Current hand exoskeleton technologies for rehabilitation and assistive engineering
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Jung Kim | K. Rhee | G. Gu | Soo-jin Lee | P. Heo
[1] Honghai Liu,et al. Intelligent Robotics and Applications , 2014, Lecture Notes in Computer Science.
[2] Francesco Giovacchini,et al. Mechatronic Design and Characterization of the Index Finger Module of a Hand Exoskeleton for Post-Stroke Rehabilitation , 2012, IEEE/ASME Transactions on Mechatronics.
[3] Haruhisa Kawasaki,et al. Development of a Hand-Assist Robot With Multi-Degrees-of-Freedom for Rehabilitation Therapy , 2012, IEEE/ASME Transactions on Mechatronics.
[4] Masakatsu G. Fujie,et al. Subtle grip force estimation from EMG and muscle stiffness — Relationship between muscle character frequency and grip force , 2011, 2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[5] Yoonsu Nam,et al. Calculation of knee joint moment in isometric and isokinetic knee motion , 2011 .
[6] Jiting Li,et al. iHandRehab: An interactive hand exoskeleton for active and passive rehabilitation , 2011, 2011 IEEE International Conference on Rehabilitation Robotics.
[7] Kyu-Jin Cho,et al. Jointless structure and under-actuation mechanism for compact hand exoskeleton , 2011, 2011 IEEE International Conference on Rehabilitation Robotics.
[8] Satoshi Kinoshita,et al. Wearable contact force sensor system based on fingerpad deformation , 2011, 2011 IEEE World Haptics Conference.
[9] Rahsaan J. Holley,et al. Hand Spring Operated Movement Enhancer (HandSOME): A Portable, Passive Hand Exoskeleton for Stroke Rehabilitation , 2011, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[10] Yasuhisa Hasegawa,et al. Evaluation of fingertip force accuracy in different support conditions of exoskeleton , 2011, 2011 IEEE International Conference on Robotics and Automation.
[11] Jonathan Rossiter,et al. Development of curved type pneumatic artificial rubber muscle using shape-memory polymer , 2011, SICE Annual Conference 2011.
[12] Daisuke Sasaki,et al. Development of Soft Power-Assist Glove and Control Based on Human Intent , 2011, J. Robotics Mechatronics.
[13] M.D. Baker,et al. Orthotic Hand-Assistive Exoskeleton , 2011, 2011 IEEE 37th Annual Northeast Bioengineering Conference (NEBEC).
[14] Seung-Ki Sul,et al. Control of Electric Machine Drive Systems , 2011 .
[15] Wonkeun Youn,et al. Feasibility of using an artificial neural network model to estimate the elbow flexion force from mechanomyography , 2011, Journal of Neuroscience Methods.
[16] Toyomi Miyagawa,et al. Power-Assist Glove Operated by Predicting the Grasping Mode , 2011 .
[17] Seung-Ki Sul,et al. Control of Electric Machine Drive Systems: Sul/Control of Electric Machine , 2010 .
[18] Nikos G. Tsagarakis,et al. A portable rehabilitation device for the Hand , 2010, 2010 Annual International Conference of the IEEE Engineering in Medicine and Biology.
[19] M. Chen,et al. An intention driven hand functions task training robotic system , 2010, 2010 Annual International Conference of the IEEE Engineering in Medicine and Biology.
[20] Yongji Wang,et al. A Wearable Rehabilitation Robotic Hand Driven by PM-TS Actuators , 2010, ICIRA.
[21] Jung Kim,et al. Estimation of elbow flexion force during isometric muscle contraction from mechanomyography and electromyography , 2010, Medical & Biological Engineering & Computing.
[22] Changmok Choi,et al. Real-time pinch force estimation by surface electromyography using an artificial neural network. , 2010, Medical engineering & physics.
[23] Kotaro Tadano,et al. Development of grip amplified glove using bi-articular mechanism with pneumatic artificial rubber muscle , 2010, 2010 IEEE International Conference on Robotics and Automation.
[24] B. F. BuSha,et al. A power-assisted exoskeleton optimized for pinching and grasping motions , 2010, Proceedings of the 2010 IEEE 36th Annual Northeast Bioengineering Conference (NEBEC).
