Osteoarthritis, Knee Clinical Trial
Official title:
The Effect of High Impact Exercise on Bone and Articular Cartilage in Post-menopausal Women
Osteoarthritis (OA) and osteoporosis (OP) affect large numbers of the population. Around 8
million people in the UK are affected by OA and over 300,000 people present with fragility
fractures in the UK each year. High impact exercise has been shown to improve markers of bone
health but the effect of this exercise on the cartilage is less well understood. A six month,
one leg, exercise program based on hopping will be carried out by a group of post-menopausal
women. Post-menopausal women are particularly at risk from OP and the research should give
information on the feasibility of this type of exercise program in this age group and the
effect on cartilage. Participants will be aged between 55 and 70 (at least five years post
menopause) with no conditions that would limit their ability to complete the exercise
program.
To assess changes in participants' cartilage and bone properties they will be asked to attend
several meetings at Loughborough University. Before and after the exercise program
participants will have bone density scans and MRI scans of the knee joint. A subset (n=4)
will undergo high resolution bone scans that can demonstrate changes in bone structure. The
intervention is a home based exercise programme lasting approximately 10 minutes per day.
Initially this will be individualised to each participant with the end goal being daily
exercise sessions. The programme will last for six months with supervised sessions offered
throughout the trial. Using an intervention affecting just one leg will allow the research
team to use the other leg as a control.
The research team hypothesise that in a population of post-menopausal women, a six month,
unilateral exercise intervention will improve bone mineral density at the proximal femur with
no negative effects on articular cartilage.
Status | Recruiting |
Enrollment | 32 |
Est. completion date | January 2019 |
Est. primary completion date | June 2018 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | Female |
Age group | 55 Years to 70 Years |
Eligibility |
Inclusion Criteria: - Post-menopausal - at least 12 months since last menstruation and/or hysterectomy, oophorectomy or hormonal contraceptive use Exclusion Criteria: - Existing knee, hip or back injury. - Any medical conditions or injuries which exclude participation in an exercise intervention e.g. heart conditions, hypertension - BMI > 30 kg/m2 - Participation in a study involving ionising radiation in the previous 12 months. - Exercise involving ground reaction forces greater than that of jogging more than once a week. - Contraindications to MRI or DXA - Osteoporotic (FRAX score requiring the participant is advised to seek treatment) - Medication affecting bone metabolism or density |
Country | Name | City | State |
---|---|---|---|
United Kingdom | Loughborough University | Loughborough | Leicestershire |
Lead Sponsor | Collaborator |
---|---|
Loughborough University |
United Kingdom,
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Change in T2 Relaxation Time (ms) | T2 mapping is an indicator of the water content in cartilage, with longer relaxation times a marker of cartilage degeneration | 6 months (pre and post intervention) | |
Secondary | Change in Femoral neck bone mineral density (g/cm2) | 6 months (pre and post intervention) | ||
Secondary | Change in Femoral neck bone mineral content (g) | 6 months (pre and post intervention) | ||
Secondary | Change in Spine bone mineral density (g/cm2) | 6 months (pre and post intervention) | ||
Secondary | Change in Spine bone mineral content (g) | 6 months (pre and post intervention) | ||
Secondary | Change in Postural sway (mm) | 6 months (pre and post intervention) | ||
Secondary | Change in Maximal hop height (mm) | 6 months (pre and post intervention) | ||
Secondary | Change in Ground Reaction force Maximal Hop (N) | 6 months (pre and post intervention) | ||
Secondary | Change in Ground Reaction force for a set of ten hops (N) | 6 months (pre and post intervention) | ||
Secondary | Change in BMD(D100) (mg HA/cm3) | Volumetric Bone mineral density | 6 months (pre and post intervention) | |
