Artículos de revistas sobre el tema "Passive human joint models"
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WANG, KE-YI, WEN-YAN ZHAO, ZHUANG HAN, WAN-LI WANG y XIAO-QIANG TANG. "REHABILITATIVE STRATEGIES OF MULTIPLE LOWER LIMBS TRAINING MODELS". Journal of Mechanics in Medicine and Biology 18, n.º 08 (diciembre de 2018): 1840030. http://dx.doi.org/10.1142/s0219519418400304.
Texto completoZhang, Leiyu, Jianfeng Li, Junhui Liu, Peng Su y Chunzhao Zhang. "Design and Kinematic Analysis of Co-Exoskeleton with Passive Translational Joints for Upper-Limb Rehabilitation". International Journal of Humanoid Robotics 15, n.º 05 (27 de septiembre de 2018): 1850020. http://dx.doi.org/10.1142/s0219843618500202.
Texto completoCORAZZA, FEDERICO, VINCENZO PARENTI-CASTELLI, RITA STAGNI, ANGELO CAPPELLO, JOHN J. O'CONNOR y ALBERTO LEARDINI. "BIOMECHANICS OF THE INTACT AND REPLACED HUMAN ANKLE JOINT". Journal of Mechanics in Medicine and Biology 06, n.º 01 (marzo de 2006): 39–46. http://dx.doi.org/10.1142/s0219519406001819.
Texto completoDi Gregorio, Raffaele y Vincenzo Parenti-Castelli. "A Spatial Mechanism With Higher Pairs for Modelling the Human Knee Joint". Journal of Biomechanical Engineering 125, n.º 2 (1 de abril de 2003): 232–37. http://dx.doi.org/10.1115/1.1559895.
Texto completoKositsky, Adam, David J. Saxby, Kim J. Lesch, Rod S. Barrett, Heikki Kröger, Olli Lahtinen, Laura E. Diamond, Rami K. Korhonen y Lauri Stenroth. "In vivo assessment of the passive stretching response of the bicompartmental human semitendinosus muscle using shear-wave elastography". Journal of Applied Physiology 132, n.º 2 (1 de febrero de 2022): 438–47. http://dx.doi.org/10.1152/japplphysiol.00473.2021.
Texto completoDi Gregorio, R., V. Parenti-Castelli, J. J. O’Connor y A. Leardini. "Mathematical models of passive motion at the human ankle joint by equivalent spatial parallel mechanisms". Medical & Biological Engineering & Computing 45, n.º 3 (13 de febrero de 2007): 305–13. http://dx.doi.org/10.1007/s11517-007-0160-7.
Texto completoZhou, Congcong, Zhao Yang, Kaitai Li y Xuesong Ye. "Research and Development of Ankle–Foot Orthoses: A Review". Sensors 22, n.º 17 (1 de septiembre de 2022): 6596. http://dx.doi.org/10.3390/s22176596.
Texto completoEngin, Ali Erkan y Shuenn-Muh Chen. "Kinematic and Passive Resistive Properties of Human Elbow Complex". Journal of Biomechanical Engineering 109, n.º 4 (1 de noviembre de 1987): 318–23. http://dx.doi.org/10.1115/1.3138687.
Texto completoHughes, J. A. E., P. Maiolino y F. Iida. "An anthropomorphic soft skeleton hand exploiting conditional models for piano playing". Science Robotics 3, n.º 25 (19 de diciembre de 2018): eaau3098. http://dx.doi.org/10.1126/scirobotics.aau3098.
Texto completoLi, Na, Ziyan Hao, Haiyong Jiang y Bo Yu. "Positioning Control of a Human-Machine Cooperative Grafting Manipulator for Unstructured Environments". Transactions of the ASABE 63, n.º 5 (2020): 1477–91. http://dx.doi.org/10.13031/trans.13817.
Texto completoAlmuhammadi, Wafaa Salem, Emmanuel Agu, Jean King y Patricia Franklin. "OA-Pain-Sense: Machine Learning Prediction of Hip and Knee Osteoarthritis Pain from IMU Data". Informatics 9, n.º 4 (6 de diciembre de 2022): 97. http://dx.doi.org/10.3390/informatics9040097.
Texto completoRemus, Robin, Andreas Lipphaus, Marc Neumann y Beate Bender. "Calibration and validation of a novel hybrid model of the lumbosacral spine in ArtiSynth–The passive structures". PLOS ONE 16, n.º 4 (26 de abril de 2021): e0250456. http://dx.doi.org/10.1371/journal.pone.0250456.
