Chinese Journal of Tissue Engineering Research ›› 2023, Vol. 27 ›› Issue (8): 1245-1249.doi: 10.12307/2022.1025
Previous Articles Next Articles
Zhong Jiamin, Huang Zhaoxin, Li Longxue, Qu Tongtong, Liu Zhuang, Fu Yifeng, Xiao Xiaofei
Received:
2022-01-24
Accepted:
2022-03-10
Online:
2023-03-18
Published:
2022-07-28
Contact:
Xiao Xiaofei, MD, Associate professor, School of Rehabilitation Medicine of Binzhou Medical University, Yantai 264003, Shandong Province, China
About author:
Zhong Jiamin, Master candidate, School of Rehabilitation Medicine of Binzhou Medical University, Yantai 264003, Shandong Province, China
Supported by:
CLC Number:
Zhong Jiamin, Huang Zhaoxin, Li Longxue, Qu Tongtong, Liu Zhuang, Fu Yifeng, Xiao Xiaofei. Effects of visual factors on balance function in young adults[J]. Chinese Journal of Tissue Engineering Research, 2023, 27(8): 1245-1249.
Add to citation manager EndNote|Reference Manager|ProCite|BibTeX|RefWorks
[1] WHO. International Classification of Diseases, 11th Revision (ICD-11). [2019-06-29]. https://www. who.int/classifications/icd/en/. [2] RUSSO MM, LEMOS T, IMBIRIBA LA, et al. Beyond deficit or compensation: new insights on postural control after long-term total visual loss. Exp Brain Res. 2016; 235(2):437-446. [3] MIHAILOVIC A, DE LUNA RM, WEST SK, et al. Gait and Balance as Predictors and/or Mediators of Falls in Glaucoma. Invest Ophthalmol Vis Sci. 2020; 61:30. [4] WHO. World report on vision. [2019-10-08]. https://appswhoint/iris/bitstream/handle/10665/328717/9789241516570-engpdf. [5] CHENG CY, WANG N, WONG TY, et al. Prevalence and causes of vision loss in East Asia in 2015: magnitude, temporal trends and projections. Br J Ophthalmol. 2020; 104(5):616-622. [6] GBD 2019 Blindness and Vision Impairment Collaborators; Vision Loss Expert Group of the Global Burden of Disease Study. Causes of blindness and vision impairment in 2020 and trends over 30 years, and prevalence of avoidable blindness in relation to VISION 2020: the Right to Sight: an analysis for the Global Burden of Disease Study. Lancet Glob Health. 2021;9(2):e144-e160. [7] SADOWSKA D, STEMPLEWSKI R, SZEKLICKI R. Postural Control in Young People with Visual Impairments and Various Risks of Falls. J Visual Impair Blin. 2017; 111(3):261-270. [8] EHRLICH JR, HASSAN SE, STAGG BC. Prevalence of Falls and Fall-Related Outcomes in Older Adults with Self-Reported Vision Impairment. J Am Geriatr Soc. 2019;67: 239-245. [9] HOPEWELL S, ADEDIRE O, COPSEY BJ, et al. Multifactorial and multiple component interventions for preventing falls in older people living in the community. Cochrane Database Syst Rev. 2018;7(7):CD012221. [10] METHA J, CZANNER G, HARDING S, et al. Visual risk factors for falls in older adults: a case-control study. BMC Geriatr. 2022;22(1):134. [11] CHEN EW, FU AS, CHAN KM, et al. Balance control in very old adults with and without visual impairment. Eur J Appl Physiol. 2012;112(5):1631-1636. [12] FUJIO K, TAKEUCHI Y. Discrimination of standing postures between young and elderly people based on center of pressure. Sci Rep. 2021;11(1):195. [13] CAI JM, YE Y, LIANG P, et al. Frequency of presenting visual acuity and visual impairment in Chinese college students. Int J Ophthalmol. 2020;13(12):1990-1997. [14] XU T, WANG B, LIU H, et al. Prevalence and causes of vision loss in China from 1990 to 2019: findings from the Global Burden of Disease Study 2019. Lancet Public Health. 2020;5(12):e682-e691. [15] JETER PE, NKODO AF, MOONAZ SH, et al. A systematic review of yoga for balance in a healthy population. J Altern Complement Med. 2014;20(4):221-232. [16] CHEN B, LIU P, XIAO F, et al. Review of the Upright Balance Assessment Based on the Force Plate. Int J Environ Res Public Health. 2021;18(5):2696. [17] RUTKOWSKA I, BEDNARCZUK G, MOLIK B, et al. Balance Functional Assessment in People with Visual Impairment. J Hum Kinet. 