• 제목/요약/키워드: Motion kinematics

검색결과 544건 처리시간 0.023초

내로우 스쿼트 운동이 내반슬 성인의 무릎 사이 거리와 보행 시 무릎 관절의 생체역학에 미치는 즉각적인 영향 (The Immediately Effect of Narrow Squats on the Knee Joint Biomechanics During a Gait and Distance Between the Knees of Person With Genu-varum)

  • 한석규;김택훈;노정석;최흥식;이준영
    • 한국전문물리치료학회지
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    • 제25권3호
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    • pp.19-26
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    • 2018
  • Background: Genu varum is also known as bow leg. It is a deformity wherein there is lateral bowing of the legs at the knee. it does give rise to pain, and persistent bowing can often give rise to discomfort in knees, hips and ankles. Objects: This study investigated the effect of narrow squats on the knee joint during a gait and distance between the knees of person with genu varum. Methods: This study analyzed 23 patient with genu varum that grade III, 12 narrow squat group and 11 genenal squat group in motion analysis laboratory. The subjects of experiment took gait before and after intervention, the range of joint motion, moment of knee joint adduction, power, distance of the knees were measured. And in order to make an analysis between groups, an paiered t-test and independent t-test was carried out. For statistical significance testing, it was decided that significance level ${\alpha}$ be .05. Results: It was shown that the group of narrow squat exercise significantly decreased in distance of knees (p<.05),In moment of adduction of knee joint, it was shown to significantly decrease in two groups (p<.05), was significantly decreased in adduction, abduction, and rotation (p<.05). In relation of peak-knee adduction moment and valgus angle, there was significant decrease in narrow squat group (p<.05). Conclusion: When the above result of study were examined, a narrow squat exercise given to the genu varum patients significantly decreased the distance between the knees, range of knee adduction and abduction, knee adduction moment, knee power. And stability gains through the decrease of excursion of knee medial part be effective for the correction of genu varum deformation.

가상 환경에서의 손동작을 사용한 물체 조작에 대한 시각적 피드백 시스템 (Visual Feedback System for Manipulating Objects Using Hand Motions in Virtual Reality Environment)

  • 서웅;권상모;임인성
    • 한국컴퓨터그래픽스학회논문지
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    • 제26권3호
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    • pp.9-19
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    • 2020
  • 최근 다양한 종류의 가상 현실 기기가 개발되면서 고전적인 사용자 입력 방식 이외에도 사용자의 신체 동작을 인식하여 현실감을 높이려는 기술에 관한 연구가 활발하게 진행되고 있다. 이러한 장치 중의 하나인 립모션 컨트롤러는 사용자의 손동작을 인식하여 가상 현실 환경에서 사용자의 손 모양을 실시간으로 나타낼 수 있다. 하지만 인식한 사용자의 손을 사용하여 가상 현실의 물체를 조작하면 종종 손이 물체를 통과하게 되는데, 이러한 상호작용은 실제 현실과는 거리감이 있다. 본 연구에서는 가상 현실에서 사용자의 손과 물체 간의 상호작용 현실감을 높이기 위한 시각적 피드백 시스템의 구축 방법을 제시한다. 가상의 현실에서 사용자의 손과 가상 물체가 충돌하는지 광선 추적법을 활용하여 정밀하게 검사하고, 충돌하였을 때 부호 거리 장과 역기구학을 통해 물체 내부로 들어간 사용자의 손가락 말단의 위치를 물체 표면 밖으로 이동시켜 사용자의 손을 재구성하는 과정을 통해 시각적 피드백을 준다. 이를 통해 실시간으로 가상 현실에서 현실감 있는 상호작용을 할 수 있다.

