Journal of Textile Research ›› 2024, Vol. 45 ›› Issue (03): 156-162.doi: 10.13475/j.fzxb.20230202801

• Apparel Engineering • Previous Articles     Next Articles

Smart clothing design for autistic children with distance monitoring and auxiliary prompt functions

WANG Xinyu1(), TIAN Mingwei2   

  1. 1. College of Arts and Design, Qingdao University of Technology, Qingdao, Shandong 266033, China
    2. College of Textile and Clothing, Qingdao University, Qingdao, Shandong 266071, China
  • Received:2023-02-15 Revised:2023-10-17 Online:2024-03-15 Published:2024-04-15

Abstract:

Objective Social and emotional disorders are the core issues that affect the normal life of autistic children. Two sets of smart clothing that meet patients' needs for wearing were designed in this study, i.e., sensory integration, psychological identity and aesthetic preference, and social distance monitoring and auxiliary prompting functions. This study integrated the concept of traditional Chinese medicine in functional clothing design, expecting to help develop the auxiliary therapy and smart wearable research and application direction of autistic children.

Method The clothing needs of autistic children were firstly summarized in three aspects: wearing, feeling and psychological identity using questionnaire survey and field interview. Ultrasonic distance sensor technology was adopted to realize social distance monitoring. Flexible pneumatic air bags and heating carbon fiber were adopted to simulate traditional Chinese medicine (TCM) massage therapy for autism, and heat and pressure were adopted to stimulate wrist acupuncture points to achieve certain goals of intervention and auxiliary prompting of patients.

Results Children with autism need clothing with clear signs to guide them put on and take off with easy ways of fastening and undressing. Study indicated that they preferred soft and non-irritating fabrics and clothes with regular patterns and cool colors. Concealed intelligent controls with auxiliary debugging functions were more in line with the psychological identity needs of such children and their families. Reasonable social distancing is helpful to maintain patients' psychological sense of security. In combination with social distancing and epidemic prevention suggestions, the monitoring distance selected was 0.5-3 m. The ultrasonic distance sensor has high precision with small shape and dirt resistance which could effectively identify social distance when embedded in clothing, and the effective monitoring range was within 0.2-3 m. Statistics of TCM treatment of autistic children showed that stimulation of acupoints could effectively relieve the emotional disorder symptoms of patients. Multiple effective acupoints were distributed centrally at the wrist. Combined with the convenience of clothing, flexible air bags were placed at the cuff position to simulate the effect of TCM massage. The data showed that appropriate clothing pressure was helpful to release pressure, no more than 7.90 kPa at the arm. CLO3D software was adopted to simulate the pressure of the cuff on the wrist when the airbag was not inflated, and the pressure on the wrist after inflation. When a patient was in the unsafe social distance, the flexible air bag and the heating carbon fiber inside the clothing were triggered, and the pressure and heat stimulate the wrist acupuncture point to stimulate the patient so as to relieve anxiety. According to the survey results of patients' clothing needs, the smart children's clothing was designed as H/A shape with zipper fastening, cool colors, and geometric pocket design. The fabric was designed with two layers, where the inner layer is soft and comfortable, and the outer layer has certain support to adapt to functional accessories.

Conclusion The ultrasonic distance sensor is connected with the flexible air bag and the heating carbon fiber to achieve multiple functions of social distancing monitoring, air bag massage and heating, which can not only play the effect of auxiliary reminder secretly, but also properly relieve the emotional disorders of children with autism to a certain extent, and meet the physical and mental needs of patients and caregivers. The integration of TCM treatment concepts into clothing has a huge market prospect and is of great significance for the improvement and application of smart clothing and adjuvant therapy effect for autistic children and other special groups.

Key words: autistic children, children's clothing, distance monitoring, flexible airbag, clothing pressing, smart clothing

CLC Number: 

  • TS941.2

Fig.1

Smart clothing model for ASD children"

Fig.2

Schematic diagram of wrist meridians and acupuncture points"

Fig.3

Schematic diagram of flexible airbag before (a)and after (b) inflation"

Fig.4

Simulation diagram of pressure distribution before and after inflation"

Fig.5

Heating carbon fiber"

Fig.6

Ultrasonic sensor"

Fig.7

Schematic diagram of circuit board assembly"

Fig.8

Smart clothing technical drawing for ASD children. (a) Boy's coat; (b) Girl'coat"

