Changing stroke rehab and research worldwide now.Time is Brain! trillions and trillions of neurons that DIE each day because there are NO effective hyperacute therapies besides tPA(only 12% effective). I have 523 posts on hyperacute therapy, enough for researchers to spend decades proving them out. These are my personal ideas and blog on stroke rehabilitation and stroke research. Do not attempt any of these without checking with your medical provider. Unless you join me in agitating, when you need these therapies they won't be there.

What this blog is for:

My blog is not to help survivors recover, it is to have the 10 million yearly stroke survivors light fires underneath their doctors, stroke hospitals and stroke researchers to get stroke solved. 100% recovery. The stroke medical world is completely failing at that goal, they don't even have it as a goal. Shortly after getting out of the hospital and getting NO information on the process or protocols of stroke rehabilitation and recovery I started searching on the internet and found that no other survivor received useful information. This is an attempt to cover all stroke rehabilitation information that should be readily available to survivors so they can talk with informed knowledge to their medical staff. It lays out what needs to be done to get stroke survivors closer to 100% recovery. It's quite disgusting that this information is not available from every stroke association and doctors group.

Tuesday, September 22, 2026

Task-oriented treadmill training with versus without posterior elastic resistance in chronic stroke survivors with limited walking function: a randomised controlled trial with exploratory strength-GRF-speed associations

 With NO protocol created and NO objective starting point this research is nonrepeatable, totally fucking useless!

Task-oriented treadmill training with versus without posterior elastic resistance in chronic stroke survivors with limited walking function: a randomised controlled trial with exploratory strength-GRF-speed associations

    We’re sharing this article early to provide faster access to peer-reviewed, accepted research. It is citable and carries a permanent DOI. This version is subject to further edits and will be replaced automatically by the final Version of Record. All legal disclaimers apply.

    Abstract

    Background

    Reduced gait speed, impaired ground reaction force (GRF) generation, and lower-limb weakness are common in chronic stroke survivors and contribute to limited functional mobility. Although treadmill training can improve walking capacity, it remains unclear whether adding posterior elastic resistance provides incremental benefits in propulsion-related kinetics and in the functional linkage among strength, GRF, and walking performance, particularly in individuals with limited walking function. This study compared intensity-matched task-oriented treadmill training with versus without posterior resistance and secondarily explored changes in strength-GRF-speed relationships.

    Methods

    Forty chronic stroke participants were randomly assigned to conventional treadmill training (CON) or treadmill training with posterior resistance (EXP). Both groups received training for 30 min/session, twice weekly for eight weeks. Primary outcomes included preferred and maximum gait speed, bilateral vertical and anterior-posterior GRFs during walking, and lower-limb muscle strength. Secondary outcomes included walking energy expenditure (V̇O₂). Multivariate repeated-measures ANOVA was used to assess training effects. Pre-post associations among gait speed, GRFs, and strength were evaluated as secondary exploratory analyses.

    Results

    In the primary unadjusted analyses, both groups demonstrated significant time effects for preferred and maximum gait speed, walking energy expenditure, and affected-side knee flexor, knee extensor, and ankle plantarflexor strength (all p < 0.05). However, sensitivity analyses adjusted for stroke onset duration showed that several time effects were attenuated. A significant between-group difference was observed only for the second vertical GRF peak on the affected side at maximum speed, which was higher in EXP than CON and remained significant after adjustment (p = 0.049). No broad group × time interaction effects were observed. Exploratory analyses showed that post-training associations among gait speed, affected-side strength, and anterior-posterior GRF appeared more consistent.

    Conclusions

    In chronic stroke survivors with limited walking function, intensity-matched treadmill-based gait training improved walking speed, oxygen uptake, and lower-limb strength, although several time effects were attenuated after adjusting for stroke onset duration. Adding posterior resistance showed a condition-specific between-group difference in paretic late-stance vertical loading at maximum speed but did not result in broad superiority in functional outcomes. Posterior elastic resistance may serve as a feasible adjunct to augment paretic-limb loading during high-demand walking.

    Trial registration ClinicalTrials.gov Protocol Registration: trial number NCT04974840

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