Researching the recovery of locomotor activity after traumatic conditions of the lower limb

The ability of living organisms to navigate their environment is essential for survival. In scientific literature, this ability is known as locomotion, with walking being the primary mode of human movement. Our focus on the potential for independent movement within the environment arises from the hi...

وصف كامل

التفاصيل البيبلوغرافية
الحاوية / القاعدة:Journal of Biomedical & Clinical Research
المؤلفون الرئيسيون: Atanas Drumev, Danelina Vacheva
التنسيق: مقال
اللغة:الإنجليزية
منشور في: Medical University - Pleven 2025-02-01
الموضوعات:
الوصول للمادة أونلاين:https://jbcr.arphahub.com/article/139155/download/pdf/
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author Atanas Drumev
Danelina Vacheva
author_facet Atanas Drumev
Danelina Vacheva
author_sort Atanas Drumev
collection DOAJ
container_title Journal of Biomedical & Clinical Research
description The ability of living organisms to navigate their environment is essential for survival. In scientific literature, this ability is known as locomotion, with walking being the primary mode of human movement. Our focus on the potential for independent movement within the environment arises from the high incidence of lower limb injuries and the significant number of patients requiring assistive devices to improve their walking ability, which is why we are conducting this review. The gait cycle begins with the stance phase, marked by heel contact, and consists of five subphases: initial contact, loading response, mid-stance, terminal stance, and pre-swing. The subsequent swing phase includes three subphases: initial, mid, and terminal swing. Key characteristics for assessing gait parameters are categorised into spatial and temporal indicators. Spatial indicators include stride length, step length, stride width, and foot angle, while temporal indicators encompass stance and swing phases, cadence, stride and step time, single and double support time, and speed. Human gait analysis has been done using numerous research methods, with traditional approaches being semi-subjective. Recent technological advancements have led to devices for objective evaluation, classified into non-wearable and wearable sensors. Our research focused on gait parameters to monitor recovery in patients with lower limb injuries and evaluated the G-WALK model, a wearable inertial sensor device which effectively registers spatial and temporal gait parameters.Numerous unanswered questions about gait recovery after lower extremity trauma motivated this review.
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spelling doaj-art-d2fe4a67ddca40cfaa3469201f5291e62025-08-20T02:46:04ZengMedical University - PlevenJournal of Biomedical & Clinical Research1313-90532025-02-01181334610.3897/jbcr.e139155139155Researching the recovery of locomotor activity after traumatic conditions of the lower limbAtanas Drumev0Danelina Vacheva1Medical University of PlevenMedical University of PlevenThe ability of living organisms to navigate their environment is essential for survival. In scientific literature, this ability is known as locomotion, with walking being the primary mode of human movement. Our focus on the potential for independent movement within the environment arises from the high incidence of lower limb injuries and the significant number of patients requiring assistive devices to improve their walking ability, which is why we are conducting this review. The gait cycle begins with the stance phase, marked by heel contact, and consists of five subphases: initial contact, loading response, mid-stance, terminal stance, and pre-swing. The subsequent swing phase includes three subphases: initial, mid, and terminal swing. Key characteristics for assessing gait parameters are categorised into spatial and temporal indicators. Spatial indicators include stride length, step length, stride width, and foot angle, while temporal indicators encompass stance and swing phases, cadence, stride and step time, single and double support time, and speed. Human gait analysis has been done using numerous research methods, with traditional approaches being semi-subjective. Recent technological advancements have led to devices for objective evaluation, classified into non-wearable and wearable sensors. Our research focused on gait parameters to monitor recovery in patients with lower limb injuries and evaluated the G-WALK model, a wearable inertial sensor device which effectively registers spatial and temporal gait parameters.Numerous unanswered questions about gait recovery after lower extremity trauma motivated this review.https://jbcr.arphahub.com/article/139155/download/pdf/G-WALKgait cycleinjurytraumawalkingweara
spellingShingle Atanas Drumev
Danelina Vacheva
Researching the recovery of locomotor activity after traumatic conditions of the lower limb
G-WALK
gait cycle
injury
trauma
walking
weara
title Researching the recovery of locomotor activity after traumatic conditions of the lower limb
title_full Researching the recovery of locomotor activity after traumatic conditions of the lower limb
title_fullStr Researching the recovery of locomotor activity after traumatic conditions of the lower limb
title_full_unstemmed Researching the recovery of locomotor activity after traumatic conditions of the lower limb
title_short Researching the recovery of locomotor activity after traumatic conditions of the lower limb
title_sort researching the recovery of locomotor activity after traumatic conditions of the lower limb
topic G-WALK
gait cycle
injury
trauma
walking
weara
url https://jbcr.arphahub.com/article/139155/download/pdf/
work_keys_str_mv AT atanasdrumev researchingtherecoveryoflocomotoractivityaftertraumaticconditionsofthelowerlimb
AT danelinavacheva researchingtherecoveryoflocomotoractivityaftertraumaticconditionsofthelowerlimb