From Wikipedia, the free encyclopedia
(Redirected from Orthopedic implant)

Orthopedic implant example seen with X-ray

An orthopedic implant is a medical device manufactured to replace a missing joint or bone, or to support a damaged bone. [1] The medical implant is mainly fabricated using stainless steel and titanium alloys for strength and the plastic coating that is done on it acts as an artificial cartilage. [2] The biodegradable metals in this category are magnesium-based [3] and iron-based alloys, though recently zinc has also been investigated. [4] Currently, the uses of bioresorbable metals are as fracture fixation implants [5] [6] [7] [8] Internal fixation is an operation in orthopedics that involves the surgical implementation of implants to repair a bone. [9] [10] During the surgery of broken bones through internal fixation the bone fragments are first reduced into their normal alignment then they are held together with the help of internal fixators such as plates, screws, nails, pins, and wires. [11] [12]

Eponymous implants and their uses

Branded Systems

Waldemar Link DePuy Synthes Vast Ortho Stryker Smith & Nephew Biomet Orthofix Zimmer
Elective Total Hip Replacement Lubinus SP II Austin Moore

Bipolar

Thompson

Exeter

Accolade

Hip hemiarthroplasty
Hip resurfacing Birmingham
Total Knee Replacement Gemini

Endo-Model

Sigma

Attune

Triathlon

Scorpio

Journey

Legion

Genesis II

Vanguard

VanguardXP

NexGen

Persona

Unicompartmental knee arthroplasty [36] Sled Oxford
Shoulder/ Elbow/ Ankle Replacement
Trauma Femoral Nail Expert LFN/RAFN/ALFN

PFNA

TFN

PFNA

PFNA II

TFN

Gamma nail [37] Intertan nail [38] ZNN System, NCB System
Tibial Nail Expert tibia nail Tibia Nail T2 tibia nail ZNN System, NCB System
External fixation Ilizarov Ring

Clamp

Trocar

Hoffmann II Taylor spatial frame

Ilizarov JET-X

TrueLok Hex

Galaxy

Locking Plates (LCP) 2.4mm Locking

2.7mm Locking

3.5mm Locking

4.5/5.0mm Locking

Angled Plates Angle Blade Plate

Condylat Plate

DHC, DCS

Jewett Nail Plate

Spine Anterior Cervical Plate

Monoaxial Screws

Polyaxial Screws

Cages

Mesh

Image Gallery

Research progress

A surface engineering method was developed for biodegradable magnesium alloys to enhance orthopedic implants. [39]

