KUDIERSKY, Nik (2025). Aerobic Exercise and Early Mobilisation in the Acute Phase of Stroke. Doctoral, Sheffield Hallam University. [Thesis]
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Kudiersky_2026_PhD_AerobicExerciseEarly.pdf - Accepted Version
Available under License Creative Commons Attribution Non-commercial No Derivatives.
Kudiersky_2026_PhD_AerobicExerciseEarly.pdf - Accepted Version
Available under License Creative Commons Attribution Non-commercial No Derivatives.
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Abstract
Stroke is a leading cause of long-term disability. Clinical guidelines recommend early
mobilisation and early initiation of aerobic exercise to optimise recovery. However, the
safety and efficacy of these interventions remain uncertain. Early mobilisation aims to
prevent bed rest-related complications and enhance neuroplasticity, but evidence
suggests this method could be detrimental due to cerebral hypoperfusion. Aerobic
exercise is advocated to counteract deconditioning, enhance function and improve
cardiovascular health, but is rarely implemented in the acute phase of stroke. Moreover,
evidence supporting its use in the acute phase of stroke is lacking. This thesis
investigated these interventions, aiming to address key gaps in the evidence base.
Study 1 assessed cerebral blood velocity (CBv) responses to early mobilisation using
transcranial Doppler ultrasound. Standing induced a sustained decline in ipsilesional
CBv by ~10%. An exploratory analysis indicated that CBv responses were not
associated with clinical outcomes, but this was underpowered.
Study 2 was a randomised feasibility trial of an aerobic exercise intervention initiated
1–7 days post-stroke. The 5-session, light- to moderate-intensity recumbent cycling
intervention was safe, attenuated quadriceps muscle atrophy and potentially improved
disability outcomes.
Study 3 examined acute CBv and neurotrophic responses to a single bout of recumbent
aerobic exercise (~10 days post-stroke), using transcranial Doppler ultrasound and
enzyme-linked immunosorbent assays. CBv increased bilaterally during exercise by
~10–11% without causing adverse events, whereas peripheral BDNF measured after
exercise did not change.
Study 4 explored patient and therapist perspectives about aerobic exercise. Patients
generally found the intervention acceptable and beneficial, whereas therapists expressed
mixed views, highlighting uncertainties about efficacy, concerns regarding fatigue and
maladaptation, and resource constraints.
Collectively, these findings demonstrate that early mobilisation may compromise
cerebral perfusion, whereas recumbent aerobic exercise safely increases CBv. In
addition, aerobic exercise training is feasible, safe, and shows promise as an early stroke
rehabilitation strategy
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