Texto completoWünschel, Markus, Ulf Leichtle, JiaHsuan Lo, Nikolaus Wülker y Otto Müller. "Differences in tibiofemoral kinematics between the unloaded robotic passive path and a weightbearing knee simulator". Orthopedic Reviews 3, n.º 2 (3 de enero de 2012): 2. http://dx.doi.org/10.4081/or.2012.e2.
Texto completoScherb, David, Patrick Steck, Harald Völkl, Sandro Wartzack y Jörg Miehling. "A NEW METHOD FOR PASSIVE ANKLE FOOT ORTHOSIS DESIGN – INTEGRATION OF MUSCULOSKELETAL AND FINITE ELEMENT SIMULATION". Proceedings of the Design Society 3 (19 de junio de 2023): 333–42. http://dx.doi.org/10.1017/pds.2023.34.
Texto completoDean, J. C. y A. D. Kuo. "Elastic coupling of limb joints enables faster bipedal walking". Journal of The Royal Society Interface 6, n.º 35 (28 de octubre de 2008): 561–73. http://dx.doi.org/10.1098/rsif.2008.0415.
Texto completoKerimoğlu, Deniz, Ömer Morgül y Uluç Saranli. "Stability and control of planar compass gait walking with series-elastic ankle actuation". Transactions of the Institute of Measurement and Control 39, n.º 3 (1 de octubre de 2016): 312–23. http://dx.doi.org/10.1177/0142331216663823.
Texto completoBelli, Italo, Sagar Joshi, J. Micah Prendergast, Irene Beck, Cosimo Della Santina, Luka Peternel y Ajay Seth. "Does enforcing glenohumeral joint stability matter? A new rapid muscle redundancy solver highlights the importance of non-superficial shoulder muscles". PLOS ONE 18, n.º 11 (30 de noviembre de 2023): e0295003. http://dx.doi.org/10.1371/journal.pone.0295003.
Texto completoGottlieb, G. L. y G. C. Agarwal. "Compliance of single joints: elastic and plastic characteristics". Journal of Neurophysiology 59, n.º 3 (1 de marzo de 1988): 937–51. http://dx.doi.org/10.1152/jn.1988.59.3.937.
Texto completoJackson, Rachel W. y Steven H. Collins. "An experimental comparison of the relative benefits of work and torque assistance in ankle exoskeletons". Journal of Applied Physiology 119, n.º 5 (1 de septiembre de 2015): 541–57. http://dx.doi.org/10.1152/japplphysiol.01133.2014.
Texto completoSultan, Nadia, Asif Mahmood Mughal, Muhammad Najam ul Islam y Fahad Mumtaz Malik. "High-gain observer-based nonlinear control scheme for biomechanical sit to stand movement in the presence of sensory feedback delays". PLOS ONE 16, n.º 8 (12 de agosto de 2021): e0256049. http://dx.doi.org/10.1371/journal.pone.0256049.
Texto completoWISSE, MARTIJN. "THREE ADDITIONS TO PASSIVE DYNAMIC WALKING: ACTUATION, AN UPPER BODY, AND 3D STABILITY". International Journal of Humanoid Robotics 02, n.º 04 (diciembre de 2005): 459–78. http://dx.doi.org/10.1142/s0219843605000570.
Texto completoJochumsen, Mads, Sylvain Cremoux, Lucien Robinault, Jimmy Lauber, Juan Arceo, Muhammad Navid, Rasmus Nedergaard, Usman Rashid, Heidi Haavik y Imran Niazi. "Investigation of Optimal Afferent Feedback Modality for Inducing Neural Plasticity with A Self-Paced Brain-Computer Interface". Sensors 18, n.º 11 (3 de noviembre de 2018): 3761. http://dx.doi.org/10.3390/s18113761.
Texto completoWang, Su, Sarah Kurth, Christof Burger, Dieter C. Wirtz, Frank A. Schildberg y Robert Ossendorff. "TNFα-Related Chondrocyte Inflammation Models: A Systematic Review". International Journal of Molecular Sciences 25, n.º 19 (8 de octubre de 2024): 10805. http://dx.doi.org/10.3390/ijms251910805.
Texto completoChe, Junjie, Yang Pan, Wei Yan y Jiexian Yu. "Leg Configuration Analysis and Prototype Design of Biped Robot Based on Spring Mass Model". Actuators 11, n.º 3 (2 de marzo de 2022): 75. http://dx.doi.org/10.3390/act11030075.
Texto completoGeng, Tao, Bernd Porr y Florentin Wörgötter. "A Reflexive Neural Network for Dynamic Biped Walking Control". Neural Computation 18, n.º 5 (mayo de 2006): 1156–96. http://dx.doi.org/10.1162/neco.2006.18.5.1156.