See also

References

  1. ^ "Orthopedic Implants". Wordpress. Retrieved 12 August 2012.[ unreliable medical source?]
  2. ^ "About Orthopedic Implants". Wordpress. Retrieved 12 June 2014.
  3. ^ Saberi, A.; Bakhsheshi-Rad, H.R.; Karamian, E.; Kasiri-Asgarani, M.; Ghomi, H. (2020). "Magnesium-graphene nano-platelet composites: Corrosion behavior, mechanical and biological properties". Journal of Alloys and Compounds. 821: 153379. doi: 10.1016/j.jallcom.2019.153379. S2CID  214172320.
  4. ^ Kong, Lingyun; Heydari, Zahra; Lami, Ghadeer Hazim; Saberi, Abbas; Baltatu, Madalina Simona; Vizureanu, Petrica (2023-07-03). "A Comprehensive Review of the Current Research Status of Biodegradable Zinc Alloys and Composites for Biomedical Applications". Materials. 16 (13): 4797. Bibcode: 2023Mate...16.4797K. doi: 10.3390/ma16134797. ISSN  1996-1944. PMC  10343804. PMID  37445111.
  5. ^ Liu, JunRu; Wang, XueYi; Saberi, Abbas; Heydari, Zahra (2023). "The effect of Co-encapsulated GNPs-CNTs nanofillers on mechanical properties, degradation and antibacterial behavior of Mg-based composite". Journal of the Mechanical Behavior of Biomedical Materials. 138: 105601. doi: 10.1016/j.jmbbm.2022.105601. PMID  36493612. S2CID  254343106.
  6. ^ Zhao, Jinguo; Haowei, Ma; Saberi, Abbas; Heydari, Zahra; Baltatu, Madalina Simona (2022-10-20). "Carbon Nanotube (CNT) Encapsulated Magnesium-Based Nanocomposites to Improve Mechanical, Degradation and Antibacterial Performances for Biomedical Device Applications". Coatings. 12 (10): 1589. doi: 10.3390/coatings12101589. ISSN  2079-6412.
  7. ^ Zhang, Hongwei; Saberi, Abbas; Heydari, Zahra; Baltatu, Madalina Simona (2023-02-17). "Bredigite-CNTs Reinforced Mg-Zn Bio-Composites to Enhance the Mechanical and Biological Properties for Biomedical Applications". Materials. 16 (4): 1681. Bibcode: 2023Mate...16.1681Z. doi: 10.3390/ma16041681. ISSN  1996-1944. PMC  9965178. PMID  36837310.
  8. ^ Amirzade-Iranaq, Mohammad Taher; Omidi, Mahdi; Bakhsheshi-Rad, Hamid Reza; Saberi, Abbas; Abazari, Somayeh; Teymouri, Nadia; Naeimi, Farid; Sergi, Claudia; Ismail, Ahmad Fauzi; Sharif, Safian; Berto, Filippo (2023-02-25). "MWCNTs-TiO2 Incorporated-Mg Composites to Improve the Mechanical, Corrosion and Biological Characteristics for Use in Biomedical Fields". Materials. 16 (5): 1919. Bibcode: 2023Mate...16.1919A. doi: 10.3390/ma16051919. ISSN  1996-1944. PMC  10004407. PMID  36903033.
  9. ^ Lakatos, Ronald (2023-04-10). "General Principles of Internal Fixation: History of Fracture Treatment, Fracture Repair Biology, Pins, Wires, and Screws". Medscape Reference.
  10. ^ "Internal Fixation Definition". MedicineNet. Retrieved 12 August 2012.
  11. ^ "Types of Orthopedic Implants". gpcmedical. Retrieved 12 August 2012.
  12. ^ Lakatos, Ronald. "History of fracture treatment". Medscape. Retrieved 12 August 2012.
  13. ^ Stinchfield, Frank E.; Cooperman, Bernard; Shea, Cyril E. (1957). "Replacement of the Femoral Head by Judet or Austin Moore Prosthesis". The Journal of Bone and Joint Surgery. 39-A (5): 1043–58. doi: 10.2106/00004623-195739050-00005. PMID  13475404.
  14. ^ Baksi, D. P.; Pal, A. K.; Chatterjee, N. D.; Baksi, Debadyuti (2008). "Prosthetic replacement of elbow in postburn bony ankylosis: Long-term results". International Orthopaedics. 33 (4): 1001–7. doi: 10.1007/s00264-008-0595-y. PMC  2898993. PMID  18629497.
  15. ^ Neumann, Lars; Freund, Knud Gade; Sørensen, K. Harry (1996). "Total Hip Arthroplasty with the Charnley Prosthesis in Patients Fifty-five Years Old and Less. Fifteen to Twenty-one-Year Results". The Journal of Bone and Joint Surgery. 78 (1): 73–9. doi: 10.2106/00004623-199601000-00010. PMID  8550682. S2CID  30505982. Archived from the original on 2013-04-15.
  16. ^ Kinast, C; Bolhofner, BR; Mast, JW; Ganz, R (1989). "Subtrochanteric fractures of the femur. Results of treatment with the 95 degrees condylar blade-plate". Clinical Orthopaedics and Related Research (238): 122–30. doi: 10.1097/00003086-198901000-00019. PMID  2910593.
  17. ^ Walters, Johan; Schepherd-Wilson, William; Lyons, Timothy; Close, Roger (1990). "Femoral shaft fractures treated by Ender nails using a trochanteric approach". The Journal of Bone and Joint Surgery. 72 (1): 14–8. doi: 10.1302/0301-620X.72B1.2298773. PMID  2298773.
