Related Experiment Video
Updated: Aug 21, 2026

Determining the Functional Status of the Corticospinal Tract Within One Week of Stroke
Published on: February 22, 2020
Poststroke "pushing": natural history and relationship to motor and functional recovery
Cynthia J Danells1, Sandra E Black, David J Gladstone
1Heart and Stroke Foundation of Ontario Centre for Stroke Recovery, Sunnybrook and Women's College Health Science Centre, Toronto, Canada.
Background And Purpose:
Patients with hemiparetic stroke have impaired balance control. Some patients ("pushers") are resistant to accepting weight on and actively "push" away from the nonparetic side. This research identified pushers from stroke patients with moderate to severe hemiparesis and examined longitudinal changes in symptoms, level of impairment, and functional independence.
Methods:
Prospective sample of hemiparetic stroke patients (n=65) located in Toronto, Canada. Detailed clinical assessments were performed within 10 days postonset, at 6 weeks, and at 3 months.
Results:
At 1 week after stroke, 63% of patients demonstrated features of pushing. In 62% of pushers, symptoms resolved by 6 weeks, whereas in 21%, pushing symptoms persisted at 3 months. Motor recovery and functional abilities at 3 months were significantly lower among the pushers compared with the nonpushers. Pushers also had a significantly longer hospital length of stay (89 days versus 57 days). It is noteworthy that motor and functional recovery improved significantly over the 3-month study period for both pushers and nonpushers.
Conclusions:
Identification of stroke patients with pushing symptoms has prognostic implications for recovery. In light of this potential recovery, rehabilitation specialists need to refine treatment approaches for the pushers to further improve functional outcome.
Related Concept Videos
Ischemic Stroke ll: Pathophysiology
Regulation of Stroke Volume
Preload refers to the degree of stretch on the heart before it contracts. It's analogous to the stretching of a rubber band; the more it's stretched, the more forcefully it snaps back. This concept is encapsulated in the Frank-Starling law of the...