Corticospinal responses following strength training: a systematic review and meta‐analysis. (9th October 2017)
- Record Type:
- Journal Article
- Title:
- Corticospinal responses following strength training: a systematic review and meta‐analysis. (9th October 2017)
- Main Title:
- Corticospinal responses following strength training: a systematic review and meta‐analysis
- Authors:
- Kidgell, Dawson J.
Bonanno, Daniel R.
Frazer, Ashlyn K.
Howatson, Glyn
Pearce, Alan J. - Abstract:
- Abstract: Strength training results in changes in skeletal muscle; however, changes in the central nervous system also occur. Over the last 15 years, non‐invasive brain stimulation techniques, such as transcranial magnetic stimulation, have been used to study the neural adaptations to strength training. This review explored the hypothesis that the neural adaptations to strength training may be due to changes in corticospinal excitability and inhibition and, such changes, contribute to the gain in strength following strength training. A systematic review, according to PRISMA guidelines, identified studies by database searching, hand‐searching and citation tracking between January 1990 and the first week of February 2017. Methodological quality of included studies was determined using the Downs and Black quality index. Data were synthesised and interpreted from meta‐analysis. Nineteen studies investigating the corticospinal responses following strength training were included. Meta‐analysis found that strength training increased strength [standardised mean difference (SMD) 0.84, 95% CI 0.55 to 1.13], decreased short‐interval intracortical inhibition (SMD −1.00, 95% CI −1.84 to −0.17) and decreased the cortical silent period (SMD −0.66, 95% CI −1.00 to −0.32). Strength training had no effect on motor threshold (SMD −0.12, 95% CI −0.49 to 0.25), but a borderline effect for increased corticospinal excitability (SMD 0.27, 95% CI 0.00 to 0.54). In untrained healthy participants, theAbstract: Strength training results in changes in skeletal muscle; however, changes in the central nervous system also occur. Over the last 15 years, non‐invasive brain stimulation techniques, such as transcranial magnetic stimulation, have been used to study the neural adaptations to strength training. This review explored the hypothesis that the neural adaptations to strength training may be due to changes in corticospinal excitability and inhibition and, such changes, contribute to the gain in strength following strength training. A systematic review, according to PRISMA guidelines, identified studies by database searching, hand‐searching and citation tracking between January 1990 and the first week of February 2017. Methodological quality of included studies was determined using the Downs and Black quality index. Data were synthesised and interpreted from meta‐analysis. Nineteen studies investigating the corticospinal responses following strength training were included. Meta‐analysis found that strength training increased strength [standardised mean difference (SMD) 0.84, 95% CI 0.55 to 1.13], decreased short‐interval intracortical inhibition (SMD −1.00, 95% CI −1.84 to −0.17) and decreased the cortical silent period (SMD −0.66, 95% CI −1.00 to −0.32). Strength training had no effect on motor threshold (SMD −0.12, 95% CI −0.49 to 0.25), but a borderline effect for increased corticospinal excitability (SMD 0.27, 95% CI 0.00 to 0.54). In untrained healthy participants, the corticospinal response to strength training is characterised by reduced intracortical inhibition and cortical silent period duration, rather than changes in corticospinal excitability. These data demonstrate that strength training targets intracortical inhibitory networks within the primary motor cortex (M1) and corticospinal pathway, characterising an important neural adaptation to strength training. Abstract : It is now well established the adaptations within the nervous system contribute to strength development during the early phases of strength training; however, the underlying neural mechanisms remain elusive. This study establishes that the corticospinal response to strength training is characterised by reduced intracortical inhibition and cortical silent period duration, rather than increased corticospinal excitability, which suggest strength training targets intracortical inhibitory neurons. … (more)
- Is Part Of:
- European journal of neuroscience. Volume 46:Number 11(2017)
- Journal:
- European journal of neuroscience
- Issue:
- Volume 46:Number 11(2017)
- Issue Display:
- Volume 46, Issue 11 (2017)
- Year:
- 2017
- Volume:
- 46
- Issue:
- 11
- Issue Sort Value:
- 2017-0046-0011-0000
- Page Start:
- 2648
- Page End:
- 2661
- Publication Date:
- 2017-10-09
- Subjects:
- excitability -- inhibition -- intracortical inhibition -- resistance exercise -- transcranial magnetic stimulation
Nervous system -- Periodicals
612.8 - Journal URLs:
- http://onlinelibrary.wiley.com/journal/10.1111/(ISSN)1460-9568 ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1111/ejn.13710 ↗
- Languages:
- English
- ISSNs:
- 0953-816X
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3829.731700
British Library DSC - BLDSS-3PM
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- 8640.xml