  18. ^ Dodenhoff, R. M.; Dainton, J. N.; Hutchins, P. M. (1997). "Proximal Thigh Pain after Femoral Nailing: Causes and Treatment". The Journal of Bone and Joint Surgery. 79 (5): 738–41. doi: 10.1302/0301-620X.79B5.7345. PMID  9331026.
  19. ^ JP, Carstensen; HH, Noer (1998). "[Medial migration of a Hansson hook-pin after femoral neck fracture]". Ugeskrift for Laeger. 160 (36). Ugeskr Laeger: 5200–5201. ISSN  0041-5782. PMID  9741281.
  20. ^ McMaster, Michael J. (1991). "Luque rod instrumentation in the treatment of adolescent idiopathic scoliosis. A comparative study with Harrington instrumentation". The Journal of Bone and Joint Surgery. 73 (6): 982–989. doi: 10.1302/0301-620X.73B6.1955449. PMID  1955449. S2CID  368244.
  21. ^ Dove, J (1986). "Internal fixation of the lumbar spine. The Hartshill rectangle". Clinical Orthopaedics and Related Research. 203 (203): 135–40. doi: 10.1097/00003086-198602000-00016. PMID  3955975.
  22. ^ Kocmond, JH; Delp, SL; Stern, SH (1995). "Stability and range of motion of Insall-Burstein condylar prostheses. A computer simulation study". The Journal of Arthroplasty. 10 (3): 383–8. doi: 10.1016/s0883-5403(05)80189-5. PMID  7673919.
  23. ^ "Interspinous Implant And Implantation Instrument". Freshpatents.com. Retrieved 2015-05-15.
  24. ^ Franssen, BBJM. "Kischner Wire". Retrieved 12 August 2012.[ unreliable medical source?]
  25. ^ Harrold, A J (1982). "Kuntscher's nails for femoral fractures". BMJ. 285 (6353): 1446. doi: 10.1136/bmj.285.6353.1446. PMC  1500600. PMID  6814595.
  26. ^ McMaster, Michael J. (1991). "Luque rod instrumentation in the treatment of adolescent idiopathic scoliosis. A comparative study with Harrington instrumentation". The Journal of Bone and Joint Surgery. 73 (6): 982–989. doi: 10.1302/0301-620X.73B6.1955449. PMID  1955449. S2CID  368244.
  27. ^ Kenesi, C; Tallineau, C (1992). "Shoulder prosthesis". Chirurgie; Mémoires de l'Académie de Chirurgie. 118 (3): 166–9, discussion 169–70. PMID  1339724.
  28. ^ Barry, M; Paterson, JM (2004). "A flexible intramedullary nails for fractures in children". The Journal of Bone and Joint Surgery. 86 (7): 947–53. doi: 10.1302/0301-620x.86b7.15273. PMID  15446515.
  29. ^ "Definition of Smith Pearson nail". Merriam Webster. Retrieved 12 August 2012.
  30. ^ Ikävalko, M.; Lehto, M. U. K.; Repo, A.; Kautiainen, H.; Hämäläinen, M. (2002). "The Souter-Strathclyde elbow arthroplasty". The Journal of Bone and Joint Surgery. 84 (1): 77–82. doi: 10.1302/0301-620X.84B1.11848. PMID  11838445. S2CID  22255058.
  31. ^ Temple, HT; Kruse, RW; Van Dam, BE (1994). "Lumbar and lumbosacral fusion using Steffee instrumentation". Spine. 19 (5): 537–41. doi: 10.1097/00007632-199403000-00008. PMID  8184347.
  32. ^ "Definition of Steinmann Pin". The Free Medical Dictionary. Farex.
  33. ^ van Cappelle, Henk G. J.; Deutman, Robert; van Horn, Jim R. (2001). "Use of the Swanson Silicone Trapezium Implant for Treatment of Primary Osteoarthritis : Long-Term Results". The Journal of Bone and Joint Surgery. 83-A (7): 999–1004. doi: 10.2106/00004623-200107000-00004. PMID  11451968. S2CID  8647605. Archived from the original on 2013-04-15.
  34. ^ Talwalkar, AK; Talwalkar, OA (1967). "Treatment of simple fractures of radius and ulna with internal fixation without external support". Singapore Medical Journal. 8 (3): 160–6. PMID  5587806.
  35. ^ Chan, RN; Hoskinson, J (1975). "Thompson prosthesis for fractured neck of femur. A comparison of surgical approaches". The Journal of Bone and Joint Surgery. 57 (4): 437–43. doi: 10.1302/0301-620X.57B4.437. PMID  1194309.
  36. ^ Borus T, Thornhill T (January 2008). "Unicompartmental knee arthroplasty". J Am Acad Orthop Surg. 16 (1): 9–18. doi: 10.5435/00124635-200801000-00003. PMID  18180388. S2CID  22536661.
  37. ^ Halder, SC (1992). "The Gamma nail for peritrochanteric fractures". The Journal of Bone and Joint Surgery. British Volume. 74 (3): 340–4. doi: 10.1302/0301-620X.74B3.1587873. PMID  1587873. S2CID  10704640.
  38. ^ "TRIGEN INTERTAN Intertrochanteric Antegrade Nail | Smith+Nephew - Corporate".
  39. ^ Li, Yixuan; Zhao, Sheng; Li, Sirong; Ge, Yuxiang; Wang, Rongliang; Zheng, Liming; Xu, Jiankun; Sun, Minghui; Jiang, Qing; Zhang, Yifeng; Wei, Hui (2019). "Surface Engineering of Biodegradable Magnesium Alloys for Enhanced Orthopedic Implants". Small. 15 (51): e1904486. doi: 10.1002/smll.201904486. PMID  31755651. S2CID  208227027.

