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Products are filtered by different dates, depending on the combination of live and on-demand components that they contain, and on whether any live components are over or not.
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131 Results

  • Contains 1 Component(s) Includes a Live Web Event on 02/04/2027 at 1:45 PM (EST)

    Join Dr. Hanna Taipaleenmäki as she discusses, "Cancer-Induced Bone Loss."

    Join Dr. Hanna Taipaleenmäki as she discusses, "Cancer-Induced Bone Loss."

    Learning objectives coming soon.

  • Contains 1 Component(s) Includes a Live Web Event on 11/23/2026 at 1:30 PM (EST)

    Join Drs. Laura Carbone and Pritee Shrestha as they discuss MRONJ risk in individuals on pharmacotherapy for fracture prevention.

    Join Drs. Laura Carbone and Pritee Shrestha as the present, "MRONJ Risk in Individuals on Pharmacotherapy for Fracture Prevention."

    Learning Objectives:
    1. Define medication-related osteonecrosis of the jaw (MRONJ) and discuss the challenges of identifying MRONJ using administrative claims data alone 
    2. Describe the utility of an algorithm developed using  Natural Language Processing (NLP) Methodology to ascertain MRONJ 
    3. Review the incidence of MRONJ among patients receiving bisphosphonates for fracture prevention, including relationships with duration of treatment with bisphosphonates. 
    4. Identify patient- and treatment-related risk factors for MRONJ in patients receiving bisphosphonate therapy. 

  • Contains 1 Component(s) Includes a Live Web Event on 11/09/2026 at 11:30 AM (EST)

    Join Drs. Julien Paccou and Ziru Li as they present, "Bone Marrow Adiposity and Osteoporosis."

    Join Drs. Julien Paccou and Ziru Li as they present, "Bone Marrow Adiposity and Osteoporosis."

    Learning Objectives (Clinical, Dr. Julien Paccou):
    1. Recognize the complexity and unique features of experimental models used to study bone marrow adiposity and bone metabolism.
    2. Discuss emerging molecular and cellular mechanisms linking bone marrow adipocytes to skeletal homeostasis.
    3. Evaluate current challenges and knowledge gaps in understanding the role of bone marrow adiposity in skeletal health and osteoporosis.
    4. Identify key unanswered questions and emerging research directions in bone marrow adiposity research.

    Learning Objectives (Basic, Dr. Ziru Li):
    1. Describe the clinical relevance of bone marrow adiposity in the pathophysiology of osteoporosis.
    2. Identify patient populations in whom bone marrow adiposity expansion is most clinically significant (e.g., aging, menopause, diabetes, glucocorticoid use).
    3. Discuss how imaging of marrow adiposity may inform fracture risk assessment.
    4. Review the clinical implications of bone marrow adiposity for the management and treatment of osteoporosis.

  • Contains 1 Component(s) Includes a Live Web Event on 10/27/2026 at 12:00 PM (EDT)

    Join Dr. E. Michael Lewiecki as he presents, "Highlights of Osteoporosis Treatment from the Primer 10th Edition."

    Join Dr. E. Michael Lewiecki as he presents, "Highlights of Osteoporosis Treatment from the Primer 10th Edition."

    Learning Objectives:
    1. Understand strategies for management of osteoporosis
    2. Review challenges in the care of osteoporosis in older patients
    3. Discuss current concepts for osteoporosis treatments in women

  • Contains 1 Component(s) Includes a Live Web Event on 09/29/2026 at 2:00 PM (EDT)

    Join Dr. Sundeep Khosla as they discuss "The role of senescent cells in skeletal aging and repair " moderated by Dr. Matthew Prideaux

    Join Dr. Sundeep Khosla as they discuss "The Role of Senescent Cells in Skeletal Aging and Repair " moderated by Dr. Matthew Prideaux

    Learning Objectives:
    1. Understand mechanisms driving cellular senescence in bone and other tissues
    2. Define consequences of global and cell-specific senescent cell clearance on the skeleton
    3. Define differences in mesenchymal versus immune cell senescent phenotypes
    4. Describe progress and challenges to clinical translation of senolytic

    This webinar is hosted by the ASBMR Muscle and Bone Disease Scientific Interest Group (SIG). The Scientific Interest Groups, brought to you by the Membership Engagement Committee (MEC), aim to empower members through fostering meaningful engagement and collaboration within specific research areas. SIGs are dedicated to promoting year-round connectivity, enhancing networking opportunities, and facilitating mentorship that advances careers. By ensuring inclusivity for all members, SIGs strive to provide exclusive benefits that extend beyond our Annual Meeting, creating a vibrant and supportive community for all.

    Dr. Sundeep Khosla

    Dr. Sundeep Khosla

    MD

    Dr. Sundeep Khosla is the Dr. Francis Chucker and Nathan Landow Research Professor of Medicine and Physiology and a Mayo Foundation Distinguished Investigator. Dr. Khosla received his A.B. degree from Harvard College and his M.D. from Harvard Medical School. He was subsequently a resident in Internal Medicine and a fellow in Endocrinology at the Massachusetts General Hospital. In 1988 he moved to Mayo Clinic, where his research has focused on mechanisms of age-related bone loss and osteoporosis. Dr. Khosla has served as Director of the Center for Clinical and Translational Science and Dean for Clinical and Translational Science at Mayo Clinic. He has also served as Chair of the NIH SBDD Study Section, on the Councils of the National Institute on Aging and the National Institute of Arthritis and Musculoskeletal and Skin Diseases, and as President of the American Society for Bone and Mineral Research (ASBMR). Dr. Khosla has received numerous awards and honors for his work, including the Frederic C. Bartter Award for Clinical Investigation and the William F. Neuman Award for Outstanding Scientific Contributions from the ASBMR, the presentation of the Louis V. Avioli Plenary Lecture at the ASBMR annual meeting, the Outstanding Clinical Investigator Award and Plenary Lecture from the Endocrine Society, the Frontiers in Science Award from the American Association of Clinical Endocrinologists, the Jacobaeus Prize for outstanding research in Endocrinology, and election to the ASCI and AAP.  Dr. Khosla has served as the Editor-in-Chief of Bone, as Associate Editor of the Journal of Bone and Mineral Research and as a member of the editorial boards for the Journal of Clinical Investigation, Journal of Bone and Mineral Research, Journal of Clinical Endocrinology and Metabolism, Bone, and Endocrine Reviews.