파킨슨병 환자의 상지 스윙의 비대칭과 청각신호에 따른 보행 시 진폭에 미치는 영향 (Arm Swing Asymmetry and Effect of Auditory Cues on Amplitude in the Patients with Parkinson's Disease)

  • 손호희;김은정
    • 한국산학기술학회논문지
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    • 제14권1호
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    • pp.344-350
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    • 2013
  • 본 연구의 목적은 파킨슨병 환자의 청각 신호에 따른 보행 시, 상지 스윙의 비대칭과 진폭에 미치는 영향을 알아보기 위함이다. 연구의 대상자는 초기 파킨슨병으로 진단받은 14명의 환자로, 청각 신호(빠른 속도, 일반적인 속도, 느린 속도)를 무작위 순서로 제공하여 보행을 실시하였다. 청각 신호 속도는 전자 메트로놈을 이용하여 대상자의 자연스러운 보행 속도보다 ${\pm}20%$ 속도를 적용하였다. 각각의 속도에 따른 청각 신호를 적용한 보행을 실시하는 동안, 동작분석기를 사용하여 보행 시 상지 스윙의 운동학적 변수를 비교 분석하였다. 정상 속도의 보행 시 파킨슨병 환자의 양측 상지 스윙 진폭의 비교에서는 더 많은 영향을 받은 쪽(MAS)의 상지 스윙 진폭에서 유의한 감소가 나타났다(p<.05). 청각 신호 속도에 따른 보행 시의 비교에서는 빠른 속도의 청각 신호를 적용한 보행 시 상지 스윙의 유의한 증가가 나타났다(p<.05). 본 연구의 결과를 통해 파킨슨 환자의 보행 시 양측 상지 스윙의 비대칭을 확인할 수 있었으며 또한 보행 시 빠른 청각 신호를 적용하는 경우, 파킨슨병 환자의 상지 스윙을 증가시켜 자연스러운 보행양상을 유도할 수 있으므로 중재 시 필요에 따라 적절한 속도의 청각 신호를 적용하여 보행훈련에 적용할 수 있을 것으로 생각된다.

케틀벨 스윙 시 적당한 케틀벨의 무게는 얼마일까? (What is the Appropriate Kettlebell Mass for a Kettlebell Swing?)

  • Kim, Bo Kyeong;Thau, Dao Van;Yoon, Sukhoon
    • 한국운동역학회지
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    • 제31권4호
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    • pp.308-313
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    • 2021
  • Objective: The purpose of this study was to investigate the effect of different kettlebell mass (30%, 40%, and 50% of the body mass) on kinematics and kinetic variables of kettlebell swing. Method: Total of 16 healthy male who had at least 1 year of kettlebell training experience were participated in this study (age: 31.69 ± 3.46 yrd., height: 173.38 ± 4.84 cm, body mass: 74.53 ± 6.45 kg). In this study, a 13-segments whole-body model (upper trunk, lower trunk, pelvis, both side of forearm, upperarm, thigh, and shank) was used and 26 reflective markers were attached to the body to identify the segments during the movement. A 3-dimensional motion analysis with 8 infrared cameras and 4 channeled EMG was performed to find the effect of kettlebell mass on its swing. To verify the kettlebell mass effect, a one-way ANOVA with a repeated measure was used and the statistical significance level was set at 𝛼=.05. Results: Firstly, in all lower extremity joints and thoracic vertebrae, a statistically significant change in angle was shown according to an increase in kettlebell mass during kettlebell swing (p<.05). Secondly, in both the up-swing and down-swing phases, the knee joint and ankle joint ROM showed a statistically significant increase as the kettlebell mass increased (p<.05) but no statistically significant difference was found in the hip joint and thoracic spine (p>.05). Lastly, the hamstrings muscle activity was statistically significantly increased as the kettlebell mass increased during up-swing phases (p<.05). Also, as the kettlebell mass increased in P4 of the down swing phase, the gluteus maximus showed a statistically significantly increased muscle activation, whereas the rectus femoris showed a statistically significantly decreased muscle activation (p <.05). Conclusion: As a result of this study, hip extension decreased and knee extension increased at 40% and 50% of body mass, and the spine also failed to maintain neutrality and increased flexion. Also, when kettlebell swings are performed with 50% of body mass, synergistic muscle dominance appears over 30% and 40% of body mass, which is judged to have a risk of potential injury. Therefore, it is thought that for beginners who start kettlebell exercise, swing practice should be performed with 30% of body mass. In addition, even in the case of experienced seniors, as the weight increases, the potential injury risk may increase, so it is thought that caution should be exercised when performing swings with 40% and 50% of body mass. In conclusion, it is thought that increasing the weight after sufficiently training with 30% of the weight of all subjects performing kettlebell swing is a way to maximize the exercise effect as well as prevent injury.

