Design and Implementation of Synthetic Hand Reasearch Paper you need to write me 4 sections from the paper ( do not worry about other sections but make sure you keep the instructions for each section)
part1 : literature review ( write me one a page and half – single spaced)
Part2: Testing the model of prosthetic hand ( please include Laboratory Scale Testing & Clinical Case studies ). (0.5-1 page- single spaced)
part3: Discussion ( compare two different models of your prosthetic, their performance, cost… etc) ( 1 page single spaced)
part4: Future trends and needs ( 1 – 1.5 page, single spaced)
This is a research paper, but I did the part of collecting resources. please feel free to get extra of you need to, feel free to use them all or some of them ( whatever you like)
PLEASE ATTACH SECTIONS WHEN YOU FIRST FINISH OF THEM, so like every 12-15-18 hours 1 section.
the sources would be down there:
Source 1: Yong, X et al. Design and Implementation of Arch Function for Adaptive Multi-Finger Prosthetic Hand. Sensors; Basel Vol. 19, Iss. 16, (Feb 2019). DOI:10.3390/s19163539
Source 2: Cosenza C, Niola V, Savino S. A mechanical hand for prosthetic applications: multibody model and contact simulation. Proc Inst Mech Eng H. 2018;232(8):819825. doi:10.1177/0954411918787548
Source 3: Aman M, Sporer ME, Gstoettner C, et al. Bionic hand as artificial organ: Current status and future perspectives. Artif Organs. 2019;43(2):109118. doi:10.1111/aor.13422
Source 4: Soriano-Heras E, Blaya-Haro F, Molino C, de Agustín Del Burgo JM. Rapid prototyping prosthetic hand acting by a low-cost shape-memory-alloy actuator. J Artif Organs. 2018;21(2):238246. doi:10.1007/s10047-017-1014-1
Source 5: Zhao, Huichan, et al. Optoelectronically Innervated Soft Prosthetic Hand via Stretchable Optical Waveguides. Science Robotics, vol. 1, no. 1, 2016, doi:10.1126/scirobotics.aai7529.
Source 6: Pattern Recognition Prosthetic Control. Case Medical Research, 2020, doi:10.31525/ct1-nct04272489.
Source 7: Sencadas, Vitor, et al. Large Area and Ultra-Thin Compliant Strain Sensors for Prosthetic Devices. Sensors and Actuators A: Physical, vol. 266, 2017, pp. 5664., doi:10.1016/j.sna.2017.08.051.
Source 8: Belter, Joseph T., et al. Comparative Clinical Evaluation of the Yale Multigrasp Hand. 2016 6th IEEE International Conference on Biomedical Robotics and Biomechatronics (BioRob), 2016, doi:10.1109/biorob.2016.7523680.
Source 9: Geethanjali, Purushothaman. Myoelectric control of prosthetic hands: state-of-the-art review. Medical devices (Auckland, N.Z.) vol. 9 247-55. 27 Jul. 2016, doi:10.2147/MDER.S91102.
Source 10: Tyler, Dustin. Creating a Prosthetic Hand That Can Feel. IEEE SPECTRUM 28 Apr. 2016. https://spectrum.ieee.org/biomedical/bionics/creating-a-prosthetic-hand-that-can-feel.
Source 11: Jelle ten Kate, Gerwin Smit & Paul Breedveld (2017) 3D-printed upper limb prostheses: a review, Disability and Rehabilitation: Assistive Technology, 12:3, 300-314, DOI: 10.1080/17483107.2016.1253117.
Source 12: Clotier, Aimee, Yang, Jingzhou. Control of Hand Prostheses: A Literature Review. ResearchGate. August, 2013. doi: 10.1115/DETC2013-13349.
Source 13: Kashef, Reza., et al. Robotic Hand: A Review on Linkage-driven Finger Mechanisms of Prosthetic Hands And Evaluation of the Performance Criteria. Mechanism and Machine Theory. SienceDirect. 6 Aug, 2019. doi.org/10.1016/j.mechmachtheory.2019.1036770094-114X/©
Source 14: Ventimiglia, Paul. Design of human Hand Prosthesis. Worcester Polytechnic Institute. 26 Apr, 2012. https://web.wpi.edu/Pubs/E-project/Available/E-project-042612-145912/unrestricted/MQP_PaulV_Complete_Final_3.pdf.
Source 15: Standciu, Loredana & Stanciu, Antonius & Menyhardt, Karoly. Actuating a Human Hand Prosthesis: Model Study. ResearchGate. 16-17 Oct, 2006.
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