リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

リケラボ 全国の大学リポジトリにある学位論文・教授論文を一括検索するならリケラボ論文検索大学・研究所にある論文を検索できる

リケラボ 全国の大学リポジトリにある学位論文・教授論文を一括検索するならリケラボ論文検索大学・研究所にある論文を検索できる

大学・研究所にある論文を検索できる 「Effects of limited previously acquired information about falling height on lower limb biomechanics when individuals are landing with limited visual input」の論文概要。リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

コピーが完了しました

URLをコピーしました

論文の公開元へ論文の公開元へ
書き出し

Effects of limited previously acquired information about falling height on lower limb biomechanics when individuals are landing with limited visual input

阿部 巧 広島大学

2022.08.29

概要

Background:
Inhibitions in the acquisition of accurate information about the environment can affect control of the lower extremities and lead to anterior cruciate ligament injury. This study aimed to clarify the effects of limited prior knowledge of the height of the fall, as well as limited visual input, on lower limb and trunk motion and ground reaction force during landing.

Methods:
Twenty healthy university students were recruited. Drop landings from a 30-cm platform were measured under three conditions: (1) unknown, without prior knowledge of the height of the fall and without visual input; (2) known, with prior knowledge of the height of the fall and without visual input; and (3) control, with prior knowledge of the height of the fall and visual input.

Findings:
In the unknown condition, the peak ground reaction force for the vertical and posterior directions was significantly higher than that in the known and control conditions; leg and knee stiffness, ankle joint work, and joint flexion motion of the knee, ankle, and trunk after landing were decreased as well. In the known condition, there were no significant differences in leg and knee stiffness and vertical ground reaction force compared to the control condition.

Interpretation:
The results of this study indicate that the risk of anterior cruciate ligament injury during landing increases when individuals have limited visual input and prior knowledge of the height of the fall. This finding suggests that an accurate perception of the surrounding environment may help prevent anterior cruciate liga- ment injuries.

この論文で使われている画像

参考文献

Alentorn-Geli, E., Myer, G.D., Silvers, H.J., Samitier, G., Romero, D., L´azaro-Haro, C., Cugat, R., 2009. Prevention of non-contact anterior cruciate ligament injuries in soccer players. Part 1: mechanisms of injury and underlying risk factors. Knee Surg. Sport Traumatol. Arthrosc. 17, 705–729. https://doi.org/10.1007/s00167-009-0813-1.

Ali, N., Robertson, D.G.E., Rouhi, G., 2014. Sagittal plane body kinematics and kinetics during single-leg landing from increasing vertical heights and horizontal distances: implications for risk of non-contact ACL injury. Knee 21, 38–46. https://doi.org/ 10.1016/J.KNEE.2012.12.003.

Almonroeder, T.G., Jayawickrema, J., Richardson, C.T., Mercker, K.L., 2020. The influence of attentional focus on landing stiffness in female athletes: a cross-sectional study. Int. J. Sports Phys. Ther. 15, 510–518 doi: 33354384.

Andriacchi, T.P., Alexander, E.J., Toney, M.K., Dyrby, C., Sum, J., 1998. A point cluster method for in vivo motion analysis: applied to a study of knee kinematics.J. Biomech. Eng. 120, 743–749. https://doi.org/10.1115/1.2834888.

Choy, N.L., Brauer, S., Nitz, J., 2003. Changes in postural stability in women aged 20 to 80 years. J. Gerontol. Ser. A Biol. Sci. Med. Sci. 58, 525–530. https://doi.org/ 10.1093/gerona/58.6.m525.

Davis, D.J., Hinshaw, T.J., Critchley, M.L., Dai, B., 2019. Mid-flight trunk flexion and extension altered segment and lower extremity joint movements and subsequent landing mechanics. J. Sci. Med. Sport 22. https://doi.org/10.1016/j. jsams.2019.03.001.

Devita, P., Skelly, W.A., 1992. Effect of landing stiffness on joint kinetics and energetics in the lower extremity. Med. Sci. Sports Exerc. 24, 108–115.

