Literature DB >> 25019667

Qualitative assessment of tongue drive system by people with high-level spinal cord injury.

Jeonghee Kim1, Hangue Park, Joy Bruce, Diane Rowles, Jaimee Holbrook, Beatrice Nardone, Dennis P West, Anne E Laumann, Elliot Roth, Emir Veledar, Maysam Ghovanloo.   

Abstract

The Tongue Drive System (TDS) is a minimally invasive, wireless, and wearable assistive technology (AT) that enables people with severe disabilities to control their environments using tongue motion. TDS translates specific tongue gestures into commands by sensing the magnetic field created by a small magnetic tracer applied to the user's tongue. We have previously quantitatively evaluated the TDS for accessing computers and powered wheelchairs, demonstrating its usability. In this study, we focused on its qualitative evaluation by people with high-level spinal cord injury who each received a magnetic tongue piercing and used the TDS for 6 wk. We used two questionnaires, an after-scenario and a poststudy, designed to evaluate the tongue-piercing experience and the TDS usability compared with that of the sip-and-puff and the users' current ATs. After study completion, 73% of the participants were positive about keeping the magnetic tongue-barbell in order to use the TDS. All were satisfied with the TDS performance and most said that they were able to do more things using TDS than their current ATs (4.22/5).

Entities:  

Keywords:  assistive technologies; computer access; magnetic zzm321990tongue piercing; qualitative analysis; questionnaire; rehabilitation; spinal cord injury; tetraplegia; tongue drive; wheelchair zzm321990navigation

Mesh:

Year:  2014        PMID: 25019667      PMCID: PMC4445124          DOI: 10.1682/JRRD.2013.08.0178

Source DB:  PubMed          Journal:  J Rehabil Res Dev        ISSN: 0748-7711


  16 in total

1.  Evaluation of a wireless wearable tongue-computer interface by individuals with high-level spinal cord injuries.

Authors:  Xueliang Huo; Maysam Ghovanloo
Journal:  J Neural Eng       Date:  2010-03-23       Impact factor: 5.379

2.  Evaluation of a smartphone platform as a wireless interface between tongue drive system and electric-powered wheelchairs.

Authors:  Jeonghee Kim; Xueliang Huo; Julia Minocha; Jaimee Holbrook; Anne Laumann; Maysam Ghovanloo
Journal:  IEEE Trans Biomed Eng       Date:  2012-04-16       Impact factor: 4.538

3.  Quantitative and comparative assessment of learning in a tongue-operated computer input device.

Authors:  Behnaz Yousefi; Xueliang Huo; Emir Veledar; Maysam Ghovanloo
Journal:  IEEE Trans Inf Technol Biomed       Date:  2011-06-07

4.  Command detection and classification in tongue drive assistive technology.

Authors:  Elnaz Banan Sadeghian; Xueliang Huo; Maysam Ghovanloo
Journal:  Conf Proc IEEE Eng Med Biol Soc       Date:  2011

5.  Development of a tongue-piercing method for use with assistive technology.

Authors:  Julia S Minocha; Jaimee S Holbrook; Dennis P West; Maysam Ghovanloo; Anne E Laumann
Journal:  JAMA Dermatol       Date:  2014-04       Impact factor: 10.282

6.  A magneto-inductive sensor based wireless tongue-computer interface.

Authors:  Xueliang Huo; Jia Wang; Maysam Ghovanloo
Journal:  IEEE Trans Neural Syst Rehabil Eng       Date:  2008-10       Impact factor: 3.802

7.  Survey of the needs of patients with spinal cord injury: impact and priority for improvement in hand function in tetraplegics.

Authors:  G J Snoek; M J IJzerman; H J Hermens; D Maxwell; F Biering-Sorensen
Journal:  Spinal Cord       Date:  2004-09       Impact factor: 2.772

8.  Using unconstrained tongue motion as an alternative control mechanism for wheeled mobility.

Authors:  Xueliang Huo; Maysam Ghovanloo
Journal:  IEEE Trans Biomed Eng       Date:  2009-04-07       Impact factor: 4.538

9.  Introduction and preliminary evaluation of the Tongue Drive System: wireless tongue-operated assistive technology for people with little or no upper-limb function.

Authors:  Xueliang Huo; Jia Wang; Maysam Ghovanloo
Journal:  J Rehabil Res Dev       Date:  2008

10.  Reach and grasp by people with tetraplegia using a neurally controlled robotic arm.

Authors:  Leigh R Hochberg; Daniel Bacher; Beata Jarosiewicz; Nicolas Y Masse; John D Simeral; Joern Vogel; Sami Haddadin; Jie Liu; Sydney S Cash; Patrick van der Smagt; John P Donoghue
Journal:  Nature       Date:  2012-05-16       Impact factor: 49.962

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  3 in total

1.  Multimodal Speech Capture System for Speech Rehabilitation and Learning.

Authors:  Nordine Sebkhi; Dhyey Desai; Mohammad Islam; Jun Lu; Kimberly Wilson; Maysam Ghovanloo
Journal:  IEEE Trans Biomed Eng       Date:  2017-01-18       Impact factor: 4.538

2.  An arch-shaped intraoral tongue drive system with built-in tongue-computer interfacing SoC.

Authors:  Hangue Park; Maysam Ghovanloo
Journal:  Sensors (Basel)       Date:  2014-11-14       Impact factor: 3.576

3.  Eye-controlled, power wheelchair performs well for ALS patients.

Authors:  Michael A Elliott; Henrique Malvar; Lindsey L Maassel; Jon Campbell; Harish Kulkarni; Irina Spiridonova; Noelle Sophy; Jay Beavers; Ann Paradiso; Chuck Needham; Jamie Rifley; Maggie Duffield; Jeremy Crawford; Becky Wood; Emily J Cox; James M Scanlan
Journal:  Muscle Nerve       Date:  2019-08-21       Impact factor: 3.217

  3 in total

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