Joint Coordination and Stiffness During Landing in Individuals With Chronic Ankle Instability. 2021

Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
Texas State University.

The purpose of the present study was to examine the effect of chronic ankle instability (CAI) on lower-extremity joint coordination and stiffness during landing. A total of 21 female participants with CAI and 21 pair-matched healthy controls participated in the study. Lower-extremity joint kinematics were collected using a 7-camera motion capture system, and ground reaction forces were collected using 2 force plates during drop landings. Coupling angles were computed based on the vector coding method to assess joint coordination. Coupling angles were compared between the CAI and control groups using circular Watson-Williams tests. Joint stiffness was compared between the groups using independent t tests. Participants with CAI exhibited strategies involving altered joint coordination including a knee flexion dominant pattern during 30% and 70% of their landing phase and a more in-phase motion pattern between the knee and hip joints during 30% and 40% and 90% and 100% of the landing phase. In addition, increased ankle inversion and knee flexion stiffness were observed in the CAI group. These altered joint coordination and stiffness could be considered as a protective strategy utilized to effectively absorb energy, stabilize the body and ankle, and prevent excessive ankle inversion. However, this strategy could result in greater mechanical demands on the knee joint.

UI MeSH Term Description Entries
D007593 Joint Instability Lack of stability of a joint or joint prosthesis. Hypermobility, Joint,Instability, Joint,Laxity, Joint,Hypermobilities, Joint,Instabilities, Joint,Joint Hypermobilities,Joint Hypermobility,Joint Instabilities,Joint Laxities,Joint Laxity,Laxities, Joint
D007719 Knee Joint A synovial hinge connection formed between the bones of the FEMUR; TIBIA; and PATELLA. Superior Tibiofibular Joint,Joint, Knee,Joint, Superior Tibiofibular,Knee Joints,Superior Tibiofibular Joints,Tibiofibular Joint, Superior
D005260 Female Females
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000842 Ankle The region of the lower limb between the FOOT and the LEG. Tarsus,Regio tarsalis,Ankles
D000843 Ankle Joint The joint that is formed by the inferior articular and malleolar articular surfaces of the TIBIA; the malleolar articular surface of the FIBULA; and the medial malleolar, lateral malleolar, and superior surfaces of the TALUS. Ankle Syndesmosis,Articulatio talocruralis,Distal Tibiofibular Joint,Inferior Tibiofibular Joint,Talocrural Joint,Tibiofibular Ankle Syndesmosis,Tibiofibular Syndesmosis,Ankle Joints,Ankle Syndesmoses,Ankle Syndesmosis, Tibiofibular,Distal Tibiofibular Joints,Inferior Tibiofibular Joints,Joint, Ankle,Joints, Ankle,Syndesmosis, Ankle,Talocrural Joints,Tibiofibular Ankle Syndesmoses,Tibiofibular Joint, Distal,Tibiofibular Syndesmoses
D001696 Biomechanical Phenomena The properties, processes, and behavior of biological systems under the action of mechanical forces. Biomechanics,Kinematics,Biomechanic Phenomena,Mechanobiological Phenomena,Biomechanic,Biomechanic Phenomenas,Phenomena, Biomechanic,Phenomena, Biomechanical,Phenomena, Mechanobiological,Phenomenas, Biomechanic
D016059 Range of Motion, Articular The distance and direction to which a bone joint can be extended. Range of motion is a function of the condition of the joints, muscles, and connective tissues involved. Joint flexibility can be improved through appropriate MUSCLE STRETCHING EXERCISES. Passive Range of Motion,Joint Flexibility,Joint Range of Motion,Range of Motion,Flexibility, Joint

Related Publications

Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
March 2017, Gait & posture,
Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
July 2021, Journal of science and medicine in sport,
Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
January 2014, Computer methods in biomechanics and biomedical engineering,
Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
April 2024, Clinical biomechanics (Bristol, Avon),
Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
November 2023, Journal of athletic training,
Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
February 2020, Journal of sport rehabilitation,
Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
May 2020, Journal of science and medicine in sport,
Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
November 2022, Bioengineering (Basel, Switzerland),
Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
October 2022, Gait & posture,
Yumeng Li, and Jupil Ko, and Marika A Walker, and Cathleen N Brown, and Kathy J Simpson
March 2020, Journal of sport rehabilitation,
Copied contents to your clipboard!