Exploring the relationship between local and global dynamic trunk stabilities during repetitive lifting tasks. Issue 14 (5th November 2015)
- Record Type:
- Journal Article
- Title:
- Exploring the relationship between local and global dynamic trunk stabilities during repetitive lifting tasks. Issue 14 (5th November 2015)
- Main Title:
- Exploring the relationship between local and global dynamic trunk stabilities during repetitive lifting tasks
- Authors:
- Mavor, Matthew P.
Graham, Ryan B. - Abstract:
- Abstract: Lifting is a major risk factor for low back injury. Lifters experience small continual perturbations, because moving a load provides a disturbance to the lifter׳s equilibrium. The goal of the present study was to examine the relationship between local and global trunk/spine stabilities during external perturbations introduced at the foot–floor interface. 12 healthy males were recruited to participate in this study. Participants completed a freestyle lifting protocol on a perturbation treadmill, under three randomized load conditions: ~0, 4, and 8 kg. Participants performed a total of 40 lifts under each load condition; no perturbations occurred during the first 20 lifts. During the last 20 lift cycles (in blocks of 5) the participants were randomly perturbed. Local dynamic trunk stability was quantified using the local divergence exponent ( λ max ) of the first 20 lifts. In addition, the distance traveled from the unperturbed lifting pattern ( B ), the time to max distance (Tau), the relaxation distance ( A ), and the rate of return toward the normal lifting pattern (Beta) were analyzed following each external perturbation. An increase in lifted load lead to significantly increased local trunk stability ( p =0.046). Higher load also lead to decreased distance ( B ) traveled away from the unperturbed trajectory ( p =0.023). Results agree with previous research that increasing load lifted significantly improves local trunk/spine stability during lifting. Here we haveAbstract: Lifting is a major risk factor for low back injury. Lifters experience small continual perturbations, because moving a load provides a disturbance to the lifter׳s equilibrium. The goal of the present study was to examine the relationship between local and global trunk/spine stabilities during external perturbations introduced at the foot–floor interface. 12 healthy males were recruited to participate in this study. Participants completed a freestyle lifting protocol on a perturbation treadmill, under three randomized load conditions: ~0, 4, and 8 kg. Participants performed a total of 40 lifts under each load condition; no perturbations occurred during the first 20 lifts. During the last 20 lift cycles (in blocks of 5) the participants were randomly perturbed. Local dynamic trunk stability was quantified using the local divergence exponent ( λ max ) of the first 20 lifts. In addition, the distance traveled from the unperturbed lifting pattern ( B ), the time to max distance (Tau), the relaxation distance ( A ), and the rate of return toward the normal lifting pattern (Beta) were analyzed following each external perturbation. An increase in lifted load lead to significantly increased local trunk stability ( p =0.046). Higher load also lead to decreased distance ( B ) traveled away from the unperturbed trajectory ( p =0.023). Results agree with previous research that increasing load lifted significantly improves local trunk/spine stability during lifting. Here we have shown that altered local stability also translates into a greater ability to resist external global perturbations, which may reduce injury risk and should be explored in the future. … (more)
- Is Part Of:
- Journal of biomechanics. Volume 48:Issue 14(2015)
- Journal:
- Journal of biomechanics
- Issue:
- Volume 48:Issue 14(2015)
- Issue Display:
- Volume 48, Issue 14 (2015)
- Year:
- 2015
- Volume:
- 48
- Issue:
- 14
- Issue Sort Value:
- 2015-0048-0014-0000
- Page Start:
- 3955
- Page End:
- 3960
- Publication Date:
- 2015-11-05
- Subjects:
- Local divergence exponents -- Linear response theory -- Dynamical systems -- Perturbations -- Movement
Animal mechanics -- Periodicals
Biomechanics -- Periodicals
Biomechanics -- Periodicals
Mécanique animale -- Périodiques
Biomécanique -- Périodiques
Electronic journals
571.4305 - Journal URLs:
- http://www.sciencedirect.com/science/journal/00219290 ↗
http://www.clinicalkey.com/dura/browse/journalIssue/00219290 ↗
http://www.clinicalkey.com.au/dura/browse/journalIssue/00219290 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.jbiomech.2015.09.026 ↗
- Languages:
- English
- ISSNs:
- 0021-9290
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 4953.600000
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