재활운동 프로그램에 참가한 엉덩인공관절 수술자의 하지근력 변화에 대한 비교연구 (Lower Limbs Muscle Comparative Research for Verification Effect of Rehabilitation Training Program of Total Hip Arthroplasty)

  • 진영완
    • 생명과학회지
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    • 제20권4호
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    • pp.543-548
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    • 2010
  • 엉덩인공관절 수술 후 지속적으로 재활운동에 참가한 사람들을 대상으로 6개월 지난 시점과 12개월 지난 시점에서 하지근력 테스트와 지면반력 실험을 통하여 재활훈련의 효과를 비교하고 검증하였다. 엉덩관절이 $150^{\circ}$에서 $90^{\circ}$까지 굴곡하는 동안 대퇴직근의 변화를 비교해 본 결과 통계적으로는 유의한 차이(p<0.05)가 나타나지 않았으나 평균의 비교에서 약간의 차이가 있었다. 장요근 평균의 비교에서도 통계적으로 유의한 차이(p<0.05)는 나타나지 않았으나 평균의 비교에서 모든 구간에서 재활훈련기간이 길어질수록 더욱더 큰 값을 나타내고 있는 것으로 보아 굴곡과 신전에 관계하는 근력들이 체계적인 재활훈련을 받을 경우 더욱더 좋아지는 것으로 나타났다. 엉덩관절이 $0^{\circ}$에서 $45^{\circ}$까지 외전하는 동안 중둔근의 변화는 통계적으로 유의한 차이(p<0.05)는 없었으나 재활훈련에 꾸준히 12개월 동안 참가한 수술자가 6개월 재활훈련에 참가한 수술자들보다 외전동작 값이 훨씬 크게 나타났다. 소둔근의 근력변화는 중둔근 보다 외전각도가 $45^{\circ}$각도로 커지면서 12개월 재활훈련에 참가한 수술자의 근력값($0.37{\pm}0.08$)이 6개월 재활훈련 참가자 근력값($0.21{\pm}0.05$) 보다 훨씬 커지는 것으로 나타났다. 무릎관절의 모멘트 값은 통계적으로 유의한 차이(p<0.05)는 없었으나 평균의 비교에서 한 계단을 오르는 동안 시간의 경과에 따라 재활훈련이 길수록 무릎을 펴는 모멘트의 값이 더욱더 크게 증가하는 것으로 나타났다. 엉덩인공관절 수술 후 6개월 재활훈련 참가자와 12개월 재활훈련 참가자 모두 세 가지 지면반력(Fx anterior/posterior force, Fy medio/lateral force, Fz vertical force)의 형태는 통계적으로 유의한 차이는 나타나지 않았으나, 좌우면의 힘(Fy)은 6개월 재활훈련 참가자($109{\pm}45N$)가 12월 재활훈련 참가자($105{\pm}28N$)보다 큰 값을 보이고 있고, 전후면의 힘(Fx) 값은 6개월 재활훈련참가자($-107{\pm}21N$) 보다 12개월 재활훈련 참가자($-175{\pm}33N$)가 큰 값으로 나타났다.