Szczęsny, G., Kopec, M., Politis, D. J., Kowalewski, Z. L., Łazarski, A., & Szolc, T. "A Review on Biomaterials for Orthopaedic Surgery and Traumatology: From Past to Present". National Library of Medicine. Materials (Basel, Switzerland). Retrieved 23 April 2024.{{ cite web}}: CS1 maint: multiple names: authors list ( link)</ref>

External links

From Wikipedia, the free encyclopedia
(Redirected from Orthopedic implant)

Orthopedic implant example seen with X-ray

An orthopedic implant is a medical device manufactured to replace a missing joint or bone, or to support a damaged bone. [1] The medical implant is mainly fabricated using stainless steel and titanium alloys for strength and the plastic coating that is done on it acts as an artificial cartilage. [2] The biodegradable metals in this category are magnesium-based [3] and iron-based alloys, though recently zinc has also been investigated. [4] Currently, the uses of bioresorbable metals are as fracture fixation implants [5] [6] [7] [8] Internal fixation is an operation in orthopedics that involves the surgical implementation of implants to repair a bone. [9] [10] During the surgery of broken bones through internal fixation the bone fragments are first reduced into their normal alignment then they are held together with the help of internal fixators such as plates, screws, nails, pins, and wires. [11] [12]

Eponymous implants and their uses

Branded Systems

Waldemar Link DePuy Synthes Vast Ortho Stryker Smith & Nephew Biomet Orthofix Zimmer
Elective Total Hip Replacement Lubinus SP II Austin Moore

Bipolar

Thompson

Exeter

Accolade

Hip hemiarthroplasty
Hip resurfacing Birmingham
Total Knee Replacement Gemini

Endo-Model

Sigma

Attune

Triathlon

Scorpio

Journey

Legion

Genesis II

Vanguard

VanguardXP

NexGen

Persona

Unicompartmental knee arthroplasty [36] Sled Oxford
Shoulder/ Elbow/ Ankle Replacement
Trauma Femoral Nail Expert LFN/RAFN/ALFN

PFNA

TFN

PFNA

PFNA II

TFN

Gamma nail [37] Intertan nail [38] ZNN System, NCB System
Tibial Nail Expert tibia nail Tibia Nail T2 tibia nail ZNN System, NCB System
External fixation Ilizarov Ring