2015;48:99-109. [18] SOBRY V, BADIN P, CERNAIANU S, et al. Do visually impaired people have a static balance as effective as sighted people? Neuro Rehabil. 2014;35:851-861. [19] ALGHADIR AH, ALOTAIBI AZ, IQBAL ZA. Postural stability in people with visual impairment. Brain Behav. 2019;9(11):e01436. [20] 高天宇,张孝权,宿旺,等. 视觉剥夺前后老年人单足站立平衡特征研究[J].中国康复医学杂志,2020,35(4):427-433. [21] BOHANNON RW, MYERS BJ, TUDINI FT, et al. Kinematics of shoulder, trunk, pelvis, and hip while reaching forward to progressively distant targets. J Bodyw Mov Ther. 2020;24(3):221-226. [22] SHARIF BIDABADI S, MURRAY I, LEE GYF. Validation of foot pitch angle estimation using inertial measurement unit against marker-based optical 3D motion capture system. Biomed Eng Lett. 2018;8(3):283-290. [23] 朱晓敏,刘元旻,杜雪晶,等.功能性伸展测试临床应用进展[J]. 中国康复理论与实践,2021,27(5):583-587. [24] PIERCE CB, MUNOZ A, NG DK, et al. Age- and sex-dependent clinical equations to estimate glomerular filtration rates in children and young adults with chronic kidney disease. Kidney Int. 2021;99(4):948-956. [25] YAMAGATA M, IKEZOE T, KAMIYA M, et al. Correlation between movement complexity during static standing and balance function in institutionalized older adults. Clin Interv Aging. 2017;12:499-503. [26] TANEDA K, MANI H, KATO N, et al. Effects of simulated peripheral visual field loss on the static postural control in young healthy adults. Gait Posture. 2021;86:233-239. [27] HOOD J, SHARRAH ML. Functional Reach and Gait Speed Improvement in A Matter of Balance Participants. J Trauma Nurs. 2022;29(1):5-11. [28] THOMAS J, O’NEAL S. Relationship of Functional Reach Test scores and falls in Special Olympics athletes. J Intellect Disabil Res. 2019;63(6):587-592. [29] MARANESI E, GHETTI G, RABINI RA, et al. Functional reach test: movement strategies in diabetic subjects. Gait Posture. 2014;39(1):501-505. [30] 陈泽华,叶翔凌,陈伟健,等. 健康成年人下肢本体感觉与姿势稳定性的关系[J]. 中国组织工程研究,2020,24(29):4692-4696. [31] 欧阳一毅,彭杰,王坤,等. 儿童下肢生物力学特征在视觉剥夺及双重任务时的变化[J]. 中国组织工程研究,2022,26(12):1834-1842. [32] GRACE GAERLAN M, ALPERT PT, CROSS C, et al. Postural balance in young adults: the role of visual, vestibular and somatosensory systems. J Am Acad Nurse Pract. 2012; 24:375-381. [33] ZETTERLUND C, LUNDQVIST LO, RICHTER HO. Visual, musculoskeletal and balance symptoms in individuals with visual impairment. Clin Exp Optom. 2019;102:63-69. [34] ZIPORI AB, COLPA L, WONG AMF, et al. Postural stability and visual impairment: Assessing balance in children with strabismus and amblyopia. PLoS One. 2018; 13(10):e0205857. [35] GAZZELLINI S, LISPI ML, CASTELLI E, et al. The impact of vision on the dynamic characteristics of the gait: strategies in children with blindness. Exp Brain Res. 2016;234(9):2619-2627. [36] BEDNARCZUK G, WISZOMIRSKA I, RUTKOWSKA I, et al. Role of vision in static balance in persons with and without visual impairments. Eur J Phys Rehabil Med. 2021;57(4):593-599. [37] PARREIRA RB, GRECCO LAC, OLIVEIRA CS. Postural control in blind individuals: A systematic review. Gait Posture. 2017;57:161-167. [38] PIRÔPO US, DOS SANTOS ROCHA JA, PASSOS RDS, et al. Influence of visual information in postural control: Impact of the used stabilometric analysis methods. Eur J Hum Movement. 2016;37:21-29. [39] ROGGE AK, HAMACHER D, CAPPAGLI G, et al. Balance, gait, and navigation performance are related to physical exercise in blind and visually impaired children and adolescents. Exp Brain Res. 2021; 239(4):1111-1123. [40] SLAVOLJUB U, GORAN Z, RADMILA K, et al. Comparison of the static balance of children with and without visual impairment. Res in Phys Educ, Sport and Health. 2015;4:95-99. [41] TOMOMITSU MS, ALONSO AC, MORIMOTO E, et al. Static and dynamic postural control in low-vision and normal-vision adults. Clinics. 2013;68:517-521. |