[25] Rahsaan J. Holley,et al. Development and pilot testing of HEXORR: Hand EXOskeleton Rehabilitation Robot , 2010, Journal of NeuroEngineering and Rehabilitation.
[26] Ju Wang,et al. Design of an exoskeleton for index finger rehabilitation , 2009, 2009 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[27] Daisuke Sasaki,et al. Development of Power Assist Wear Using Pneumatic Rubber Artificial Muscles , 2009, J. Robotics Mechatronics.
[28] Francesco Giovacchini,et al. HANDEXOS: Towards an exoskeleton device for the rehabilitation of the hand , 2009, 2009 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[29] Kazuo Kiguchi,et al. Mechanical designs of active upper-limb exoskeleton robots: State-of-the-art and design difficulties , 2009, 2009 IEEE International Conference on Rehabilitation Robotics.
[30] Hyung-Soon Park,et al. Developing a whole-arm exoskeleton robot with hand opening and closing mechanism for upper limb stroke rehabilitation , 2009, 2009 IEEE International Conference on Rehabilitation Robotics.
[31] Massimo Bergamasco,et al. Mechanical design of a novel Hand Exoskeleton for accurate force displaying , 2009, 2009 IEEE International Conference on Robotics and Automation.
[32] Takashi Komeda,et al. Development of a grip aid system using air cylinders , 2009, 2009 IEEE International Conference on Robotics and Automation.
[33] Hong-Bo Xie,et al. Classification of the mechanomyogram signal using a wavelet packet transform and singular value decomposition for multifunction prosthesis control , 2009, Physiological measurement.
[34] B. F. BuSha,et al. An orthotic hand-assistive exoskeleton for actuated pinch and grasp , 2009, 2009 IEEE 35th Annual Northeast Bioengineering Conference.
[35] Ajay Kumar,et al. Anatomy of Hand , 2009, Encyclopedia of Biometrics.
[36] W. Craelius,et al. Pressure signature of forearm as predictor of grip force. , 2008, Journal of rehabilitation research and development.
[37] Peter Puya Abolfathi,et al. Development of an instrumented and powered exoskeleton for the rehabilitation of the hand. , 2008 .
[38] Ronald Lumia,et al. Design and test of IPMC artificial muscle microgripper , 2008 .
[39] Yasuhisa Hasegawa,et al. Five-fingered assistive hand with mechanical compliance of human finger , 2008, 2008 IEEE International Conference on Robotics and Automation.
[40] Maury A Nussbaum,et al. Estimation of forces exerted by the fingers using standardised surface electromyography from the forearm , 2008, Ergonomics.
[41] L. Der-Yeghiaian,et al. Robot-based hand motor therapy after stroke. , 2007, Brain : a journal of neurology.
[42] Roy Want,et al. The Bionic Man , 2008, IEEE Pervasive Comput..
[43] J.E. Colgate,et al. Control and kinematic performance analysis of an Actuated Finger Exoskeleton for hand rehabilitation following stroke , 2010, 2010 3rd IEEE RAS & EMBS International Conference on Biomedical Robotics and Biomechatronics.
[44] K. An,et al. Biomechanics of the wrist and hand , 2007 .
[45] Andreas Wege,et al. Electromyography sensor based control for a hand exoskeleton , 2007, 2007 IEEE International Conference on Robotics and Biomimetics (ROBIO).
[46] Derek G. Kamper,et al. An Actuated Finger Exoskeleton for Hand Rehabilitation Following Stroke , 2007 .
[47] J. Madden,et al. Polymer artificial muscles , 2007 .
[48] Paul Lukowicz,et al. Detecting and Interpreting Muscle Activity with Wearable Force Sensors , 2006, Pervasive.
[49] Andreas Wege,et al. Development and control of a hand exoskeleton for rehabilitation of hand injuries , 2005, 2005 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[50] Charlie Duncheon,et al. Robots will be of service with muscles, not motors , 2005, Ind. Robot.
[51] Tom Chau,et al. A self-contained, mechanomyography-driven externally powered prosthesis. , 2005, Archives of physical medicine and rehabilitation.
[52] G. Gini,et al. An EMG-controlled exoskeleton for hand rehabilitation , 2005, 9th International Conference on Rehabilitation Robotics, 2005. ICORR 2005..
