution of primates and of their individual locomotor adaptations have traditionally relied on bony morphology – a practical choice given the virtual non-existence of any other type of tissue in the fossil record. However, this focus downplays the potential importance of the many other structures involved in locomotion, such as muscle, cartilage, and neural tissue, which may each be influenced by separate selective forces because of their different roles in facilitating movement. …
Osteoarthritis And Articular Cartilage: Biomechanics And Novel Treatment Paradigms, Ray Marks
Osteoarthritis And Articular Cartilage: Biomechanics And Novel Treatment Paradigms, Ray Marks
Publications and Research
Background: Osteoarthritis is a widespread highly painful disabling age-related disease with no known cure. Although novel strategies for ameliorating osteoarthritic damage abound, it is likely that none will be successful over time if the entire spectrum of the disease and the effects of joint biomechanics on joint tissues are not carefully considered.
Objectives: 1) To detail the structure of healthy articular cartilage, the key tissue affected by osteoarthritis. 2) To detail what aspects of cartilage damage best characterize osteoarthritis. 3) To consider the role of biomechanical factors in developing solutions to treat osteoarthritic joint damage. Methods: Literature sources from 1980 …