CONTROL OF HAND PROSTHESES- A LITERATURE REVIEW

被引:0
作者
Cloutier, Aimee [1 ]
Yang, James [1 ]
机构
[1] Texas Tech Univ, Dept Mech Engn, Human Centr Design Res Lab, Lubbock, TX 79409 USA
来源
PROCEEDINGS OF THE ASME INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE, 2013, VOL 6A | 2014年
关键词
SENSORY-FEEDBACK-SYSTEM; SLIDING MODE CONTROL; THICK-FILM FORCE; CLASSIFICATION; SLIP; INTERFACES; MACHINE; DESIGN;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In recent years, there has been a steep rise in the quality of prostheses for patients with upper limb amputations. One common control method, using electrornyographic (EMG) signals generated by muscle contractions, has allowed for an increase in the degrees of freedom (DOFs) of hand designs and a larger number of available grip patterns with little added complexity for the wearer However, it provides little sensory feedback and requires non-natural control which must be learned by the user. Another recent improvement in prosthetic hand design instead employs electroneurographic (ENG) signals, requiring an interface directly with the peripheral nervous system (PNS) or the central nervous system (CNS) to control a prosthetic hand. While ENG methods are more invasive than using surface EMG for control, an interface with the PNS has the potential to provide more natural control and creates an avenue for both efferent and afferent sensory feedback. Despite the recent progress in design and control strategies, however prosthetic hands are still far more limited than the actual human hand. This review outlines the recent progress in the development of EMG and ENG controlled prosthetic hands, discussing advancements in the areas of sensory feedback and control. The potential benefits and limitations of both control strategies, in terms of signal classification, invasiveness, and sensory feedback, are examined. A brief overview of interfaces with the CNS is provided, and potential future developments for these control methods are discussed.
引用
收藏
页数:11
相关论文
共 50 条
[21]   A Review of Myoelectric Control for Prosthetic Hand Manipulation [J].
Chen, Ziming ;
Min, Huasong ;
Wang, Dong ;
Xia, Ziwei ;
Sun, Fuchun ;
Fang, Bin .
BIOMIMETICS, 2023, 8 (03)
[22]   Tremor Control Devices for Essential Tremor: A Systematic Literature Review [J].
Castrillo-Fraile, Victoria ;
Casas Pena, Elena ;
Gabriel y Galan, Jose Maria Trejo ;
Delgado-Lopez, Pedro David ;
Collazo, Carla ;
Cubo, Esther .
TREMOR AND OTHER HYPERKINETIC MOVEMENTS, 2019, 9
[23]   Automated guided vehicles position control: a systematic literature review [J].
dos Reis, Wallace Pereira Neves ;
Couto, Giselle Elias ;
Morandin Junior, Orides .
JOURNAL OF INTELLIGENT MANUFACTURING, 2023, 34 (04) :1483-1545
[24]   Electromyography-Based Control of Lower Limb Prostheses: A Systematic Review [J].
Ahkami, Bahareh ;
Ahmed, Kirstin ;
Thesleff, Alexander ;
Hargrove, Levi ;
Ortiz-Catalan, Max .
IEEE TRANSACTIONS ON MEDICAL ROBOTICS AND BIONICS, 2023, 5 (03) :547-562
[25]   Novel force myography sensor to measure muscle contractions for controlling hand prostheses [J].
Prakash, Alok ;
Sharma, Neeraj ;
Sharma, Shiru .
INSTRUMENTATION SCIENCE & TECHNOLOGY, 2020, 48 (01) :43-62
[26]   Effects of hand joints protection on pain, motor performance, and function in patients with hand osteoarthritis: a literature review [J].
Bompard, Anna ;
Battaglino, Andrea ;
Pedersini, Paolo ;
Cantero Tellez, Raquel ;
Valdes, Kristin ;
Leigheb, Massimiliano ;
Villafane, Jorge H. .
MINERVA ORTHOPEDICS, 2022, 73 (06) :531-540
[27]   Is it Finger or Wrist Dexterity That is Missing in Current Hand Prostheses? [J].
Montagnani, Federico ;
Controzzi, Marco ;
Cipriani, Christian .
IEEE TRANSACTIONS ON NEURAL SYSTEMS AND REHABILITATION ENGINEERING, 2015, 23 (04) :600-609
[28]   PROPOSAL OF CRITERIA FOR THE EVALUATION OF PRECISION AND FORCE IN HAND PROSTHESES [J].
Diaz-Montes, Julio C. ;
Dorador-Gonzalez, Jesus M. .
JOURNAL OF MECHANICS IN MEDICINE AND BIOLOGY, 2018, 18 (02)
[29]   Towards Improved Partial-Hand Prostheses: The Effect of Wrist Kinematics on Pattern-Recognition-Based Control [J].
Adewuyi, Adenike A. ;
Hargrove, Levi J. ;
Kuiken, Todd A. .
2013 6TH INTERNATIONAL IEEE/EMBS CONFERENCE ON NEURAL ENGINEERING (NER), 2013, :1489-1492
[30]   Warehouse design and control: Framework and literature review [J].
Rouwenhorst, B ;
Reuter, B ;
Stockrahm, V ;
van Houtum, GJ ;
Mantel, RJ ;
Zijm, WHM .
EUROPEAN JOURNAL OF OPERATIONAL RESEARCH, 2000, 122 (03) :515-533