[53] Jaap H van Dieën,et al. Prediction of handgrip forces using surface EMG of forearm muscles. , 2005, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[54] Kevin C. Chung,et al. Atlas of Hand Anatomy and Clinical Implications. , 2005 .
[55] Sam L. Phillips,et al. Residual kinetic imaging: a versatile interface for prosthetic control , 2005, Robotica.
[56] Naoki Kawakami,et al. An Encounter-Type Multi-Fingered Master Hand Using Circuitous Joints , 2005, Proceedings of the 2005 IEEE International Conference on Robotics and Automation.
[57] Grigore C. Burdea,et al. Manipulation Practice for Upper-Limb Amputees Using Virtual Reality , 2005, Presence: Teleoperators & Virtual Environments.
[58] Yoky Matsuoka,et al. An EMG-Controlled Hand Exoskeleton for Natural Pinching , 2004, J. Robotics Mechatronics.
[59] Nikolaos G. Tsagarakis,et al. Occupational and physical therapy using a hand exoskeleton based exerciser , 2004, 2004 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS) (IEEE Cat. No.04CH37566).
[60] Yoky Matsuoka,et al. Comparison of control strategies for an EMG controlled orthotic exoskeleton for the hand , 2004, IEEE International Conference on Robotics and Automation, 2004. Proceedings. ICRA '04. 2004.
[61] Takakazu Ishimatsu,et al. Muscle stiffness sensor to control an assistance device for the disabled , 2004, Artificial Life and Robotics.
[62] T. Noritsugu,et al. Wearable power assist device for hand grasping using pneumatic artificial rubber muscle , 2004, RO-MAN 2004. 13th IEEE International Workshop on Robot and Human Interactive Communication (IEEE Catalog No.04TH8759).
[63] Hugh M. Herr,et al. New horizons for orthotic and prosthetic technology: artificial muscle for ambulation , 2004, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[64] Yoseph Bar-Cohen,et al. EAP as artificial muscles: progress and challenges , 2004, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[65] Steven C Cramer,et al. Robotics, motor learning, and neurologic recovery. , 2004, Annual review of biomedical engineering.
[66] D. Gordon E. Robertson,et al. Research Methods in Biomechanics , 2004 .
[67] Ferdinando A. Mussa-Ivaldi,et al. Robot-assisted adaptive training: custom force fields for teaching movement patterns , 2004, IEEE Transactions on Biomedical Engineering.
[68] Edward Taub,et al. Constraint-induced movement therapy for chronic stroke hemiparesis and other disabilities. , 2004, Restorative neurology and neuroscience.
[69] Philippe Fuchs,et al. Design of a 2-finger hand skeleton for VR grasping simulation , 2003 .
[70] Yoseph Bar-Cohen,et al. Electroactive polymers: current capabilities and challenges , 2002, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[71] William Craelius,et al. The bionic man: restoring mobility. , 2002, Science.
[72] Dario Farina,et al. Upper trapezius muscle mechanomyographic and electromyographic activity in humans during low force fatiguing and non-fatiguing contractions , 2002, European Journal of Applied Physiology.
[73] H. Asada,et al. Photoplethysmograph fingernail sensors for measuring finger forces without haptic obstruction , 2001, IEEE Trans. Robotics Autom..
[74] A. Burstein. Basic Biomechanics of the Musculoskeletal System. 3rd ed. , 2001 .
[75] Yoji Yamada,et al. Proposal of a SkilMate finger for EVA gloves , 2001, Proceedings 2001 ICRA. IEEE International Conference on Robotics and Automation (Cat. No.01CH37164).
[76] Jacob Rosen,et al. A myosignal-based powered exoskeleton system , 2001, IEEE Trans. Syst. Man Cybern. Part A.
[77] J.A. Flint,et al. Biomimetic finger control by filtering of distributed forelimb pressures , 2001, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[78] Katsumi Mita,et al. Mechanomyogram and force relationship during voluntary isometric ramp contractions of the biceps brachii muscle , 2001, European Journal of Applied Physiology.
[79] Pierre Lopez,et al. Modeling and control of McKibben artificial muscle robot actuators , 2000 .