시각 정보의 차단이 드롭랜딩 시 착지 전략에 미치는 영향 (Effects of Visual Information Blockage on Landing Strategy during Drop Landing)

  • 고영철;조준행;문곤성;이해동;이성철
    • 한국운동역학회지
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    • 제21권1호
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    • pp.31-38
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    • 2011
  • This study aimed to determine the effects of the blockage of visual feedback on joint dynamics of the lower extremity. Fifteen healthy male subjects(age: $24.1{\pm}2.3\;yr$, height: $178.7{\pm}5.2\;cm$, weight: $73.6{\pm}6.6\;kg$) participated in this study. Each subject performed single-legged landing from a 45 cm-platform with the eyes open or closed. During the landing performance, three-dimensional kinematics of the lower extremity and ground reaction force(GRF) were recorded using a 8 infrared camera motion analysis system (Vicon MX-F20, Oxford Metric Ltd, Oxford, UK) with a force platform(ORG-6, AMTI, Watertown, MA). The results showed that at 50 ms prior to foot contact and at the time of foot contact, ankle plantar-flexion angle was smaller(p<.05) but the knee joint valgus and the hip flexion angles were greater with the eyes closed as compared to with the eyes open(p<.05). An increase in anterior GRF was observed during single-legged landing with the eyes closed as compared to with the eyes open(p<.05). Time to peak GRF in the medial, vertical and posterior directions occurred significantly earlier when the eyes were closed as compared to when the eyes were open(p<.05). Landing with the eyes closed resulted in a higher peak vertical loading rate(p<.05). In addition, the shock-absorbing power decreased at the ankle joint(p<.05) but increased at the hip joints when landing with the eyes closed(p<.05). When the eyes were closed, landing could be characterized by a less plantarflexed ankle joint and more flexed hip joint, with a faster time to peak GRF. These results imply that subjects are able to adapt the control of landing to different feedback conditions. Therefore, we suggest that training programs be introduced to reduce these injury risk factors.

3차원적 동작 분석기를 이용한 건강한 여자 노인의 하지 정렬 상태와 슬관절 내전 모멘트의 상관 관계에 관한 연구 (3-Dimensional Gait analysis and the relationship between lower limb alignment and knee adduction moment in elderly healthy women)

  • 조유미;이완희
    • 대한물리치료과학회지
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    • 제10권1호
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    • pp.90-101
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    • 2003
  • Gait analysis can provide a better understanding of how the alignment of the lower limb and foot can contribute to force observed at the knee. Anatomic and mechanical factors that affect loading in the knee pint can contribute to pathologic change seen at the knee in degenerative pint disease and should be considered in treatment plan. The purpose of this study is to present the gait analysis data and to determine whether there is any relationships between alignment of the lower limb, foot progression angle and knee pint moments in elderly healthy women with 3-dimensional motion analyzer. The results were as follows; 1. Cadence showed 114.8 steps/min, gait speed showed 1.05 m/s, time per a stride showed 1.06 sec, time per a step showed 0.53 sec, single-supporting phase was 0.41 sec, double-supporting phase was 0.24 sec, stride length was 1.04 m, Step length was 0.56 m. 2. According to the parameters of kinematics, the maximal knee flexion angle through swing phase showed left $46.82^{\circ}$, right $40.19^{\circ}$ and the maximal knee extension angle showed left $-1.32^{\circ}$, right $2.01^{\circ}$. knee varus showed left $26.90^{\circ}$, right $30.93^{\circ}$. 3. Moment, one of kinetic parameters of knee pint the maximal flexion moment showed left 0.363. Nm/kg, right 0.464 Nm/kg and maximal extension moment showed left 0.389 Nm/kg, right 0.463 Nm/kg. The maximal. adduction moment showed left 0.332 Nm/kg, right 0.379 Nm/kg and the maximal internal rotatory moment showed left 0.13 Nm/kg, right 0.140 Nm/kg. 4. On sagittal plane, the maximal power of knee joint showed left 0.571 J/kg, right 0.629 J/kg. On coronal plane, the maximal power of knee joint showed left 0.11 J/kg, right 0.12 J/kg. On transverse plane, the maximal power of knee joint showed left 0.058 J/kg, right 0.072 J/kg. 5. The subject who had varus alignment of the lower extremity had statistically higher in knee adduction moment in mid stance phase. 6. The subject who had large foot progression angle had statistically lower in knee adduction moment in late stance phase. A relationship was observed between the alignment of the lower extremity and the adduction moment of the knee joint during stance phase. Hence, we need some research to figure, out the change of adduction moment according to the sort of knee joint osteoarthritis and the normal geriatrics as well. And we also require more effective, specific therapeutic program by making use of those background of researches.