Texto completoRico-Garcia, Mateo, Juan Botero-Valencia y Ruber Hernández-García. "Vertical Jump Data from Inertial and Optical Motion Tracking Systems". Data 7, n.º 8 (17 de agosto de 2022): 116. http://dx.doi.org/10.3390/data7080116.
Texto completoChoi, Wan-Su, Jeong-In Yang, Wihak Kim, Hyo-Eun Kim, Seul-Ki Kim, Yoonkyung Won, Young-Ok Son, Churl-Hong Chun y Jang-Soo Chun. "Critical role for arginase II in osteoarthritis pathogenesis". Annals of the Rheumatic Diseases 78, n.º 3 (4 de enero de 2019): 421–28. http://dx.doi.org/10.1136/annrheumdis-2018-214282.
Texto completoZong, Zhixian, Xiaoting Zhang, Zhengmeng Yang, Weihao Yuan, Jianping Huang, Weiping Lin, Ting Chen et al. "Rejuvenated ageing mesenchymal stem cells by stepwise preconditioning ameliorates surgery-induced osteoarthritis in rabbits". Bone & Joint Research 10, n.º 1 (1 de enero de 2021): 10–21. http://dx.doi.org/10.1302/2046-3758.101.bjr-2020-0249.r1.
Texto completoRusnak, Janice M., Pamela J. Glass, Scott C. Weaver, Carol L. Sabourin, Andrew M. Glenn, William Klimstra, Christopher S. Badorrek, Farooq Nasar y Lucy A. Ward. "Approach to Strain Selection and the Propagation of Viral Stocks for Venezuelan Equine Encephalitis Virus Vaccine Efficacy Testing under the Animal Rule". Viruses 11, n.º 9 (31 de agosto de 2019): 807. http://dx.doi.org/10.3390/v11090807.
Texto completoGasparutto, Xavier, Eric Jacquelin y Raphael Dumas. "Contribution of passive actions to the lower limb joint moments and powers during gait: A comparison of models". Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine 232, n.º 8 (13 de julio de 2018): 768–78. http://dx.doi.org/10.1177/0954411918785661.
Texto completoZaier, Riadh y A. Al-Yahmedi. "Design of Biomechanical Legs with a Passive Toe Joint for Enhanced Human-like Walking". Journal of Engineering Research [TJER] 14, n.º 2 (30 de junio de 2017): 166. http://dx.doi.org/10.24200/tjer.vol14iss2pp166-181.
Texto completoLi, Shuyang, Paolo Dario y Zhibin Song. "Prediction of Passive Torque on Human Shoulder Joint Based on BPANN". Applied Bionics and Biomechanics 2020 (28 de agosto de 2020): 1–10. http://dx.doi.org/10.1155/2020/8839791.
Texto completoTANIGUCHI, Shohei, Ryuta OZAWA, Norimitsu SAKAGAMI y Sadao KAWAMURA. "Joint Torque Decomposition of Human Body in Passive Motion". Transactions of the Society of Instrument and Control Engineers 41, n.º 9 (2005): 763–71. http://dx.doi.org/10.9746/sicetr1965.41.763.
Texto completoBlankevoort, L., R. Huiskes y A. de Lange. "The reproducibility of passive human knee-joint motion characteristics". Journal of Biomechanics 18, n.º 7 (enero de 1985): 529–30. http://dx.doi.org/10.1016/0021-9290(85)90726-2.
Texto completoMarko Gjinko, Juliana. "The 2008 Law “On Gender Equality in Society” and Some of its Effects on Equal Representation." Academicus International Scientific Journal 29 (enero de 2024): 119–33. http://dx.doi.org/10.7336/academicus.2024.29.07.
Texto completoQin, Ling y Bo Lei. "Distributed Multiagent for NAO Robot Joint Position Control Based on Echo State Network". Mathematical Problems in Engineering 2015 (2015): 1–7. http://dx.doi.org/10.1155/2015/945493.
Texto completoSchliemann, Benedikt, Michael Raschke, Philipp Michel, Lukas Heilmann, Felix Dyrna, Julia Sußiek, Andre Frank, Jan Katthagen y Jens Wermers. "It’s more than size that matters: The role of glenoid concavity in shoulder instability with anterior bone loss". Orthopaedic Journal of Sports Medicine 9, n.º 7_suppl4 (1 de julio de 2021): 2325967121S0019. http://dx.doi.org/10.1177/2325967121s00198.
Texto completoMcDaniel, John, Stephen J. Ives y Russell S. Richardson. "Human muscle length-dependent changes in blood flow". Journal of Applied Physiology 112, n.º 4 (15 de febrero de 2012): 560–65. http://dx.doi.org/10.1152/japplphysiol.01223.2011.