[80] W Craelius,et al. A biomimetic controller for a multifinger prosthesis. , 1999, IEEE transactions on rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society.
[81] Constantinos Mavroidis,et al. 5.1 CONVENTIONAL ACTUATORS, SHAPE MEMORY ALLOYS, AND ELECTRORHEOLOGICAL FLUIDS , 1999 .
[82] C. M. Wayman,et al. Shape-Memory Materials , 2018 .
[83] Peter Vas,et al. Sensorless vector and direct torque control , 1998 .
[84] N. Hogan,et al. Relating agonist-antagonist electromyograms to joint torque during isometric, quasi-isotonic, nonfatiguing contractions , 1997, IEEE Transactions on Biomedical Engineering.
[85] John A. Main,et al. An anthropomorphic hand exoskeleton to prevent astronaut hand fatigue during extravehicular activities , 1997, IEEE Trans. Syst. Man Cybern. Part A.
[86] Stephen Copeland,et al. Joint stiffness of the upper limb , 1997 .
[87] Bernard J. Martin,et al. Keyboard Reaction Force and Finger Flexor Electromyograms during Computer Keyboard Work , 1996, Hum. Factors.
[88] D J Giurintano,et al. Thumb movements, motions, and moments. , 1995, Journal of hand therapy : official journal of the American Society of Hand Therapists.
[89] J Malchaire,et al. Evaluation of handgrip force from EMG measurements. , 1995, Applied ergonomics.
[90] Mary Elizabeth Parker,et al. Recovery of Upper Extremity Function in Stroke Patients: The Copenhagen Stroke Study , 1995 .
[91] Ralph O. Buchal,et al. The SMART Wrist-Hand Orthosis (WHO) for Quadriplegic Patients , 1993 .
[92] N. Miller,et al. Technique to improve chronic motor deficit after stroke. , 1993, Archives of physical medicine and rehabilitation.
[93] K. An,et al. Functional anatomy and biomechanics of the thumb. , 1992, Hand clinics.
[94] D. Barry,et al. Muscle sounds are emitted at the resonant frequencies of skeletal muscle , 1990, IEEE Transactions on Biomedical Engineering.
[95] N. Benjuya,et al. Myoelectric Hand Orthosis , 1990 .
[96] R L Hewer,et al. Arm function after stroke. An evaluation of grip strength as a measure of recovery and a prognostic indicator. , 1989, Journal of neurology, neurosurgery, and psychiatry.
[97] R.J. Triolo,et al. The theoretical development of a multichannel time-series myoprocessor for simultaneous limb function detection and muscle force estimation , 1989, IEEE Transactions on Biomedical Engineering.
[98] C. D. De Luca,et al. Surface myoelectric signal cross-talk among muscles of the leg. , 1988, Electroencephalography and clinical neurophysiology.
[99] I. Kapandji. The Physiology of the Joints , 1988 .
[100] A. Sunderland,et al. Arm function after stroke: measurement and recovery over the first three months. , 1987, Journal of neurology, neurosurgery, and psychiatry.
[101] D. Elliot,et al. The Excursions of the Long Extensor Tendons of the Hand , 1986, Journal of hand surgery.
[102] R Langton-Hewer,et al. The hemiplegic arm after stroke: measurement and recovery. , 1983, Journal of neurology, neurosurgery, and psychiatry.
[103] M. Shrewsbury,et al. Ligaments of the distal interphalangeal joint and the mallet position. , 1980, The Journal of hand surgery.
[104] D B Chaffin,et al. An investigation of the relationship between displacements of the finger and wrist joints and the extrinsic finger flexor tendons. , 1978, Journal of biomechanics.
[105] J. P. Paul,et al. A biomechanical analysis of the metacarpo-phalangeal joint , 1977 .
[106] Ibrahim Adalbert Kapandji,et al. The physiology of the joints: Annotated diagrams of the mechanics of the human joints , 1970 .
[107] K. Kuczynski,et al. The proximal interphalangeal joint. Anatomy and causes of stiffness in the fingers. , 1968, The Journal of bone and joint surgery. British volume.
[108] Taylor Cl,et al. The anatomy and mechanics of the human hand. , 1955 .
[109] Taylor Cl,et al. The anatomy and mechanics of the human hand. , 1955, Artificial limbs.