Bone Microarchitecture in Women With and Without Fracture
NCT01049191 · Status: COMPLETED · Type: OBSERVATIONAL · Enrollment: 78
Last updated 2015-10-05
Summary
Osteoporosis is a common disorder of compromised bone strength causing 40-50% of women and \~25% of men to sustain fragility fractures during their lifetime. The reduction of bone strength in osteoporotic people results from loss of bone density and deterioration of bone quality. Bone quality is a complex amalgamation including macro- and micro-architecture, mineralization, turnover and damage accumulation. Currently, medications to reduce fracture risk are prescribed primarily on the basis of bone mineral density (BMD) measurement. Unfortunately, currently available BMD measurement technologies do not detect the aforementioned properties of bone quality; as such, less than half of individuals who sustain osteoporotic fractures are classified as "osteoporotic" by currently available diagnostic tools. Clearly, measures to enhance identification of those at high fracture risk are needed. High-resolution magnetic resonance imaging (HR-MRI) technology, such as that provided by MicroMRI, Inc., has outstanding potential to be such a tool. Therefore, our long-term goal is to evaluate and optimize the use of HR-MRI in fracture risk prediction; this pilot work is an essential step in attaining this goal.
This research will investigate 72 postmenopausal women with normal or osteopenic BMD by dual-energy x-ray absorptiometry (DXA), 36 with prior low-trauma fractures will be compared with 36 age-, race- and BMD matched women without fracture. We hypothesize that 1.) Women with fractures will have evidence of microarchitectural deterioration on HR-MRI and 2.) Newly developed, more rapid MRI sequences designed at the UW will provide similar trabecular microstructure information more rapidly than the currently used, albeit investigational, technology produced by MicroMRI, Inc.
Our specific aims are to a) Evaluate differences in MicroMRI parameters of trabecular microstructure (bone volume fraction, trabecular thickness, surface/curve ratio and erosion index) between age-, race- and BMD-matched postmenopausal women with and without fracture; b.) Correlate T2\* relaxation time (a rapid indirect MRI measure of trabecular density and microstructure) with BMD measured by DXA, and microstructural parameters measured by MicroMRI. As an exploratory aim we will investigate HR-MRI parameters of trabecular microstructure obtained using a newly developed, rapid MRI sequence referred to as IDEAL-FSE with parameters obtained using the currently available MicroMRI, Inc. sequence.
Conditions
- Osteoporosis
- Fracture
Sponsors & Collaborators
-
University of Wisconsin, Madison
lead OTHER
Principal Investigators
-
Richard Kijowski, MD · University of Wisconsin Department of Radiology
-
Neil C Binkley, MD · University of Wisconsin Osteoporosis Clinical Research Center
-
Michael J Tuite, MD · University of Wisconsin Department of Radiology
Eligibility
- Min Age
- 50 Years
- Sex
- FEMALE
- Healthy Volunteers
- Yes
Timeline & Regulatory
- Start
- 2008-10-31
- Primary Completion
- 2010-05-31
- Completion
- 2010-05-31
Countries
- United States
Study Locations
More Related Trials
-
Assessment of Bone Micro-Architecture Using HR-pQCT
NCT01367730 ·Status: COMPLETED
-
Analysis of Bone Micro-Architecture as a Clinical Biomarker for Image-Based Fracture Risk Estimation.
NCT03463850 ·Status: COMPLETED ·Phase: NA
-
BBD Longitudinal Study of Osteogenesis Imperfecta
NCT02432625 ·Status: RECRUITING
-
An Investigation Into Bone Micro-architecture in Women With Type 2 Diabetes
NCT00982371 ·Status: COMPLETED
-
Study of Low Bone Mass in Premenopausal or Perimenopausal Women
NCT00005101 ·Status: COMPLETED
-
Impact of Osteoporotic Fractures on Work: Data From a Fracture Liaisons Service
NCT04781556 ·Status: COMPLETED
-
The Oswestry Metabolic BONE Cohort
NCT07014306 ·Status: NOT_YET_RECRUITING
-
The Natural History of Injury-Related Disuse Osteopenia
NCT03868085 ·Status: COMPLETED
-
Quality of the Detection & Treatment of Osteoporotic Fractures in a Swiss Trauma Center
NCT02157753 ·Status: COMPLETED
-
Fracture and Fall Prevention in Elderly With Osteoporosis
NCT01844154 ·Status: UNKNOWN
-
Mother Daughter Bone Microarchitecture
NCT01258036 ·Status: COMPLETED
-
Imaging Parameters to Predict Future Vertebral Fracture in Osteoporosis
NCT01653873 ·Status: UNKNOWN
-
Improved Screening for Osteoporosis
NCT02066480 ·Status: COMPLETED
-
PATHophysiology of OSteoporosis: Role of Hidden Cortisol Excess and Its Predictors in Bone Fragility
NCT06324084 ·Status: RECRUITING
-
The Effects of Obesity on Bone Structure and Strength
NCT02629185 ·Status: COMPLETED
-
Natural History of the Collagen-Related Disorder Osteogenesis Imperfecta and Genotype Phenotype Correlation
NCT03575221 ·Status: COMPLETED
-
Bone Microarchitecture in Women Practicing Golf
NCT02544399 ·Status: COMPLETED
-
Bone Fragility Study in Pediatric Population With Risk Factors
NCT02751008 ·Status: COMPLETED
-
Use of Bone Biopsy to Better Understand the Causes of Decreased Bone Mineral Density in Depression
NCT00001916 ·Status: COMPLETED
-
Case Control Study: Determinants of Osteoporosis in GOLD II COPD Patients.
NCT00725673 ·Status: COMPLETED
-
Texture Analysis for Postmenopausal Osteoporosis
NCT00145977 ·Status: COMPLETED ·Phase: NA
-
Strategies to Treat Osteoporosis Following a Fragility Fracture
NCT00512499 ·Status: COMPLETED ·Phase: NA
-
Bone Geometry, Strength, and Biomechanical Changes in Runners With a History of Stress Fractures
NCT00766077 ·Status: COMPLETED
-
Chronic Obstructive Pulmonary Disease (COPD) and Osteoporosis
NCT01067248 ·Status: COMPLETED
-
Epidemiological Study of Osteoporosis in the Elderly Population of Shandong Province
NCT06915935 ·Status: RECRUITING