Currently browsing: Items authored or edited by Theodoros Georgiou

21 items in this list.
Generated on Fri Dec 6 06:00:28 2024 GMT.

2022To Top

Tetley, Josephine Wendy; Holland, Simon; Caton, Sue; Donaldson, Glynis; Georgiou, Theodoros; Visi, Federico and Stockley, Rachel Christina (2022). Using rhythm for rehabilitation: the acceptability of a novel haptic cueing device in extended stroke rehabilitation. Journal of Enabling Technologies, 16(4) pp. 290–301.

2020To Top

2018To Top

Islam, Riasat; Holland, Simon; Price, Blaine; Georgiou, Theodoros and Mulholland, Paul (2018). Wearables for Long Term Gait Rehabilitation of Neurological Conditions. In: A Short Workshop on Next Steps Towards Long Term Self Tracking, CHI 2018: CHI Conference on Human Factors in Computing Systems, 21-26 Apr 2018, Montreal, QC, Canada.

2017To Top

Stockley, RC; Donaldson, G; Georgiou, Theodoros; Caton, S; Pinzone, O; Visi, F; Holland, Simon; Sullivan, M and Tetley, Josie (2017). A small repeated measures study of haptic cueing upon gait symmetry in people after stroke. International Journal of Stroke, 12 (5S) pp. 44–45.

Tetley, J.; Stockley, R.; Donaldson, G.; Caton, S.; Sullivan, M.; Holland, S.; Georgiou, T.; Visi, F.; Williamson, A.; Wong, J. and Hill, R. (2017). Using rhythm for rehabilitation: evaluation of a novel haptic device.

Georgiou, Theodoros; Holland, Simon; van der Linden, Janet and Visi, Federico (2017). Two kinds of entrainment in gait rehabilitation using haptic metronomic cues. In: 16th Rhythm Production and Perception Workshop, 3-5 Jul 2017, Birmingham, UK.

Visi, Federico; Georgiou, Theodoros; Holland, Simon; Pinzone, Ornella; Donaldson, Glenis and Tetley, Josie (2017). Assessing the Accuracy of an Algorithm for the Estimation of Spatial Gait Parameters Using Inertial Measurement Units: Application to Healthy Subject and Hemiparetic Stroke Survivor. In: 4th International Conference on Movement Computing (MOCO '17), 28-30 Jun 2017, London, UK, ACM.

Stockley, Rachel C.; Donaldson, Glenis; Georgiou, Theo; Holland, Simon; van der Linden, Janet; Tetley, Josie; Garbutt, Linda and Pinzone, Ornella (2017). Walk to the Beat: A Case Report of the Use of a Novel Haptic Device to Improve Walking after Stroke. Journal of Novel Physiotherapy and Physical Rehabilitation, 4(2) pp. 56–59.

2016To Top

Georgiou, Theodoros; Holland, Simon; van der Linden, Janet and Donaldson, Glenis (2016). Questioning Classic Patient Classification Techniques in Gait Rehabilitation: Insights from Wearable Haptic Technology. In: eHealth 360°. Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering (Giokas, Kostas; Bokor, Laszlo and Hopfgartner, Frank eds.), Springer, Cham, 181 pp. 327–339.

Georgiou, Theodoros; Holland, Simon and van der Linden, Janet (2016). Wearable Haptic Devices For Post- Stroke Gait Rehabilitation. In: Designing, developing, and evaluating the internet of personal health: International Joint Conference on Pervasive and Ubiquitous Computing (UbiComp 2016), 12-16 Sep 2016, Heidelberg, Germany.

Stockley, R; Donaldson, G; Tetley, J.; Georgiou, T.; Holland, S.; van der Linden, J. and Pinzone, O. (2016). Walk to the beat: a single case study investigating a novel haptic device to improve walking after stroke. In: Cerebrovascular Diseases (Hennerici, Marion R. ed.), S. Karger, Basel, 41((Suppl 1)) p. 89.

Georgiou, Theodoros; Holland, Simon and van der Linden, Janet (2016). Rhythmic Haptic Cueing for Entrainment: Assisting post-stroke gait rehabilitation. In: Designing Around People: CWUAAT 2016 (Langdon, Pat; Lazar, Jonathan; Heylighen, Ann and Dong, Hua eds.), Springer, pp. 55–64.

2015To Top

Georgiou, Theodoros; Holland, Simon; van der Linden, Janet; Tetley, Josie; Stockley, Rachel C.; Donaldson, Glenis; Garbutt, Linda; Pinzone, Ornella; Grasselly, Fanny and Deleaye, Kevin (2015). A blended user centred design study for wearable haptic gait rehabilitation following hemiparetic stroke. In: Proceedings of the 9th International Conference on Pervasive Computing Technologies for Healthcare, ICST (Institute for Computer Sciences, Social-Informatics and Telecommunications Engineering), pp. 72–79.

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