Failure of the Femoral and Tibial Components Following Anterior Cruciate Ligament Injury After Robotic-Assisted Bicruciate-Retaining Total Knee Arthroplasty

We report a case of failure of the femoral and tibial components due to anterior cruciate ligament (ACL) injury after robotic-assisted bicruciate-retaining total knee arthroplasty. A 70-year-old woman with osteoarthritis underwent robotic-assisted bicruciate-retaining total knee arthroplasty. At 8 m...

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Main Authors: Kosuke Shiga, MD, Takao Kaneko, MD, PhD, Ayakane Yamamoto, MD, Kazuki Amemiya, PT, Masaru Omata, PT
Format: Article
Language:English
Published: Elsevier 2024-12-01
Series:Arthroplasty Today
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Online Access:http://www.sciencedirect.com/science/article/pii/S2352344124002085
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author Kosuke Shiga, MD
Takao Kaneko, MD, PhD
Ayakane Yamamoto, MD
Kazuki Amemiya, PT
Masaru Omata, PT
author_facet Kosuke Shiga, MD
Takao Kaneko, MD, PhD
Ayakane Yamamoto, MD
Kazuki Amemiya, PT
Masaru Omata, PT
author_sort Kosuke Shiga, MD
collection DOAJ
description We report a case of failure of the femoral and tibial components due to anterior cruciate ligament (ACL) injury after robotic-assisted bicruciate-retaining total knee arthroplasty. A 70-year-old woman with osteoarthritis underwent robotic-assisted bicruciate-retaining total knee arthroplasty. At 8 months after surgery, persistent knee pain and swelling of the knee joint were noted after fall in knee. We diagnosed a failure between the femoral and tibial components following an ACL injury. Proximal ACL injury and spin out of ultra-high molecular weight polyethylene were confirmed. We selected a constrained condylar knee prosthesis due to large bone attribution after femoral and tibial component removal. Postoperative three-dimensional computed tomography images suggested that excessive internal rotational alignment of the tibial component caused stress on the ACL.
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issn 2352-3441
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series Arthroplasty Today
spelling doaj-art-44dbcda489f24660bfb521b9ddc01f492025-08-20T01:58:31ZengElsevierArthroplasty Today2352-34412024-12-013010152310.1016/j.artd.2024.101523Failure of the Femoral and Tibial Components Following Anterior Cruciate Ligament Injury After Robotic-Assisted Bicruciate-Retaining Total Knee ArthroplastyKosuke Shiga, MD0Takao Kaneko, MD, PhD1Ayakane Yamamoto, MD2Kazuki Amemiya, PT3Masaru Omata, PT4Ichinomiya Onsen Hospital, Adult Reconstruction Center, Fuefuki-city, Yamanashi, JapanIchinomiya Onsen Hospital, Adult Reconstruction Center, Fuefuki-city, Yamanashi, Japan; Corresponding author. Ichinomiya Onsen Hot Hospital, Adult Reconstruction Center, 1745 Tsuboi, Ichinomiyacho, Fuefuki-city, Yamanashi 405-0077, Japan. Tel.: +81 553 47 3131.Ichinomiya Onsen Hospital, Adult Reconstruction Center, Fuefuki-city, Yamanashi, JapanDepartment of Rehabilitation, Ichinomiya Onsen Hospital, Fuefuki-city, Yamanashi, JapanDepartment of Rehabilitation, Ichinomiya Onsen Hospital, Fuefuki-city, Yamanashi, JapanWe report a case of failure of the femoral and tibial components due to anterior cruciate ligament (ACL) injury after robotic-assisted bicruciate-retaining total knee arthroplasty. A 70-year-old woman with osteoarthritis underwent robotic-assisted bicruciate-retaining total knee arthroplasty. At 8 months after surgery, persistent knee pain and swelling of the knee joint were noted after fall in knee. We diagnosed a failure between the femoral and tibial components following an ACL injury. Proximal ACL injury and spin out of ultra-high molecular weight polyethylene were confirmed. We selected a constrained condylar knee prosthesis due to large bone attribution after femoral and tibial component removal. Postoperative three-dimensional computed tomography images suggested that excessive internal rotational alignment of the tibial component caused stress on the ACL.http://www.sciencedirect.com/science/article/pii/S2352344124002085Robotic-assisted bi-cruciate retaining total knee arthroplastyThree-dimensional computed tomographyBreakageAnterior cruciate ligamentUltra-high molecular weight polyethylene
spellingShingle Kosuke Shiga, MD
Takao Kaneko, MD, PhD
Ayakane Yamamoto, MD
Kazuki Amemiya, PT
Masaru Omata, PT
Failure of the Femoral and Tibial Components Following Anterior Cruciate Ligament Injury After Robotic-Assisted Bicruciate-Retaining Total Knee Arthroplasty
Arthroplasty Today
Robotic-assisted bi-cruciate retaining total knee arthroplasty
Three-dimensional computed tomography
Breakage
Anterior cruciate ligament
Ultra-high molecular weight polyethylene
title Failure of the Femoral and Tibial Components Following Anterior Cruciate Ligament Injury After Robotic-Assisted Bicruciate-Retaining Total Knee Arthroplasty
title_full Failure of the Femoral and Tibial Components Following Anterior Cruciate Ligament Injury After Robotic-Assisted Bicruciate-Retaining Total Knee Arthroplasty
title_fullStr Failure of the Femoral and Tibial Components Following Anterior Cruciate Ligament Injury After Robotic-Assisted Bicruciate-Retaining Total Knee Arthroplasty
title_full_unstemmed Failure of the Femoral and Tibial Components Following Anterior Cruciate Ligament Injury After Robotic-Assisted Bicruciate-Retaining Total Knee Arthroplasty
title_short Failure of the Femoral and Tibial Components Following Anterior Cruciate Ligament Injury After Robotic-Assisted Bicruciate-Retaining Total Knee Arthroplasty
title_sort failure of the femoral and tibial components following anterior cruciate ligament injury after robotic assisted bicruciate retaining total knee arthroplasty
topic Robotic-assisted bi-cruciate retaining total knee arthroplasty
Three-dimensional computed tomography
Breakage
Anterior cruciate ligament
Ultra-high molecular weight polyethylene
url http://www.sciencedirect.com/science/article/pii/S2352344124002085
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