Clamp

Trocar

Hoffmann II Taylor spatial frame

Ilizarov JET-X

TrueLok Hex

Galaxy

Locking Plates (LCP) 2.4mm Locking

2.7mm Locking

3.5mm Locking

4.5/5.0mm Locking

Angled Plates Angle Blade Plate

Condylat Plate

DHC, DCS

Jewett Nail Plate

Spine Anterior Cervical Plate

Monoaxial Screws

Polyaxial Screws

Cages

Mesh

Image Gallery

Research progress

A surface engineering method was developed for biodegradable magnesium alloys to enhance orthopedic implants. [39]

See also

References

  1. ^ "Orthopedic Implants". Wordpress. Retrieved 12 August 2012.[ unreliable medical source?]
  2. ^ "About Orthopedic Implants". Wordpress. Retrieved 12 June 2014.
  3. ^ Saberi, A.; Bakhsheshi-Rad, H.R.; Karamian, E.; Kasiri-Asgarani, M.; Ghomi, H. (2020). "Magnesium-graphene nano-platelet composites: Corrosion behavior, mechanical and biological properties". Journal of Alloys and Compounds. 821: 153379. doi: 10.1016/j.jallcom.2019.153379. S2CID  214172320.
  4. ^ Kong, Lingyun; Heydari, Zahra; Lami, Ghadeer Hazim; Saberi, Abbas; Baltatu, Madalina Simona; Vizureanu, Petrica (2023-07-03). "A Comprehensive Review of the Current Research Status of Biodegradable Zinc Alloys and Composites for Biomedical Applications". Materials. 16 (13): 4797. Bibcode: 2023Mate...16.4797K. doi: 10.3390/ma16134797. ISSN  1996-1944. PMC  10343804. PMID  37445111.
  5. ^ Liu, JunRu; Wang, XueYi; Saberi, Abbas; Heydari, Zahra (2023). "The effect of Co-encapsulated GNPs-CNTs nanofillers on mechanical properties, degradation and antibacterial behavior of Mg-based composite". Journal of the Mechanical Behavior of Biomedical Materials. 138: 105601. doi: 10.1016/j.jmbbm.2022.105601. PMID  36493612. S2CID  254343106.
  6. ^ Zhao, Jinguo; Haowei, Ma; Saberi, Abbas; Heydari, Zahra; Baltatu, Madalina Simona (2022-10-20). "Carbon Nanotube (CNT) Encapsulated Magnesium-Based Nanocomposites to Improve Mechanical, Degradation and Antibacterial Performances for Biomedical Device Applications". Coatings. 12 (10): 1589. doi: 10.3390/coatings12101589. ISSN  2079-6412.
  7. ^ Zhang, Hongwei; Saberi, Abbas; Heydari, Zahra; Baltatu, Madalina Simona (2023-02-17). "Bredigite-CNTs Reinforced Mg-Zn Bio-Composites to Enhance the Mechanical and Biological Properties for Biomedical Applications". Materials. 16 (4): 1681. Bibcode: 2023Mate...16.1681Z. doi: 10.3390/ma16041681. ISSN  1996-1944. PMC  9965178. PMID  36837310.
  8. ^ Amirzade-Iranaq, Mohammad Taher; Omidi, Mahdi; Bakhsheshi-Rad, Hamid Reza; Saberi, Abbas; Abazari, Somayeh; Teymouri, Nadia; Naeimi, Farid; Sergi, Claudia; Ismail, Ahmad Fauzi; Sharif, Safian; Berto, Filippo (2023-02-25). "MWCNTs-TiO2 Incorporated-Mg Composites to Improve the Mechanical, Corrosion and Biological Characteristics for Use in Biomedical Fields". Materials. 16 (5): 1919. Bibcode: 2023Mate...16.1919A. doi: 10.3390/ma16051919. ISSN  1996-1944. PMC  10004407. PMID  36903033.
  9. ^ Lakatos, Ronald (2023-04-10). "General Principles of Internal Fixation: History of Fracture Treatment, Fracture Repair Biology, Pins, Wires, and Screws". Medscape Reference.
  10. ^ "Internal Fixation Definition". MedicineNet. Retrieved 12 August 2012.