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하지 근육의 피로상태 동안 높은 굽 신발에 적용한 전면접촉인솔이 젊은 여성의 보행 특성에 미치는 영향 (The Effect of High-Heeled Shoes With Total Contact Inserts in the Gait Characteristics of Young Female Adults During Lower Extremity Muscle Fatigue)

  • 고은혜;최흥식;김택훈;신헌석;권오윤;최규환
    • 한국전문물리치료학회지
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    • 제15권1호
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    • pp.38-45
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    • 2008
  • This study investigated gait characteristics, kinematics, and kinetics in the lower extremities between two different shoe conditions (high heeled shoes (7 cm), and high heeled shoes with a total contact insert (TCI)) after lower extremity muscle fatigue. Although TCI shave been applied in high heeled shoes to increase comfort and to decrease foot pressure, no study has attempted to identify the effects of TCI in fatigue conditions. The purpose of this study was to determine the effects of walking in high heeled shoes with TCI after lower extremity muscle fatigue was induced. This study was carried out in a motion analysis laboratory at Hanseo University. A volunteer sample of 14 healthy female subjects participated. All in fatigue conditions, the subjects were divided into two groups. The muscle fatigue was induced by 40 voluntary dorsi- and plantar-flexion exercises and 40 heel-rise exercises of the dominant foot. Surface electromyography was used to confirm the localized muscle fatigue using power spectral analysis of three muscles (tibialis anterior, gastrocnemius medialis and lateralis). The results were as follows: (1) In muscle fatigue conditions, the use of TCI decreased the peak flexion angle of the hip joint significantly in the early stance phase (p<.05) and increased the peak hip flexion moment in the terminal stance phase (p<.05). (2) In muscle fatigue conditions, the application of TCI also increased peak hip power generation in the early stance phase and peak hip power absorption in the terminal stance phase (p<.05). (3) In muscle fatigue conditions, the use of TCI reduced the impact force significantly and increased the secondary peak vertical GRF. These findings suggest that the TCI may provide beneficial effects when muscle fatigue occurs for a high heeled shoe gait. Future research employing the patient population and various types of TCI materials are required to clarify the effects of TCI.

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아동의 복합운동이 착지 시 하지 손상요인에 미치는 영향 (Effects of Combined Exercise on Injury Risk Factors of Lower Extremity during Landing)

  • 하성희;류시현;김주년;길호종;류지선;윤석훈;박상균
    • 한국운동역학회지
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    • 제24권2호
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    • pp.173-180
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    • 2014
  • The purpose of this study was to investigate the effect of combined exercise on injury risk factors of lower extremity during landing. Ten sports talented athletes participated in this study. Sports talented athletes participated in a combined exercise (sports talented exercise, coordination) for 16 weeks. A three-dimensional motion analysis was performed using eight infrared cameras (sampling rate of 100 Hz), one force plate, and electromyography system (sampling rate of 1000 Hz) during landing. Kinetic, and kinematics analysis including average impulsive force, angle of lower extremity, vertical stiffness, onset of muscle activation were calculated by Matlab2009a software. Paired t-test was performed at alpha=.05. The average impulsive force in landing phase was not statistically significant (t=-.748, p=.474). The hip joint angle was more decreased in post test compared to pre test (E1: t=2.682, p=.025, E2: t=5.609, p=.000, E3: t=2.538, p=.032). The knee joint (E1: t=-.343, p=.739, E2: t=1.319, p=.220, E3: t=.589, p=.570) and ankle joint (E1: t=.081, p=.937, E2: t=.784, p=.453, E3: t=.392, p=.704) angle were tended to decrease after combined exercise. The vertical stiffness was tended to decrease after combined exercise (t=1.972, p=.080). Onset of quadriceps femoris (t=.698, p=.503) and medial gastocnemius (t=1.858, p=.096) were tended to be faster than biceps femoris (t=-.333, p=.747) after combined exercise. Although thses findings were not statistically significant except on a hip joint angle, risk factors of lower extremity such as joint angle, vertical stiffness and onset of quadriceps femoris, medial gastrocnemius were positively changed after the combined exercise but an additional training for improved onset of biceps femoris would be required in the future.