Gambelli, C.N., Schepens, B., 2020. Motor control of landing in an unsteady environment. Gait Posture. https://doi.org/10.1016/j.gaitpost.2020.06.017.

Harris, J.D., Abrams, G.D., Bach, B.R., Williams, D., Heidloff, D., Bush-Joseph, C.A., Verma, N.N., Forsythe, B., Cole, B.J., 2014. Return to sport after ACL reconstruction. Orthopedics 37. https://doi.org/10.3928/01477447-20140124-10.

Helm, M., Freyler, K., Waldvogel, J., Gollhofer, A., Ritzmann, R., 2019. The relationship between leg stiffness, forces and neural control of the leg musculature during the stretch-shortening cycle is dependent on the anticipation of drop height. Eur. J. Appl. Physiol. 119, 1981–1999. https://doi.org/10.1007/s00421-019-04186-7.

Helm, M., Freyler, K., Waldvogel, J., Lauber, B., Gollhofer, A., Ritzmann, R., 2020. Anticipation of drop height affects neuromuscular control and muscle-tendon mechanics. Scand. J. Med. Sci. Sports 30, 46–63. https://doi.org/10.1111/ sms.13550.

Hsu, W.L., Scholz, J.P., Scho¨ner, G., Jeka, J.J., Kiemel, T., 2007. Control and estimation of posture during quiet stance depends on multijoint coordination. J. Neurophysiol. 97, 3024–3035. https://doi.org/10.1152/jn.01142.2006.

Kaplan, Y., Witvrouw, E., 2019. When is it Safe to Return to Sport after ACL Reconstruction? Reviewing the Criteria. Sports Health. https://doi.org/10.1177/ 1941738119846502.

Kim, H., Nnodim, J.O., Richardson, J.K., Ashton-Miller, J.A., 2013. Effect of age on the ability to recover from a single unexpected underfoot perturbation during gait: kinematic responses. Gait Posture 38, 853–857. https://doi.org/10.1016/j. gaitpost.2013.04.013.

Kim, H.J., Lee, J.H., Lee, D.H., 2017. Proprioception in patients with anterior cruciate ligament tears: a meta-analysis comparing injured and uninjured limbs. Am. J. Sports Med. 45, 2916–2922. https://doi.org/10.1177/0363546516682231.

Kipp, K., Brown, T.N., McLean, S.G., Palmieri-Smith, R.M., 2013. Decision making and experience level influence frontal plane knee joint biomechanics during a cutting maneuver. J. Appl. Biomech. 29, 756–762. https://doi.org/10.1123/jab.29.6.756.

Koga, H., Nakamae, A., Shima, Y., Iwasa, J., Myklebust, G., Engebretsen, L., Bahr, R., Krosshaug, T., 2010. Mechanisms for noncontact anterior cruciate ligament injuries: knee joint kinematics in 10 injury situations from female team handball and basketball. Am. J. Sports Med. 38, 2218–2225. https://doi.org/10.1177/ 0363546510373570.

Krosshaug, T., Nakamae, A., Boden, B.P., Engebretsen, L., Smith, G., Slauterbeck, J.R., Hewett, T.E., Bahr, R., 2007. Mechanisms of anterior cruciate ligament injury in basketball: video analysis of 39 cases. Am. J. Sports Med. 35, 359–367. https://doi. org/10.1177/0363546506293899.

Lepp¨anen, M., Pasanen, K., Kujala, U.M., Vasankari, T., Kannus, P., A¨yra¨mo¨, S.,Krosshaug, T., Bahr, R., Avela, J., Perttunen, J., Parkkari, J., 2017. Stiff landings are associated with increased ACL injury risk in young female basketball and floorball players. Am. J. Sports Med. 45, 386–393. https://doi.org/10.1177/ 0363546516665810.

Liebermann, D.G., Goodman, D., 2007. Pre-landing muscle timing and post-landing effects of falling with continuous vision and in blindfold conditions. J. Electromyogr. Kinesiol. 17, 212–227. https://doi.org/10.1016/j.jelekin.2006.01.011.

Louw, Q., Gillion, N., van Niekerk, S.M., Morris, L., Baumeister, J., 2015. The effect of vision on knee biomechanics during functional activities - a systematic review. J. Sci. Med. Sport. https://doi.org/10.1016/j.jsams.2014.06.009.