  11. ^ "Types of Orthopedic Implants". gpcmedical. Retrieved 12 August 2012.
  12. ^ Lakatos, Ronald. "History of fracture treatment". Medscape. Retrieved 12 August 2012.
  13. ^ Stinchfield, Frank E.; Cooperman, Bernard; Shea, Cyril E. (1957). "Replacement of the Femoral Head by Judet or Austin Moore Prosthesis". The Journal of Bone and Joint Surgery. 39-A (5): 1043–58. doi: 10.2106/00004623-195739050-00005. PMID  13475404.
  14. ^ Baksi, D. P.; Pal, A. K.; Chatterjee, N. D.; Baksi, Debadyuti (2008). "Prosthetic replacement of elbow in postburn bony ankylosis: Long-term results". International Orthopaedics. 33 (4): 1001–7. doi: 10.1007/s00264-008-0595-y. PMC  2898993. PMID  18629497.
  15. ^ Neumann, Lars; Freund, Knud Gade; Sørensen, K. Harry (1996). "Total Hip Arthroplasty with the Charnley Prosthesis in Patients Fifty-five Years Old and Less. Fifteen to Twenty-one-Year Results". The Journal of Bone and Joint Surgery. 78 (1): 73–9. doi: 10.2106/00004623-199601000-00010. PMID  8550682. S2CID  30505982. Archived from the original on 2013-04-15.
  16. ^ Kinast, C; Bolhofner, BR; Mast, JW; Ganz, R (1989). "Subtrochanteric fractures of the femur. Results of treatment with the 95 degrees condylar blade-plate". Clinical Orthopaedics and Related Research (238): 122–30. doi: 10.1097/00003086-198901000-00019. PMID  2910593.
  17. ^ Walters, Johan; Schepherd-Wilson, William; Lyons, Timothy; Close, Roger (1990). "Femoral shaft fractures treated by Ender nails using a trochanteric approach". The Journal of Bone and Joint Surgery. 72 (1): 14–8. doi: 10.1302/0301-620X.72B1.2298773. PMID  2298773.
  18. ^ Dodenhoff, R. M.; Dainton, J. N.; Hutchins, P. M. (1997). "Proximal Thigh Pain after Femoral Nailing: Causes and Treatment". The Journal of Bone and Joint Surgery. 79 (5): 738–41. doi: 10.1302/0301-620X.79B5.7345. PMID  9331026.
  19. ^ JP, Carstensen; HH, Noer (1998). "[Medial migration of a Hansson hook-pin after femoral neck fracture]". Ugeskrift for Laeger. 160 (36). Ugeskr Laeger: 5200–5201. ISSN  0041-5782. PMID  9741281.
  20. ^ McMaster, Michael J. (1991). "Luque rod instrumentation in the treatment of adolescent idiopathic scoliosis. A comparative study with Harrington instrumentation". The Journal of Bone and Joint Surgery. 73 (6): 982–989. doi: 10.1302/0301-620X.73B6.1955449. PMID  1955449. S2CID  368244.
  21. ^ Dove, J (1986). "Internal fixation of the lumbar spine. The Hartshill rectangle". Clinical Orthopaedics and Related Research. 203 (203): 135–40. doi: 10.1097/00003086-198602000-00016. PMID  3955975.
  22. ^ Kocmond, JH; Delp, SL; Stern, SH (1995). "Stability and range of motion of Insall-Burstein condylar prostheses. A computer simulation study". The Journal of Arthroplasty. 10 (3): 383–8. doi: 10.1016/s0883-5403(05)80189-5. PMID  7673919.
  23. ^ "Interspinous Implant And Implantation Instrument". Freshpatents.com. Retrieved 2015-05-15.
  24. ^ Franssen, BBJM. "Kischner Wire". Retrieved 12 August 2012.[ unreliable medical source?]
  25. ^ Harrold, A J (1982). "Kuntscher's nails for femoral fractures". BMJ. 285 (6353): 1446. doi: 10.1136/bmj.285.6353.1446. PMC  1500600. PMID  6814595.