    Dr. Matthew Prideaux

    Dr. Matthew Prideaux (Moderator)

    Ph.D

    Dr. Prideaux is an Assistant Professor in the Division of Endocrinology, Diabetes and Metabolism, at the Medical College of Georgia, Augusta University. His research focuses on identifying mechanisms to improve musculoskeletal health during aging, with a particular interest in osteocyte energy metabolism.

  • Contains 1 Component(s) Includes a Live Web Event on 09/25/2026 at 11:00 AM (EDT)

    This introductory webinar in the ASBMR Reviewer Training Track, presented by Dr. Deborah J. Veis, will provide an overview of the peer review process, including the roles and responsibilities of reviewers and an overview of how editors choose reviewers and use their comments. Participants will also learn how to frame constructive reviewer comments and understand ethical responsibilities to contribute to an effective peer review process.

    This introductory webinar in the ASBMR Reviewer Training Track, presented by Dr. Deborah J. Veis, will provide an overview of the peer review process, including the roles and responsibilities of reviewers and an overview of how editors choose reviewers and use their comments. Participants will also learn how to frame constructive reviewer comments and understand ethical responsibilities to contribute to an effective peer review process. 

  • Contains 1 Component(s) Includes a Live Web Event on 09/21/2026 at 11:00 AM (EDT)

    Join Drs. Claudine Blin-Wakkach and Julien Paccou as they present on osteoimmunology and gut microbiome.

    Join Drs. Claudine Blin-Wakkach and Julien Paccou as they present on osteoimmunology and gut microbiome.

    Learning Objectives:

    1. Understand the cellular and molecular mechanisms by which intestinal inflammation and dysbiosis drive bone destruction, in particular in Crohn's disease and osteoporosis. 

    2. Understand the role of osteoclasts in sensing inflammatory signals, with a focus on their heterogeneity.

    3. Evaluate the clinical consequences of gut inflammation on bone health, including osteoporosis, in patients with inflammatory bowel disease, particularly Crohn's disease.

    4. Assess the therapeutic potential of probiotics to mitigate bone loss and improve skeletal outcomes. 

  • Contains 1 Component(s)

    During this session, we share valuable tips on preparing for your trip to Boston, strategies to avoid meeting burnout, and how to maximize your networking opportunities.

    During this session, we share valuable tips on preparing for your trip to Boston, strategies to avoid meeting burnout, and how to maximize your networking opportunities.

  • Contains 1 Component(s)

    Join Drs. Matthew Greenblatt and Dr. Federico La Manna in their 2-part webinar. Dr. Greenblatt will present on, "Getting Started with Performing Single Cell RNASeq Analyses on Musculoskeletal Cells" and Dr. La Manna will lead an interactive session where he will guide attendees step-by-step on how to do basic programming to generate a map of cell clusters and identify some top genes expressed by each cluster using a small data set.

    Agenda

    Dr. Matthew Greenblatt’s Presentation: 10 AM – 11 AM ET
    Dr. Federico La Manna’s Workshop: 11 AM – 12:15 PM ET

    Learning Objectives:

    1. Understand the key experimental parameters impacting the analysis of single cell RNA sequencing data, and the strengths and weaknesses of this technique.

    2. Be able to analyze single cell RNA sequencing data using the Seurat platform.

    3. Consider key decision points in the analytic pipeline for single cell RNA sequencing data and how this impacts the results of the analysis.

  • Contains 8 Component(s)

    Long-Term Osteoporosis Treatment: Osteoclasts Biology

    This topical learning module encompasses the formation, fusion, resorption, and signaling processes of osteoclasts to osteoblasts (coupling), along with the modulation of these processes by long-term antiresorptive therapy (e.g., RANKL inhibition). The available resources encompass Primer textbook chapters, ASBMR webinars/meeting sessions, podcasts, and recent JBMR/JBMR Plus articles on osteoclast mechanisms relevant to sustained therapy and treatment discontinuation.

    Component List: 

    • Primer (10th Edition) Chapter 
    • Webinar: ASBMR Educational Series on Denosumab Therapy in Osteoporosis and Cancer - Episode 1
    • Webinar: ASBMR Educational Series on Denosumab Therapy in Osteoporosis and Cancer - Episode #2
    • JBMR Article: Osteoclast-derived coupling factors: origins and state-of-play Louis V Avioli lecture
    • JBMR Article: Temporal patterns of osteoclast formation and activity following withdrawal of RANKL inhibition
    • JBMR Article: The effects of denosumab on osteoclast precursors in postmenopausal women: a possible explanation for the overshoot phenomenon after discontinuation
    • JBMR Article: Osteal macrophages support osteoclast-mediated resorption and contribute to bone pathology in a postmenopausal osteoporosis mouse model
    • JBMR Plus Article: New Insights Into Osteoclast Biology