McKinley, P., Pedotti, A., 1992. Motor strategies in landing from a jump: the role of skill in task execution. Exp. Brain Res. 90, 427–440. https://doi.org/10.1007/ BF00227257.

Monfort, S.M., Pradarelli, J.J., Grooms, D.R., Hutchison, K.A., Onate, J.A., Chaudhari, A. M.W., 2019. Visual-spatial memory deficits are related to increased knee Valgus angle during a sport-specific sidestep cut. Am. J. Sports Med. 47, 1488–1495. https://doi.org/10.1177/0363546519834544.

Mullally, E.M., Atack, A.C., Glaister, M., Clark, N.C., 2021. Situations and mechanisms of non-contact knee injury in adult netball: A systematic review. Phys. Ther. Sport. https://doi.org/10.1016/j.ptsp.2020.12.004.

Mulligan, D., Lohse, K.R., Hodges, N.J., 2016. Evidence for dual mechanisms of action prediction dependent on acquired visual-motor experiences. J. Exp. Psychol. Hum. Percept. Perform. 42, 1615–1626. https://doi.org/10.1037/xhp0000241.

Niederer, D., Engeroff, T., Wilke, J., Vogt, L., Banzer, W., 2018. Return to play, performance, and career duration after anterior cruciate ligament rupture: a case–control study in the five biggest football nations in Europe. Scand. J. Med. Sci. Sports 28, 2226–2233. https://doi.org/10.1111/sms.13245.

Sandon, A., Krutsch, W., Alt, V., Forssblad, M., 2021. Increased occurrence of ACL injuries for football players in teams changing coach and for players going to a higher division. Knee Surg. Sport Traumatol. Arthrosc. https://doi.org/10.1007/ s00167-021-06604-w.

Schwesig, R., Goldich, Y., Hahn, A., Müller, A., Kohen-Raz, R., Kluttig, A., Morad, Y., 2011. Postural control in subjects with visual impairment. Eur. J. Ophthalmol. 21, 303–309. https://doi.org/10.5301/EJO.2010.5504.

Sell, T.C., Ferris, C.M., Abt, J.P., Tsai, Y.S., Myers, J.B., Fu, F.H., Lephart, S.M., 2007.Predictors of proximal tibia anterior shear force during a vertical stop-jump.J. Orthop. Res. 25, 1589–1597. https://doi.org/10.1002/jor.20459.

Shafer, R.L., Solomon, E.M., Newell, K.M., Lewis, M.H., Bodfish, J.W., 2019. Visual feedback during motor performance is associated with increased complexity and adaptability of motor and neural output. Behav. Brain Res. 376 https://doi.org/ 10.1016/j.bbr.2019.112214.

Shaw, J.A., Stefanyk, L.E., Frank, J.S., Jog, M.S., Adkin, A.L., 2012. Effects of age and pathology on stance modifications in response to increased postural threat. Gait Posture 35, 658–661. https://doi.org/10.1016/j.gaitpost.2011.12.020.

Shimokochi, Y., Ambegaonkar, J.P., Meyer, E.G., Lee, S.Y., Shultz, S.J., 2013. Changing sagittal plane body position during single-leg landings influences the risk of non- contact anterior cruciate ligament injury. Knee Surg. Sport Traumatol. Arthrosc. 21, 888–897. https://doi.org/10.1007/s00167-012-2011-9.

Van Der Burg, J.C.E., Pijnappels, M., Van Die¨en, J.H., 2005. Out-of-plane trunk movements and trunk muscle activity after a trip during walking. Exp. Brain Res. 165, 407–412. https://doi.org/10.1007/s00221-005-2312-z.

Zaback, M., Adkin, A.L., Carpenter, M.G., 2019. Adaptation of emotional state and standing balance parameters following repeated exposure to height-induced postural threat. Sci. Rep. 9 https://doi.org/10.1038/s41598-019-48722-z.

参考文献をもっと見る

全国の大学の
卒論・修論・学位論文

一発検索!

この論文の関連論文を見る