Pengaruh Perangkat Wearable Pemantau Postur terhadap Kesehatan Muskuloskeletal dan Performa Gerak pada Mahasiswa Pendidikan Jasmani
DOI:
https://doi.org/10.61672/judek.v14i1.3484Keywords:
Perangkat wearable, Postur tubuh, Kesehatan muskuloskeletal, Performa gerak, Pendidikan jasmaniAbstract
Gangguan muskuloskeletal dan penurunan kualitas gerak merupakan permasalahan nyata yang dihadapi mahasiswa pendidikan jasmani akibat aktivitas fisik berulang dan postur yang tidak optimal selama pembelajaran praktik. Penelitian ini bertujuan untuk menguji pengaruh penggunaan perangkat wearable pemantau postur terhadap kesehatan muskuloskeletal dan performa gerak mahasiswa Program Studi Pendidikan Jasmani, Kesehatan, dan Rekreasi (PJKR) Fakultas Ilmu Keolahragaan dan Kesehatan Universitas Negeri Makassar. Penelitian menggunakan rancangan pretest-posttest control group design dengan pendekatan kuantitatif eksperimen. Sampel ditentukan melalui purposive sampling dan dibagi menjadi kelompok intervensi yang menggunakan wearable berbasis inertial measurement unit (IMU) selama pembelajaran praktik dan kelompok kontrol tanpa intervensi. Kesehatan muskuloskeletal diukur menggunakan Nordic Musculoskeletal Questionnaire, Numeric Pain Rating Scale, serta tes fleksibilitas dan kapasitas fungsional. Performa gerak dinilai menggunakan Functional Movement Screen. Hasil menunjukkan bahwa kelompok intervensi mengalami penurunan nyeri muskuloskeletal yang signifikan, peningkatan fleksibilitas dan kapasitas fungsional, serta peningkatan skor performa gerak, kontrol tubuh, keseimbangan, koordinasi, dan keterampilan motorik yang lebih besar dibandingkan kelompok kontrol. Korelasi positif ditemukan antara perbaikan postur dan peningkatan performa gerak (r = 0,62). Perangkat juga menunjukkan tingkat kenyamanan dan penerimaan pengguna yang tinggi. Temuan ini mengindikasikan bahwa wearable pemantau postur berpotensi menjadi instrumen pendukung pembelajaran berbasis teknologi dalam pendidikan jasmani.
Downloads
References
Angelucci, A., & Aliverti, A. (2023). An IMU-Based Wearable System for Respiratory Rate Estimation in Static and Dynamic Conditions. Cardiovascular Engineering and Technology, 14(3), 351–363. https://doi.org/10.1007/s13239-023-00657-3
Gupta, A., & Sharma, S. (2025). Cervical Spine Posture Monitoring using Flex and IMU Sensors with Long Short Term Memory Networks. Preprints. https://doi.org/10.36227/techrxiv.174140797.74178003/v1
Hou, Y., Wang, Z., Liu, H., Xia, M., Fan, X., & Ye, Q. (2025). Designing a Smart Garment for Dynamic Sitting Reminders. Sensors, 25(11), 3359. https://doi.org/10.3390/s25113359
Karoulla, E., Matsangidou, M., Frangoudes, F., Paspalides, P., Kleanthous, K., & Pattichis, C. S. (2024). Tracking Upper Limb Motion via Wearable Solutions: Systematic Review of Research From 2011 to 2023. Journal of Medical Internet Research, 26, e51994. https://doi.org/10.2196/51994
Meyer, B. M., Cohen, J. G., Donahue, N., Fox, S. R., O’Leary, A., Brown, A. J., Leahy, C., VanDyk, T., DePetrillo, P. B., Ceruolo, M., Cheney, N., Solomon, A., & McGinnis, R. S. (2023). Chest-Based Wearables and Individualized Distributions for Assessing Postural Sway in Persons With Multiple Sclerosis. Ieee Transactions on Neural Systems and Rehabilitation Engineering, 31, 2132–2139. https://doi.org/10.1109/tnsre.2023.3267807
Monti, G., Lezzi, D., & Tarricone, L. (2025). Wearable SIMO Inductive Resonant Link for Posture Monitoring. Sensors, 25(17), 5478. https://doi.org/10.3390/s25175478
Moon, K. S., Gombatto, S. P., Phan, K., & Öztürk, Y. (2022). Extraction of Lumbar Spine Motion Using a 3-Imu Wearable Cluster. Sensors, 23(1), 182. https://doi.org/10.3390/s23010182