Texto completoLiu, Ying-Chi y Yukio Takeda. "Kineto-Static Analysis of a Wrist Rehabilitation Robot with Compliance and Passive Joints for Joint Misalignment Compensation". Machines 8, n.º 2 (2 de mayo de 2020): 23. http://dx.doi.org/10.3390/machines8020023.
Texto completoSpazzin, Aloísio Oro, Guilherme Elias Pessanha Henriques, Mauro Antônio de Arruda Nóbilo, Rafael Leonardo Xediek Consani, Lourenço Correr-Sobrinho y Marcelo Ferraz Mesquita. "Influence of Prosthetic Screw Material on Joint Stability in Passive and Non-Passive Implant-Supported Dentures". Open Dentistry Journal 3, n.º 1 (30 de diciembre de 2009): 245–49. http://dx.doi.org/10.2174/1874210600903010245.
Texto completoKøster, D., J. H. Egedal, M. Hvid, M. R. Jakobsen, U. Müller-Ladner, B. Deleuran, T. W. Kragstrup, E. Neumann y M. A. Nielsen. "AB0100 PHENOTYPIC AND FUNCTIONAL CHARACTERIZATION OF SYNOVIAL FLUID-DERIVED FIBROBLAST-LIKE SYNOVIOCYTES IN RHEUMATOID ARTHRITIS". Annals of the Rheumatic Diseases 79, Suppl 1 (junio de 2020): 1349.1–1349. http://dx.doi.org/10.1136/annrheumdis-2020-eular.3884.
Texto completoGalley, Alexandre, Emma Donnelly, Ilya Borukhov, Brent Lanting y Ryan Willing. "Muscle-Driven Total Knee Replacement Stability with Virtual Ligaments". Bioengineering 12, n.º 2 (25 de enero de 2025): 112. https://doi.org/10.3390/bioengineering12020112.
Texto completoLucie, Sarah. "A Passive Performative: Alternative Models of Human Agency". Journal of Dramatic Theory and Criticism 35, n.º 2 (2021): 113–16. http://dx.doi.org/10.1353/dtc.2021.0008.
Texto completoCHAN, CHING-CHAO, CHOU-CHING K. LIN y MING-SHAUNG JU. "ESTIMATION OF ANKLE JOINT ANGLE FROM PERONEAL AND TIBIAL ELECTRONEUROGRAMS — A MUSCLE SPINDLE MODEL APPROACH". Journal of Mechanics in Medicine and Biology 12, n.º 04 (septiembre de 2012): 1250080. http://dx.doi.org/10.1142/s0219519412005046.
Texto completoWong, Kayleigh, Guy Trudel y Odette Laneuville. "Noninflammatory Joint Contractures Arising from Immobility: Animal Models to Future Treatments". BioMed Research International 2015 (2015): 1–6. http://dx.doi.org/10.1155/2015/848290.
Texto completoMcFaull, Steve y Mario Lamontagne. "The passive elastic moment about the in vivo human knee joint". Journal of Biomechanics 27, n.º 6 (enero de 1994): 809. http://dx.doi.org/10.1016/0021-9290(94)91356-0.
Texto completoHu, Jie, Yuantao Zhuang, Yudi Zhu, Qiaoling Meng y Hongliu Yu. "Intelligent Parametric Adaptive Hybrid Active–Passive Training Control Method for Rehabilitation Robot". Machines 10, n.º 7 (6 de julio de 2022): 545. http://dx.doi.org/10.3390/machines10070545.
Texto completoKozuka, Hiroaki, Daisaku Uchijima y Hiroshi Tachiya. "Motion-Assist Arm with a Passive Joint for an Upper Limb". Journal of Robotics and Mechatronics 32, n.º 1 (20 de febrero de 2020): 183–98. http://dx.doi.org/10.20965/jrm.2020.p0183.
Texto completoIbrahim, B. S. K. K., M. O. Tokhi, M. S. Huq, R. Jailani y S. C. Gharooni. "Fuzzy Modelling of Knee Joint with Genetic Optimization". Applied Bionics and Biomechanics 8, n.º 1 (2011): 85–99. http://dx.doi.org/10.1155/2011/103031.
Texto completoZhang, Leiyu, Jianfeng Li, Shuting Ji, Peng Su, Chunjing Tao y Run Ji. "Design and human–machine compatibility analysis of Co-Exos II for upper-limb rehabilitation". Assembly Automation 39, n.º 4 (2 de septiembre de 2019): 715–26. http://dx.doi.org/10.1108/aa-09-2018-0127.
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