낙하 착지 시 FRT가 하지의 관절의 시상각과 강직도에 미치는 효과 (The Effects of Fibular Repositioning Taping on Joint Angle and Joint Stiffness of the Lower Extremity in Sagittal Plane during a Drop Landing)

  • Jun, Hyung-pil
    • 한국운동역학회지
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    • 제31권4호
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    • pp.276-282
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    • 2021
  • Objective: To investigate effects of Fibular Repositioning Taping (FRT) on lower extremity joint stiffness and angle during drop-landing. Method: Twenty-eight participants (14 healthy, 14 with chronic ankle instability [CAI]) performed drop-landings from a 60 cm box; three were performed prior to tape application and three were performed post-FRT. Three-dimensional kinematic and kinetic data were collected using an infrared optical camera system (Vicon Motion Systems Ltd. Oxford, UK) and force-plate (AMTI, Watertown, MA). Joint stiffness and sagittal angle of the ankle, knee, and hip were analyzed. Results: The hip [Healthy: p<.05; M ± SD: 29.43 ± 11.27 (pre), 33.04 ± 12.03 (post); CAI: p<.05; M ± SD: 31.45 ± 9.70 (pre), 32.29 ± 9.85 (post)] and knee [Healthy: p<.05; M ± SD: 53.44 ± 8.09 (pre), 55.13 ± 8.36 (post); CAI: p<.05; M ± SD: 53.12 ± 8.35 (pre), 55.55 ± 9.81 (post)] joints demonstrated significant increases in sagittal angle after FRT. A significant decrease in joint angle was found at the ankle [Healthy: p<.05; M ± SD: 56.10 ± 3.71 (pre), 54.09 ± 4.31 (post); CAI: p<.05; M ± SD: 52.80 ± 6.04 (pre), 49.86 ± 10.08 (post)]. A significant decrease in hip [Healthy: p<.05; M ± SD: 1549.16 ± 517.53 (pre), 1272.48 ± 646.73 (post); CAI: p<.05; M ± SD: 1300.42 ± 595.55 (pre), 1158.27 ± 550.58 (post)] and knee [Healthy: p<.05; M ± SD: 270.12 ± 54.07 (pre), 239.13 ± 64.70 (post); CAI: p<.05; M ± SD: 241.58 ± 93.48 (pre), 214.63 ± 101.00 (post)] joint stiffness was found post-FRT application, while no difference was found at the ankle [Healthy: p>.05; M ± SD: 57.29 ± 17.04 (pre), 59.37 ± 18.30 (post); CAI: p>.05; M ± SD: 69.15 ± 17.63 (pre), 77.24 ± 35.05 (post)]. Conclusion FRT application decreased joint angle at the ankle without altering ankle joint stiffness. In contrast, decreased joint stiffness and increased joint angle was found at the hip and knee following FRT. Thus, participants utilize an altered shock absorption mechanism during drop-landings following FRT. When compared to previous research, the joint kinematics and stiffness of the lower extremity appear to be different following FRT versus traditional ankle taping.