[1] | Wang Shuai, Wang Liancheng, Zhang Shuhao, Li Fuli, Dong Jiaxing, Zhang Yajie. Correlation of the electromyography ratio of the paraspinal muscles on the convex and concave sides with Cobb angle, apical vertebra translation, and coronal balance distance in adolescent idiopathic scoliosis patients [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(9): 1402-1406. |
[2] | Yu Chengxiang, Liu Lehong, Li Wenbo, Chen Jinshi, Ran Chunlei, Wang Zhongping. Correlation between spine-pelvic sagittal parameters and prognosis of vertebroplasty in the treatment of thoracolumbar osteoporotic vertebral compression fractures [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(9): 1412-1417. |
[3] | Li Jian, Bao Zhengqi, Zhou Pinghui, Zhu Ruizhi, Li Zhixiang, Wang Jinzi. Effects of posterior single open-door laminoplasty and anterior cervical corpectomy fusion on cervical sagittal balance parameters in the treatment of multilevel cervical spondylotic myelopathy [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(6): 949-953. |
[4] | Wang Nan, Qian Yuzhang, Xie Lin. Network Meta-analysis of different acupuncture methods for the treatment of lumbar disc herniation [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(5): 813-820. |
[5] | Bai Xiaotian, Jiang Tao, Huo Hongfeng, Li Zongtao. Biomechanical characteristics of foot balance during walking support [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(36): 5787-5791. |
[6] | Yuan Bo, Li Kainan, Jia Zishan. Comparison of the effects of different modes of balance disorder rehabilitation robots after total hip arthroplasty in the elderly [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(36): 5826-5830. |
[7] | Wang Yaoting, Lu Yan, Yao Jiaqin, Yang Chunhua, Xu Wenjing, Wang Hongyu. Differential analysis of plantar pressure parameters of lower limbs in stroke patients with different cerebral hemispheric injuries [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(35): 5646-5651. |
[8] | Quan Honglei, Zheng Jiejiao, Feng Youyan, Zhang Jie, Zhu Yinghui. Early hip abductor training to improve balance and walking ability after total knee arthroplasty [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(33): 5311-5316. |
[9] | Yin Yikun, Wang Jialin, Wu Chaoming, Sun Junzhi. Joint mobilization treatment for chronic ankle instability function recovery: a meta-analysis [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(33): 5407-5412. |
[10] | Qiao Qiqi, Wu Yixin, Wang Xin, Xia Zhongliang. Effect of high-definition transcranial direct current stimulation on human dynamic balance [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(26): 4192-4198. |
[11] | Xia Peige, Yin Li, Wang Haitao, Zhang Yi, Qiao Renqiu, Kong Zhiheng, Zhao Hongbo, Shi Xiangyu. Effect of knee ligamentous laxity on patient satisfaction after total knee arthroplasty: a medium to long-term follow-up [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(15): 2323-2329. |
[12] | Ouyang Yiyi, Peng Jie, Wang Kun, Zhang Tingran, Luo Jiong. Changes in biomechanical characteristics of children’s lower limbs during visual deprivation and dual tasks [J]. Chinese Journal of Tissue Engineering Research, 2022, 26(12): 1834-1842. |
[13] | Song Liming, Su Hailong. Muscle force response characteristics of the slipping leg after an unexpected slip [J]. Chinese Journal of Tissue Engineering Research, 2021, 25(8): 1184-1189. |
[14] | Xie Jiang, Guo Huili, Li Hui, Dai Jie, Zhu Xu. Finite element analysis of reconstruction of sagittal balance in ankylosing kyphosis with vertebral column resection [J]. Chinese Journal of Tissue Engineering Research, 2021, 25(33): 5259-5264. |
[15] | Zhu Feilong, Zhang Ming, Wu Yu, Wang Bin, Guo Xiaoqi, Cao Jiangang, Zhu Qian, Chen Wei. Foot posture and gait in adolescent idiopathic scoliosis patients: three-dimensional morphological analysis and biomechanics evaluation [J]. Chinese Journal of Tissue Engineering Research, 2021, 25(33): 5294-5300. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||