Citations

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  • Lower limb prosthetic sockets and suspension systems. Physiopedia. (n.d.-a). https://www.physio-pedia.com/Lower_Limb_Prosthetic_Sockets_and_Suspension_Systems#cite_note-:7-1  
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  • [1] (Nicolas Ramlakhan) Jawad K. Oleiwi (August 2021),  The finite element method (ANSYS-19R) is used to build an athletic prosthetic model and apply boundary conditions to investigate the influence of deformation and stored energy on the performance of the sports prosthetic foot, https://www.researchgate.net/publication/354851618_Performance_of_Athletic_Prosthetic_Feet_Made_of_Various_Composite_Materials_with_PMMA_Matrix_Numerical_and_Theoretical_Study
  • [2]  Xuefeng Zhang (August 2022), Huge advances have been achieved in developing versatile. flexible and wearable devices to monitor the motion and gesture of the human body, detect the imposed tactile, force and pressure, and measure the parameters of physical conditions, https://www.mdpi.com/2072-666X/13/8/1356
  • Prosthetics through the ages | NIH MedlinePlus Magazine. (n.d.). NIH MedlinePlus Magazine.https://magazine.medlineplus.gov/article/prosthetics-through-the-ages
  • Hernigou, P. (2013). Ambroise Paré IV: The early history of artificial limbs (from robotic to prostheses). International Orthopaedics, 37(6), 1195–1197. https://doi.org/10.1007/s00264-013-1884-7
  • Ryden, M. (2019, November 26). 2 Prosthetic options for athletes & fitness Hobbyists – What to know – Lindhe Xtend. Lindhe Xtend. https://www.lindhextend.com/en/blog/2-prosthetic-options-for-athletes-fitness-hobbyists-what-to-know
  • Effective health care program. Lower Limb Prosthesis | Effective Health Care (EHC) Program. (n.d.). https://effectivehealthcare.ahrq.gov/products/prosthesis/research-protocol#:~:text=Compared%20to%20the%20general%20population,year%20mortality%20is%2036%25%20for\
  • Agrawal, Veena R. MD; Skrabek, Ryan Q. MD, FRCPC; Embil, John M. MD; Gross, Patrick BMR(PT); Trepman, Elly MD. Effect of Socioeconomic and Health Factors on Prosthetic Use after Lower-Limb Amputation. JPO Journal of Prosthetics and Orthotics 26(2):p 79-86, April 2014. | DOI: 10.1097/JPO.0000000000000027 
  • Beck ON, Taboga P, Grabowski AM. Characterizing the Mechanical Properties of Running-Specific Prostheses. PLoS One. 2016 Dec 14;11(12):e0168298. doi: 10.1371/journal.pone.0168298. Erratum in: PLoS One. 2017 Mar 13;12 (3):e0173764. PMID: 27973573; PMCID: PMC5156386.
  • Staff, H. (2021, July 12). A comfortable fit: 10 supplies you need for properly fitting prosthetics. Horton’s Orthotics & Prosthetics. https://www.hortonsoandp.com/a-comfortable-fit-10-supplies-you-need-for-properly-fitting-prosthetic/ 
  • Batoul Bagheripour, M. M., Behnam Hajiaghaei, Akbar Biglarian, Taher Babaee, Hamid Pezham. (2022). Design and evaluation of a prosthetic socket for a patient with diabetic‐related transtibial amputation: A case report. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9459101/
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  • Graham N. Askew, L. A. M., Alberto E. Minetti, John G. Buckley. (2019). Energy cost of ambulation in trans-tibial amputees using a dynamic-response foot with hydraulic versus rigid ‘ankle’: insights from body centre of mass dynamics. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6417010/
  • Robert Johnston, D. S., Goeran Fiedler, Anita Singh. (2023). Assessing Phase-Change Materials as Effective Long-Term Biosensors in Limb Prosthetics. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10605671/