[1] YANG C, MO Y, CAO X, et al. Reliability and validity of the Tinetti performance oriented mobility assessment in Chinese community-dwelling older adults. Geriatr Nurs. 2023;53:85-89.
[2] MUTCHIE HL, ORWIG DL, BEAMER B, et al. Four Square Step Test Performance in Hip Fracture Patients. J Geriatr Phys Ther. 2022;45(2): 81-89.
[3] LAURETANI F, TICINESI A, GIONTI L, et al. Short-Physical Performance Battery (SPPB) score is associated with falls in older outpatients. Aging Clin Exp Res. 2019;31(10):1435-1442.
[4] FIEDOROVÁ I, MRÁZKOVÁ E, ZÁDRAPOVÁ M, et al. Receiver Operating Characteristic Curve Analysis of the Somatosensory Organization Test, Berg Balance Scale, and Fall Efficacy Scale-International for Predicting Falls in Discharged Stroke Patients. Int J Environ Res Public Health. 2022;19(15):9181.
[5] MAGNANI PE, GENOVEZ MB, PORTO JM, et al. Use of the BESTest and the Mini-BESTest for Fall Risk Prediction in Community-Dwelling Older Adults Between 60 and 102 Years of Age. J Geriatr Phys Ther. 2020;43(4):179-184.
[6] REOLI R, THERRIEN A, CHERRY-ALLEN K, et al. Is the dynamic gait index a useful outcome to measure balance and ambulation in patients with cerebellar ataxia? Gait Posture. 2021;89:200-205.
[7] BARRY E, GALVIN R, KEOGH C, et al. Is the Timed Up and Go test a useful predictor of risk of falls in community dwelling older adults: a systematic review and meta-analysis. BMC Geriatr. 2014;14:14.
[8] FALLAHTAFTI F, BORON JB, VENEMA DM, et al. Task specificity impacts dual-task interference in older adults. Aging Clin Exp Res. 2021;33(3):581-587.
[9] ZASADZKA E, BOROWICZ AM, ROSZAK M, et al. Assessment of the risk of falling with the use of timed up and go test in the elderly with lower extremity osteoarthritis. Clin Interv Aging. 2015;10:1289-1298.
[10] JEONG SM, SHIN DW, HAN K, et al. Timed up-and-go test is a useful predictor of fracture incidence. Bone. 2019;127:474-481.
[11] KELLIS E, SAHINIS C, BALTZOPOULOS V. Is hamstrings-to-quadriceps torque ratio useful for predicting anterior cruciate ligament and hamstring injuries? A systematic and critical review. J Sport Health Sci. 2023;12(3):343-358.
[12] BENAVENT-CABALLER V, SENDÍN-MAGDALENA A, LISÓN JF, et al. Physical factors underlying the Timed “Up and Go” test in older adults. Geriatr Nurs. 2016;37(2):122-127.
[13] ABD ELKADER SM, AL-SHENQITI AM, EL-GOHARY TM. Timed Up and Go and Five Times Sit to Stand Test among community ambulant, overweight, obese Saudi elderly population. J Pak Med Assoc. 2022; 72(7):1306-1310.
[14] KUROSAWA C, SHIMAZU N, YAMAMOTO S. Where do healthy older adults take more time during the Timed Up and Go test? J Phys Ther Sci. 2020;32(10):663-668.
[15] GUTTENBERG M, ARGENTO G, MCINERNEY D, et al. Does the Timed-Up-and-Go Test Predict Length of Stay After Total Hip Arthroplasty? A Retrospective Study. HSS J. 2024;20(2):182-186.
[16] BEAUCHET O, FANTINO B, ALLALI G, et al. Timed Up and Go test and risk of falls in older adults: a systematic review. J Nutr Health Aging. 2011;15(10):933-938.
[17] ORTEGA-BASTIDAS P, GÓMEZ B, AQUEVEQUE P, et al. Instrumented Timed Up and Go Test (iTUG)-More Than Assessing Time to Predict Falls: A Systematic Review. Sensors (Basel). 2023;23(7):3426.
[18] MARTINO G, BECK ON, TING LH. Voluntary muscle coactivation in quiet standing elicits reciprocal rather than coactive agonist-antagonist control of reactive balance. J Neurophysiol. 2023;129(6):1378-1388.
[19] FRITZSCHE L, GALIBAROV PE, GÄRTNER C, et al. Assessing the efficiency of exoskeletons in physical strain reduction by biomechanical simulation with AnyBody Modeling System. Wearable Technol. 2021;2:e6.