Paulo Roberto Carvalho do Nascimento, Kirkwood, R. N., Griffith, L. E., Duong, M., Cooper, C. R., Hao, Y., Zheng, R., Raza, S., & Beauchamp, M. K. (2025). Identifying Optimal Wearable Devices for Monitoring Mobility in Hospitalized Older Adults: Feasibility, Acceptability, and Validity Study. Jmir Aging, 8, e64372–e64372. https://doi.org/10.2196/64372
Qutieshat, A., AlBusaidi, R., Al-Ghammari, S., Koofan, A.-W., Al-Lawati, T., Alrashdan, M. S., & Petropoulou, P. (2025). Real-Time Wearable Cervical Posture Monitoring in Dentistry: A Prospective Usability Trial With Dental Students. European Journal of Dentistry. https://doi.org/10.1055/s-0045-1812110
Scagliusi, S. F., Pérez-García, P., Oprescu, A. M., Martín, D., Olmo, A., Huertas, G., & Yúfera, A. (2023). Body Posture Determination for Heart Failure Patients From Ankle Orientation Measurements. Ieee Access, 11, 48893–48900. https://doi.org/10.1109/access.2023.3261554
Simpson, L., Maharaj, M. M., & Mobbs, R. J. (2019). The role of wearables in spinal posture analysis: A systematic review. BMC Musculoskeletal Disorders, 20(1), 55. https://doi.org/10.1186/s12891-019-2430-6
Sinichi, M., Gevonden, M., & Krabbendam, L. (2025). Quality in Question: Assessing the Accuracy of Four Heart Rate Wearables and the Implications for Psychophysiological Research. Psychophysiology, 62(2). https://doi.org/10.1111/psyp.70004
Tang, Q., John, D., Thapa-Chhetry, B., Arguello, D. J., & Intille, S. (2020). Posture and Physical Activity Detection: Impact of Number of Sensors and Feature Type. Medicine & Science in Sports & Exercise, 52(8), 1834–1845. https://doi.org/10.1249/MSS.0000000000002306
Tuken, D., Murphy, S. J., Bowers, R. D., & Vitali, R. V. (2025). Feasibility Study for Wearable Sensor-Based Vibrotactile Feedback for Posture and Muscle Activation in a Relevant Dentistry Setting. Sensors, 25(18), 5891. https://doi.org/10.3390/s25185891
Vermander, P., Mancisidor, A., Cabanes, I., Pérez, N., & Torres‐Unda, J. (2023). Intelligent Sitting Posture Classifier for Wheelchair Users. Ieee Transactions on Neural Systems and Rehabilitation Engineering, 31, 944–953. https://doi.org/10.1109/tnsre.2023.3236692
Wang, H., Zheng, J. Q., Nie, Q., Li, W., Wang, Z., Xiao, K., Hu, X., Kumar, S., & Min, R. (2024). Double-Fishtail-Shaped FBG Wearable Device for Sitting Posture Recognition and Real-Time Respiratory Monitoring. Ieee Sensors Journal, 24(7), 10164–10171. https://doi.org/10.1109/jsen.2024.3367622
Yao, X. (2024). Biomechanical analysis of musicians’ posture and movement patterns for optimizing performance and reducing injury risk. Molecular & Cellular Biomechanics, 21(4), 569. https://doi.org/10.62617/mcb569
Zahoori, S., & Usmani, S. (2024). PosturePerfect: Smart T-shirt for Real-Time Posture Correction and Monitoring. Journal of Student Research, 13(3). https://doi.org/10.47611/jsrhs.v13i3.7360
Zeagler, C. (2017). Where to wear it: Functional, technical, and social considerations in on-body location for wearable technology 20 years of designing for wearability. Proceedings of the 2017 ACM International Symposium on Wearable Computers, 150–157. https://doi.org/10.1145/3123021.3123042
Zhang, Z., Li, K., Li, Y., Zhang, Q., Wang, H., & Hou, C. (2024). Dual-Function Wearable Hydrogel Optical Fiber for Monitoring Posture and Sweat pH. Acs Sensors, 9(6), 3413–3422. https://doi.org/10.1021/acssensors.4c00780
Downloads
Published
Issue
Section
License
Copyright (c) 2026 Bahrul Alim, Wildayati Wildayati

This work is licensed under a Creative Commons Attribution 4.0 International License.