Secondary | Change in Total bone mass (mg) | 6 months (pre and post intervention) | ||
Secondary | Change in BV/TV (%) | Percent bone volume | 6 months (pre and post intervention) | |
Secondary | Change in pBV/TV (%) | Plate bone volume fraction | 6 months (pre and post intervention) | |
Secondary | Change in rBV/TV (%) | Rod bone volume fraction | 6 months (pre and post intervention) | |
Secondary | Change in pBV/rBV (%) | Plate to - rod ratio | 6 months (pre and post intervention) | |
Secondary | Change in pBV/BV (%) | Plate tissue fraction | 6 months (pre and post intervention) | |
Secondary | Change in rBV/BV (%) | Rod tissue fraction | 6 months (pre and post intervention) | |
Secondary | Change in Bone surface(BS) (mm2) | 6 months (pre and post intervention) | ||
Secondary | Change in BS/TV (mm-1) | Bone surface density | 6 months (pre and post intervention) | |
Secondary | Change in Tb.Th (mm) | Trabecular thickness | 6 months (pre and post intervention) | |
Secondary | Change in Tb.Sp (mm) | Trabecular Separation | 6 months (pre and post intervention) | |
Secondary | Change in Tb.N (mm-1) | Trabecular number | 6 months (pre and post intervention) | |
Secondary | Change in Tb.Pf | Trabecular bone pattern (Tb.PF) follows the course of stress lines in the bone. This measurement indicates where the bone is under increased stress. | 6 months (pre and post intervention) | |
Secondary | Change in Conn.D (mm-3) | Connectivity density | 6 months (pre and post intervention) | |
Secondary | Change in DA | Degree of anisotropy | 6 months (pre and post intervention) | |
Secondary | Change in t | Tortuosity (t) is a measure of how well a structure can curve and bend easily. This is an indicator of where the most stress is on the bone structure. | 6 months (pre and post intervention) | |
Secondary | Change in SMI | Structural model index | 6 months (pre and post intervention) | |
Secondary | Change in BRV (mm3) | Bone resorption volume | 6 months (pre and post intervention) | |
Secondary | Change in BFV (mm3) | Bone formation volume | 6 months (pre and post intervention) | |
Secondary | Change in BRM (mg) | Bone resorption mass | 6 months (pre and post intervention) | |
Secondary | Change in BFM (mg) | Bone formation mass | 6 months (pre and post intervention) | |
Secondary | Change in BRF (%) | Bone resorption fraction | 6 months (pre and post intervention) | |
Secondary | Change in BFF(%) | Bone formation fraction | 6 months (pre and post intervention) | |
Secondary | Change in BRR(mm3/week) | Bone resorption rate | 6 months (pre and post intervention) | |
Secondary | Change in BFR(mm3/week) | Bone formation rate | 6 months (pre and post intervention) | |
Secondary | Change in Trabecular orientation distribution (Tb.O.D) (angle in degrees) | This is a measurement of the orientation of the trabeculae in the distal tibia relative to the central axis tibial shaft. The orientation can be categorised into transvers direction and longitudinal direction along the tibial shaft | 6 months (pre and post intervention) | |
Secondary | Change in Ct.Th(mm) | Cortical thickness | 6 months (pre and post intervention) | |
Secondary | Change in B.Po(%) | Bone porosity | 6 months (pre and post intervention) | |
Secondary | Change in Po.Dm(mm) | Pore diameter | 6 months (pre and post intervention) | |
Secondary | Change in Pore volume distribution | 6 months (pre and post intervention) | ||
Secondary | Change in Failure load (N) | 6 months (pre and post intervention) | ||
Secondary | Change in Strain | This analyses the change in length of the bone over the time period, expressed as % change. | 6 months (pre and post intervention) | |
Secondary | Change in Stiffness (N/mm) | 6 months (pre and post intervention) | ||
Secondary | Change in Young's Modulus (GPa) | 6 months (pre and post intervention) | ||
Secondary | Change in Mechanical anisotropic ratio | 6 months (pre and post intervention) | ||
Secondary | Change in Strain energy density (J/m3) | 6 months (pre and post intervention) | ||
Secondary | Change in Strain gradient (µe/mm) | 6 months (pre and post intervention) |
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