Investigating Novel Treatments for Concussion: Impact of Compression Vest on Rehabilitation Outcomes
NCT ID: NCT02362347
Last Updated: 2019-03-06
Study Results
The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.
Basic Information
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COMPLETED
NA
153 participants
INTERVENTIONAL
2015-02-28
2019-03-04
Brief Summary
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Detailed Description
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Conditions
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Study Design
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RANDOMIZED
PARALLEL
TREATMENT
NONE
Study Groups
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Usual care + exercise
Usual care + exercise
exercise
exercise
No care, no exercise
No care, no exercise
No interventions assigned to this group
Usual care + exercise + compression vest
Usual care + exercise + London Health Sciences Centre - Compression Vest
London Health Sciences Centre - Compression Vest
London Health Sciences Centre - Compression Vest
exercise
exercise
Interventions
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London Health Sciences Centre - Compression Vest
London Health Sciences Centre - Compression Vest
exercise
exercise
Eligibility Criteria
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Inclusion Criteria
* healthy volunteer: no previous medical diagnosis of a concussion
Exclusion Criteria
* diagnosis of pre-existing heart disease
* medications that affect heart or blood vessel control
* pre-existing brain disorders such as Parkinson's, Multiple Sclerosis, Raynaud's, Multiple System Atrophy, metabolic disorders such as diabetes, a history of significant neck injury, or focal neurologic deficit
* primary or metastatic bone tumour
* severe osteoporosis
* if you are, or think you might be, pregnant or breastfeeding
* if you are not able to be understand English
12 Years
40 Years
ALL
Yes
Sponsors
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London Health Sciences Centre Research Institute OR Lawson Research Institute of St. Joseph's
OTHER
Western University, Canada
OTHER
Responsible Party
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Kevin Shoemaker
Professor, PhD
Principal Investigators
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Kevin Shoemaker, PhD
Role: PRINCIPAL_INVESTIGATOR
Western University
Locations
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Fowler Kennedy Sports Medicine Clinic
London, Ontario, Canada
Neurovascular Research Laboratory
London, Ontario, Canada
Countries
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References
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Goldstein B, Kempski MH, DeKing D, Cox C, DeLong DJ, Kelly MM, Woolf PD. Autonomic control of heart rate after brain injury in children. Crit Care Med. 1996 Feb;24(2):234-40. doi: 10.1097/00003246-199602000-00009.
Goldstein B, Toweill D, Lai S, Sonnenthal K, Kimberly B. Uncoupling of the autonomic and cardiovascular systems in acute brain injury. Am J Physiol. 1998 Oct;275(4):R1287-92. doi: 10.1152/ajpregu.1998.275.4.R1287.
Griesbach GS, Gomez-Pinilla F, Hovda DA. Time window for voluntary exercise-induced increases in hippocampal neuroplasticity molecules after traumatic brain injury is severity dependent. J Neurotrauma. 2007 Jul;24(7):1161-71. doi: 10.1089/neu.2006.0255.
Griesbach GS, Hovda DA, Gomez-Pinilla F. Exercise-induced improvement in cognitive performance after traumatic brain injury in rats is dependent on BDNF activation. Brain Res. 2009 Sep 8;1288:105-15. doi: 10.1016/j.brainres.2009.06.045. Epub 2009 Jun 23.
Griesbach GS, Hovda DA, Molteni R, Wu A, Gomez-Pinilla F. Voluntary exercise following traumatic brain injury: brain-derived neurotrophic factor upregulation and recovery of function. Neuroscience. 2004;125(1):129-39. doi: 10.1016/j.neuroscience.2004.01.030.
Junger EC, Newell DW, Grant GA, Avellino AM, Ghatan S, Douville CM, Lam AM, Aaslid R, Winn HR. Cerebral autoregulation following minor head injury. J Neurosurg. 1997 Mar;86(3):425-32. doi: 10.3171/jns.1997.86.3.0425.
Kabadi SV, Faden AI. Neuroprotective strategies for traumatic brain injury: improving clinical translation. Int J Mol Sci. 2014 Jan 17;15(1):1216-36. doi: 10.3390/ijms15011216.
Kiviniemi AM, Frances MF, Tiinanen S, Craen R, Rachinsky M, Petrella RJ, Seppanen T, Huikuri HV, Tulppo MP, Shoemaker JK. alpha-Adrenergic effects on low-frequency oscillations in blood pressure and R-R intervals during sympathetic activation. Exp Physiol. 2011 Aug;96(8):718-35. doi: 10.1113/expphysiol.2011.058768. Epub 2011 May 20.
Kiviniemi AM, Tiinanen S, Hautala AJ, Seppanen T, Makikallio TH, Huikuri HV, Tulppo MP. Frequency of slow oscillations in arterial pressure and R-R intervals during muscle metaboreflex activation. Auton Neurosci. 2010 Jan 15;152(1-2):88-95. doi: 10.1016/j.autneu.2009.08.020. Epub 2009 Sep 19.
La Fountaine MF, Heffernan KS, Gossett JD, Bauman WA, De Meersman RE. Transient suppression of heart rate complexity in concussed athletes. Auton Neurosci. 2009 Jun 15;148(1-2):101-3. doi: 10.1016/j.autneu.2009.03.001. Epub 2009 Mar 21.
Len TK, Neary JP, Asmundson GJ, Candow DG, Goodman DG, Bjornson B, Bhambhani YN. Serial monitoring of CO2 reactivity following sport concussion using hypocapnia and hypercapnia. Brain Inj. 2013;27(3):346-53. doi: 10.3109/02699052.2012.743185.
Papaioannou V, Giannakou M, Maglaveras N, Sofianos E, Giala M. Investigation of heart rate and blood pressure variability, baroreflex sensitivity, and approximate entropy in acute brain injury patients. J Crit Care. 2008 Sep;23(3):380-6. doi: 10.1016/j.jcrc.2007.04.006. Epub 2007 Dec 11.
Piao CS, Stoica BA, Wu J, Sabirzhanov B, Zhao Z, Cabatbat R, Loane DJ, Faden AI. Late exercise reduces neuroinflammation and cognitive dysfunction after traumatic brain injury. Neurobiol Dis. 2013 Jun;54:252-63. doi: 10.1016/j.nbd.2012.12.017. Epub 2013 Jan 8.
Ryan ML, Ogilvie MP, Pereira BM, Gomez-Rodriguez JC, Manning RJ, Vargas PA, Duncan RC, Proctor KG. Heart rate variability is an independent predictor of morbidity and mortality in hemodynamically stable trauma patients. J Trauma. 2011 Jun;70(6):1371-80. doi: 10.1097/TA.0b013e31821858e6.
Shoemaker JK, Usselman CW, Rothwell A, Wong SW. Altered cortical activation patterns associated with baroreflex unloading following 24 h of physical deconditioning. Exp Physiol. 2012 Dec;97(12):1249-62. doi: 10.1113/expphysiol.2012.065557. Epub 2012 May 21.
Other Identifiers
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CON001
Identifier Type: -
Identifier Source: org_study_id
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