[20] KONG YK, CHOI KH, CHO MU, et al. Ergonomic Assessment of a Lower-Limb Exoskeleton through Electromyography and Anybody Modeling System. Int J Environ Res Public Health. 2022;19(13):8088.
[21] PEREIRA CB, KANASHIRO AMK. Falls in older adults: a practical approach. Arq Neuropsiquiatr. 2022;80(5 Suppl 1):313-323.
[22] CHANDER DS, CAVATORTA MP. Multi-directional one-handed strength assessments using AnyBody Modeling Systems. Appl Ergon. 2018;67:225-236.
[23] FELDMAN AG. The Relationship Between Postural and Movement Stability. Adv Exp Med Biol. 2016;957:105-120.
[24] JOHN CT, SETH A, SCHWARTZ MH, et al. Contributions of muscles to mediolateral ground reaction force over a range of walking speeds. J Biomech. 2012;45(14):2438-2443.
[25] MOOKERJEE S, MCMAHON MJ. Electromyographic analysis of muscle activation during sit-and-reach flexibility tests. J Strength Cond Res. 2014;28(12):3496-3501.
[26] MARTINEZ SC, COONS JM, MEHLS KD. Effect of external load on muscle activation during the barbell back squat. Eur J Sport Sci. 2023; 23(6):975-982.
[27] ZHANG Q, HAUTIER CA. Influence of jump-landing direction on dynamic postural stability and hamstring-to-quadriceps co-activation ratio. Res Sports Med. 2023;31(4):331-341.
[28] FLIX-DÍEZ L, BLANCO-PAREJA M, PÉREZ-FERNÁNDEZ N. Limits of Stability during a Therapeutic Exercise Intervention for Instability: Progression, Responders’ and Non-Responders’ Analysis and Predictors. J Clin Med. 2024;13(17):5036.
[29] KOJIMA G, MASUD T, KENDRICK D, et al. Does the timed up and go test predict future falls among British community-dwelling older people? Prospective cohort study nested within a randomised controlled trial. BMC Geriatr. 2015;15:38.
[30] ROCKWOOD K, AWALT E, CARVER D, et al. Feasibility and measurement properties of the functional reach and the timed up and go tests in the Canadian study of health and aging. J Gerontol A Biol Sci Med Sci. 2000;55(2):M70-73.
[31] KARIMI MT, SHARIFMORADI K. Static and local dynamic stability of subjects with knee joint osteoarthritis. Proc Inst Mech Eng H. 2022; 236(8):1100-1105.
[32] BRANDT C, VAN VUUREN ECJ. Postoperative Physiotherapy in Women Undergoing Pelvic Floor Reconstructive Surgery: A Randomized Controlled Clinical Trial. Physiother Can. 2021;74(2):126-138.
[33] PASCUCCI F, CESARI P, BERTUCCO M, et al. Postural adjustments to self-triggered perturbations under conditions of changes in body orientation. Exp Brain Res. 2023;241(8):2163-2177.
[34] JEON W, WHITALL J, GRIFFIN L, et al. Trunk kinematics and muscle activation patterns during stand-to-sit movement and the relationship with postural stability in aging. Gait Posture. 2021;86:292-298.
[35] SADEH S, GOBERT D, SHEN KH, et al. Biomechanical and neuromuscular control characteristics of sit-to-stand transfer in young and older adults: A systematic review with implications for balance regulation mechanisms. Clin Biomech (Bristol). 2023;109:106068.
[36] ROELKER SA, SCHMITT LC, CHAUDHARI AMW, et al. Discover your potential: The influence of kinematics on a muscle’s ability to contribute to the sit-to-stand transfer. PLoS One. 2022;17(3):e0264080.
[37] YOSHIOKA S, NAGANO A, HIMENO R, et al. Computation of the kinematics and the minimum peak joint moments of sit-to-stand movements. Biomed Eng Online. 2007;6:26.
[38] VAN HOOREN B, ZOLOTARJOVA J. The Difference Between Countermovement and Squat Jump Performances: A Review of Underlying Mechanisms With Practical Applications. J Strength Cond Res. 2017;31(7):2011-2020.
[39] KAEWMANEE T, ARUIN AS. The Role of Predictability of Perturbation in Control of Posture: A Scoping Review. Motor Control. 2022;26(1): 97-143.
[40] VAN DEN BOGAART M, BRUIJN SM, VAN DIEËN JH, et al. The effect of anteroposterior perturbations on the control of the center of mass during treadmill walking. J Biomech. 2020;103:109660.
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