Background:: A transfemoral amputee's functional level can be classified from K-level 0 (lowest) to K-level 4 (highest). Knowledge of the biomechanical differences between K3 and K4 transfemoral amputation could help inform clinical professionals and researchers in amputee care and gait assessment.
Objectives:: Explore gait differences between K3- and K4-level transfemoral amputation across different surface conditions.
Study Design:: Cross-sectional study.
Methods:: Four K3 and six K4 transfemoral amputation and 10 matched able-bodied individuals walked in a virtual environment with simulated level and non-level surfaces on a self-paced treadmill. Stability measures included medial-lateral margin of stability, step parameters, and gait variability (standard deviations for speed, temporal-spatial parameters, root-mean-square of medial-lateral trunk acceleration).
Results:: K3 walked slower than K4 with wider steps, greater root-mean-square of medial-lateral trunk acceleration, and greater medial-lateral margin of stability standard deviations, indicating their stability was further challenged. K3 participants had greater asymmetry in double support time and trunk acceleration root-mean-square in the medial-lateral direction, but similar asymmetry overall. K3 participants had larger differences from AB and in more parameters than K4, although K4 differed from AB in trunk acceleration root-mean-square in the medial-lateral direction, walking speed, and double support time standard deviations.
Conclusion:: The findings improve our understanding of K3 and K4 transfemoral amputation gait on slopes and simulated uneven surfaces.
Clinical Relevance: High performing and community ambulatory transfemoral amputees cannot match the ambulatory abilities of ablebodied individuals. Understanding gait differences between these groups under conditions that challenge balance is required to develop rehabilitation protocols and prosthetic componentry targeted at improving transfemoral amputee gait and overall mobility in their chosen environment.
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http://dx.doi.org/10.1177/0309364618785724 | DOI Listing |
Prosthet Orthot Int
January 2025
Musculoskeletal Research Unit, University Center for Assistance, Teaching and Research, University of Gran Rosario, Rosario, Argentina.
Rehabilitation is often complex for persons with transfemoral amputation, and poor socket fit is one of the main factors affecting gait re-education, rehabilitation, and quality of life. The present study systematically reviewed the literature to test whether the subischial socket provides better outcomes in comfort, quality of life, and mobility than other transfemoral sockets. Systematic review and meta-analysis.
View Article and Find Full Text PDFProsthet Orthot Int
January 2025
Department of Physical Therapy, University of Miami Miller School of Medicine, Coral Gables, FL, USA.
Background: Walking speed is a measure of functional mobility that is relatively easy to quantify. In people with lower limb amputation, reduced walking speed has been linked with specific atypical spatiotemporal gait parameters. However, the influence of atypical spatiotemporal gait parameters on the walking speed of people with unilateral transtibial amputation (TTA) and transfemoral amputation (TFA) remains unclear.
View Article and Find Full Text PDFMedicina (Kaunas)
December 2024
Department of Diabetes, Nutrition and Metabolic Diseases, "Prof. Dr. Nicolae Paulescu" National Institute for Diabetes, Nutrition and Metabolic Diseases, 030167 Bucuresti, Romania.
: Lower extremity amputations (LEAs) represent a significant health problem. The aim of our study was to analyse the type and trends of diabetes-related LEAs in patients hospitalized in one surgical centre in Bucharest between 2018 and 2021. The second aim was to assess the impact of the COVID-19 pandemic on the trends of LEAs.
View Article and Find Full Text PDFClin Orthop Relat Res
December 2024
Department of Orthopedics, University of Colorado School of Medicine, Aurora, CO, USA.
Nat Commun
December 2024
Department of Advanced Manufacturing and Robotics, College of Engineering, Peking University, Beijing, China.
Prosthetic knees represent a prevalent solution for above-knee amputation rehabilitation. However, satisfying the ambulation requirements of users while achieving their comfort needs in terms of lightweight, bionic, shock-absorbing, and user-centric, remains out of reach. Soft materials seem to provide alternative solutions as their properties are conducive to the comfort aspect.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!