  26. ^ McMaster, Michael J. (1991). "Luque rod instrumentation in the treatment of adolescent idiopathic scoliosis. A comparative study with Harrington instrumentation". The Journal of Bone and Joint Surgery. 73 (6): 982–989. doi: 10.1302/0301-620X.73B6.1955449. PMID  1955449. S2CID  368244.
  27. ^ Kenesi, C; Tallineau, C (1992). "Shoulder prosthesis". Chirurgie; Mémoires de l'Académie de Chirurgie. 118 (3): 166–9, discussion 169–70. PMID  1339724.
  28. ^ Barry, M; Paterson, JM (2004). "A flexible intramedullary nails for fractures in children". The Journal of Bone and Joint Surgery. 86 (7): 947–53. doi: 10.1302/0301-620x.86b7.15273. PMID  15446515.
  29. ^ "Definition of Smith Pearson nail". Merriam Webster. Retrieved 12 August 2012.
  30. ^ Ikävalko, M.; Lehto, M. U. K.; Repo, A.; Kautiainen, H.; Hämäläinen, M. (2002). "The Souter-Strathclyde elbow arthroplasty". The Journal of Bone and Joint Surgery. 84 (1): 77–82. doi: 10.1302/0301-620X.84B1.11848. PMID  11838445. S2CID  22255058.
  31. ^ Temple, HT; Kruse, RW; Van Dam, BE (1994). "Lumbar and lumbosacral fusion using Steffee instrumentation". Spine. 19 (5): 537–41. doi: 10.1097/00007632-199403000-00008. PMID  8184347.
  32. ^ "Definition of Steinmann Pin". The Free Medical Dictionary. Farex.
  33. ^ van Cappelle, Henk G. J.; Deutman, Robert; van Horn, Jim R. (2001). "Use of the Swanson Silicone Trapezium Implant for Treatment of Primary Osteoarthritis : Long-Term Results". The Journal of Bone and Joint Surgery. 83-A (7): 999–1004. doi: 10.2106/00004623-200107000-00004. PMID  11451968. S2CID  8647605. Archived from the original on 2013-04-15.
  34. ^ Talwalkar, AK; Talwalkar, OA (1967). "Treatment of simple fractures of radius and ulna with internal fixation without external support". Singapore Medical Journal. 8 (3): 160–6. PMID  5587806.
  35. ^ Chan, RN; Hoskinson, J (1975). "Thompson prosthesis for fractured neck of femur. A comparison of surgical approaches". The Journal of Bone and Joint Surgery. 57 (4): 437–43. doi: 10.1302/0301-620X.57B4.437. PMID  1194309.
  36. ^ Borus T, Thornhill T (January 2008). "Unicompartmental knee arthroplasty". J Am Acad Orthop Surg. 16 (1): 9–18. doi: 10.5435/00124635-200801000-00003. PMID  18180388. S2CID  22536661.
  37. ^ Halder, SC (1992). "The Gamma nail for peritrochanteric fractures". The Journal of Bone and Joint Surgery. British Volume. 74 (3): 340–4. doi: 10.1302/0301-620X.74B3.1587873. PMID  1587873. S2CID  10704640.
  38. ^ "TRIGEN INTERTAN Intertrochanteric Antegrade Nail | Smith+Nephew - Corporate".
  39. ^ Li, Yixuan; Zhao, Sheng; Li, Sirong; Ge, Yuxiang; Wang, Rongliang; Zheng, Liming; Xu, Jiankun; Sun, Minghui; Jiang, Qing; Zhang, Yifeng; Wei, Hui (2019). "Surface Engineering of Biodegradable Magnesium Alloys for Enhanced Orthopedic Implants". Small. 15 (51): e1904486. doi: 10.1002/smll.201904486. PMID  31755651. S2CID  208227027.

Szczęsny, G., Kopec, M., Politis, D. J., Kowalewski, Z. L., Łazarski, A., & Szolc, T. "A Review on Biomaterials for Orthopaedic Surgery and Traumatology: From Past to Present". National Library of Medicine. Materials (Basel, Switzerland). Retrieved 23 April 2024.{{ cite web}}: CS1 maint: multiple names: authors list ( link)</ref>

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