Dose Response Effect of Drop Jumps on Bone Characteristics
NCT ID: NCT06282705
Last Updated: 2024-02-28
Study Results
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Basic Information
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COMPLETED
NA
48 participants
INTERVENTIONAL
2023-01-06
2023-12-13
Brief Summary
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The present study aims to use varied drop jump heights to identify an osteogenic dose response effect. Drop jumps have been previously used to expose osteogenic effects in research due to the load produced at impact. Is it possible to identify an optimum height for bone response during impact? If so do we then find anything above this height actually has negative or no effect on a group of individuals?
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Detailed Description
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pQCT and DXA will be used to measure bone characteristics. Both methods are a common way of obtaining data detailing bone architecture and geometry within established research establishments including universities and National Health Service (NHS) trusts. Through pQCT, bone geometry, both cortical and trabecular bone can be measured and as a result, bone quality can be assessed. Bone measurement via pQCT is widely used in research and is a non-invasive method of imaging bone to provide estimates of bone strength in the peripheral skeleton to differentiate cortical from trabecular bone and assess bone geometry and density. DXA is the gold standard method of measuring bone mineral density and is commonly used to assess osteoporosis risk.
In addition, body composition (which will be derived from the DXA) may be associated with bone characteristics due to body mass and composition relating to bone loading and muscle acting on bone to produce bone strain.
Conditions
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Study Design
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RANDOMIZED
PARALLEL
BASIC_SCIENCE
NONE
Study Groups
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0 cm Diagonal drop jump
Participants will complete 4 unsupervised home drop jump sessions per week ( minimum 24 hours between each session) for the duration of the study (e.g., Mon, Wed, Fri, Sun) from a height of 0 cm (floor). They will perform 20 diagonal drop jumps on each side (20 x dropping left and 20 x dropping right) with 30 seconds between each jump. The routine will be demonstrated in full on the first laboratory session. The intervention will last 16 weeks.
Diagonal Drop Jumps 0cm
Participants will complete 4 unsupervised home drop jump sessions per week ( minimum 24 hours between each session) for the duration of the study (e.g., Mon, Wed, Fri, Sun) from a height of 0 cm (floor). They will perform 20 diagonal drop jumps on each side (20 x dropping left and 20 x dropping right) with 30 seconds between each jump. The routine will be demonstrated in full on the first laboratory session. The intervention will last 16 weeks.
40 cm diagonal drop jump
Participants will complete 4 unsupervised home drop jump sessions per week ( minimum 24 hours between each session) for the duration of the study (e.g., Mon, Wed, Fri, Sun) from a height of 40 cm (plyometric box). They will perform 20 diagonal drop jumps on each side (20 x dropping left and 20 x dropping right) with 30 seconds between each jump. The routine will be demonstrated in full on the first laboratory session. The intervention will last 16 weeks.
Diagonal Drop Jumps 40cm
Participants will complete 4 unsupervised home drop jump sessions per week ( minimum 24 hours between each session) for the duration of the study (e.g., Mon, Wed, Fri, Sun) from a height of 40 cm (plyo box). They will perform 20 diagonal drop jumps on each side (20 x dropping left and 20 x dropping right) with 30 seconds between each jump. The routine will be demonstrated in full on the first laboratory session. The intervention will last 16 weeks.
60 cm diagonal drop jump
Participants will complete 4 unsupervised home drop jump sessions per week ( minimum 24 hours between each session) for the duration of the study (e.g., Mon, Wed, Fri, Sun) from a height of 60 cm (plyometric box). They will perform 20 diagonal drop jumps on each side (20 x dropping left and 20 x dropping right) with 30 seconds between each jump. The routine will be demonstrated in full on the first laboratory session. The intervention will last 16 weeks.
Diagonal Drop Jumps 60cm
Participants will complete 4 unsupervised home drop jump sessions per week ( minimum 24 hours between each session) for the duration of the study (e.g., Mon, Wed, Fri, Sun) from a height of 60 cm (plyo box). They will perform 20 diagonal drop jumps on each side (20 x dropping left and 20 x dropping right) with 30 seconds between each jump. The routine will be demonstrated in full on the first laboratory session. The intervention will last 16 weeks.
Control
No exercise intervention performed.
No interventions assigned to this group
Interventions
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Diagonal Drop Jumps 0cm
Participants will complete 4 unsupervised home drop jump sessions per week ( minimum 24 hours between each session) for the duration of the study (e.g., Mon, Wed, Fri, Sun) from a height of 0 cm (floor). They will perform 20 diagonal drop jumps on each side (20 x dropping left and 20 x dropping right) with 30 seconds between each jump. The routine will be demonstrated in full on the first laboratory session. The intervention will last 16 weeks.
Diagonal Drop Jumps 40cm
Participants will complete 4 unsupervised home drop jump sessions per week ( minimum 24 hours between each session) for the duration of the study (e.g., Mon, Wed, Fri, Sun) from a height of 40 cm (plyo box). They will perform 20 diagonal drop jumps on each side (20 x dropping left and 20 x dropping right) with 30 seconds between each jump. The routine will be demonstrated in full on the first laboratory session. The intervention will last 16 weeks.
Diagonal Drop Jumps 60cm
Participants will complete 4 unsupervised home drop jump sessions per week ( minimum 24 hours between each session) for the duration of the study (e.g., Mon, Wed, Fri, Sun) from a height of 60 cm (plyo box). They will perform 20 diagonal drop jumps on each side (20 x dropping left and 20 x dropping right) with 30 seconds between each jump. The routine will be demonstrated in full on the first laboratory session. The intervention will last 16 weeks.
Eligibility Criteria
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Inclusion Criteria
* Have a low physical activity status defined as partaking in physical training activities no more than 2x per week.
* No current regular participation (more than once per week) in exercise programmes known to influence bone inc. gymnastics, dance, court sports, ball sports or racquet sports.
* Be able to travel to the laboratory using a vehicle or public transport
* Have the ability to comprehend and understand communication and instruction in English in order to consent and safely participate in study.
* Have no current unresolved cardiovascular complaints to avoid any cardiovascular complications when performing activities of daily living.
Exclusion Criteria
* Joint replacement or prostheses
* Currently or recently injured
* Medical conditions adversely affected by exposure to ionising radiation.
* History of high levels of ionising radiation exposure (e.g., medical treatment).
* Breastfeeding women, pregnant women and women trying to become pregnant
* Females who are on any form of contraception that may influence changes in bone
* Females who have current or previous history of an endocrine disorder
18 Years
25 Years
ALL
Yes
Sponsors
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Nottingham Trent University
OTHER
Responsible Party
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Ian Varley
Associate Professor
Locations
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Nottingham Trent University
Nottingham, Nottinghamshire, United Kingdom
Countries
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References
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Kenkre JS, Bassett J. The bone remodelling cycle. Ann Clin Biochem. 2018 May;55(3):308-327. doi: 10.1177/0004563218759371. Epub 2018 Mar 4.
Min SK, Oh T, Kim SH, Cho J, Chung HY, Park DH, Kim CS. Position Statement: Exercise Guidelines to Increase Peak Bone Mass in Adolescents. J Bone Metab. 2019 Nov;26(4):225-239. doi: 10.11005/jbm.2019.26.4.225. Epub 2019 Nov 30.
Other Identifiers
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306347
Identifier Type: -
Identifier Source: org_study_id
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