Danielle Lambrick
Papers
4
Total Citations
91
H-Index
4
About
Danielle Lambrick’s research sits at the intersection of rehabilitation science and cardiovascular physiology, with a focus on robotic-assisted gait training for individuals with neurological injury. Her most impactful work investigates how overground robotic exoskeletons—such as the AlterG Bionic Leg—can improve mobility and vascular health in people with chronic stroke and spinal cord injury. In a landmark randomized controlled trial (58 citations), she demonstrated that home-based robotic gait training combined with usual physiotherapy yields significant functional gains in chronic stroke survivors. Her pilot study on spinal cord injury (21 citations) was among the first to show that short-term exoskeleton training can improve central vascular hemodynamics, offering new insights into cardiovascular risk management in this population. Lambrick’s work is notable for its community-based, translational approach—bringing high-tech rehabilitation interventions directly into patients’ homes. Her protocol papers and follow-up vascular studies (2023) further solidify her reputation as a researcher who bridges engineering, clinical practice, and physiological outcomes. For students and clinicians, Lambrick’s research exemplifies how wearable robotics can reshape post-stroke and SCI rehabilitation, not only for walking but for whole-body health.
Research Focus
Key Achievements
Top Papers
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