[1] LIPKIN G E, MARVIN A R, LAW J K, et al. Anxiety and mood disorder in children with autism spectrum disorder and ADHD[J]. Pediatrics, 2018. DOI:10.1542/PEDS.2017-1377.
[2] 赖渝, 何丽, 姜欣, 等. 自闭症谱系障碍儿童社交及情绪障碍的研究进展[J]. 重庆医学, 2021, 50(12):1-5.
LAI Yu, HE Li, JIANG Xin, et al. Advances in the study of social and emotional disorders in children with autism spectrum disorders[J]. Chongqing Medicine, 2021, 50(12): 1-5.
[3] 陈世英, 黄玲. 穴位循经按压治疗儿童多动症的临床研究[J]. 现代中西医结合杂志, 2012, 21(20):2167-2169.
CHEN Shiying, HUANG Ling. Clinical research of treating for hyperkinetic syndrome of children with pressing acupuncture points according to the channel[J]. Modern Journal of Integrated Traditional Chinese and Western Medicine, 2012, 21(20):2167-2169
[4] 卫生健康委办公厅. 国家卫生健康委办公厅关于印发0-6岁儿童孤独症筛查干预服务规范(试行)的通知[EB/OL].(2022-08-23)[2023-10-16].http://www.gov.cn/zhengce/zhengceku/2022-09/23/content_5711379.html.
General Office of the Health Commission. Notice of the General Office of the National Health Commission on issuing standards for autism screening intervention services for children aged 0-6(trial)[EB/OL]. (2022-08-23)[2023-10-16].http://www.gov.cn/zhengce/zhengceku/2022-09/23/content_5711379.html.
[5] 赵梦菲, 孙月方, 程子鹏, 等. 基于自闭症儿童心理特征的服饰色彩与图形探究[J]. 西部皮革, 2022, 44(8):97-100.
ZHAO Mengfei, SUN Yuefang, CHENG Zipeng, et al. Research on clothing color and graphics based on the psychological characteristics of autistic children[J]. West Leather, 2022, 44(8):97-100.
[6] UTA Frith. Autism[M]. Oxford: Oxford University Press, 2008:3.
[7] 王长虎, 冯信群. 社交距离下的城市私密性空间研究[J]. 美与时代(城市版), 2021(7):100-101.
WANG Changhu, FENG Xinqun. Research of urban privacy under social distancing[J]. Beauty & Times(City Edition), 2021(7):100-101.
[8] 施秋杉, 王军, 闻婧. 基于距离识别的自闭症儿童智能服装设计[J]. 毛纺科技, 2020, 48(7): 80-83.
SHI Qiushan, WANG Jun, WEN Jing. Design of smart clothing for autistic children based on distance recognition[J]. Wool Textile Journal, 2020, 48(7): 80-83.
[9] 李强. 基于超声测距的工业机器人避障控制系统设计[J]. 计算机测量与控制, 2023, 31(2):109-114.
LI Qiang. Design of industrial robot obstacle avoidance control system based on ultrasonic ranging[J]. Computer Measurement & Control, 2023, 31(2):109-114.
[10] 段杏元. 服装压力测定方法的研究[J]. 针织工业, 2006(11):53-55.
DUAN Xingyuan. Research on clothing pressure measurement methods[J]. Knitting Industries, 2006(11): 53-55.
[11] 吴济宏, 于伟东. 针织面料的拉伸弹性与服装压[J]. 武汉科技学院学报, 2006, 19(1):21-25.
WU Jihong, YU Weidong. The elasticity and clothing pressure of knitted fabrics[J]. Journal of Wuhan Textile University, 2006, 19(1):21-25.
[12] 成秀光. 服装环境学[M]. 金玉顺,高绪珊,译. 北京: 中国纺织出版社, 1999:112-118.
CHENG Xiuguang. Clothing environmental[M]. JINYushun, GAOXushan,Translating. Beijing: China Textile & Apparel Press, 1999:112-118.
[13] ZHANG X, YEUNG K W, LI Y. Numerical simulation of 3D dynamic garment pressure[J]. Textile Research Journal, 2002(72):245-252.
[14] DENTON M J. Fit-stretch and comfort[J]. Textiles, 1972(3):12-17.
[15] PRATT J, WEST G. Pressure garments: a manual on their design and fabrication[M]. Bath: Bath Press, 1995:27-29.
[16] 沈苏静, 汤黎明. 治疗下肢静脉曲张的新型气动式按摩仪[J]. 中国医疗器械杂志, 2003, 27(6): 444-445.
SHEN Sujing, TANG Liming. A novel pneumatic massage device for lower limb varix[J]. Chinese Journal of Medical Instrumentation, 2003, 27(6):444-445.
[17] 惠靖瑞, 熊振芳, 贺安妮, 等. 针刺疗法在自闭症治疗中的研究现状[J]. 湖北中医药大学学报, 2020, 22(1):114-117.
HUI Jingrui, XIONG Zhenfang, HE Anni, et al. Research status of acupuncture in treatment of autism[J]. Journal of Hubei University of Chinese Medicine, 2020, 22(1):114-117.
[18] 张建国, 苏咏芝, 朱家俊, 等. 推拿治疗儿童自闭症探析[J]. 环球中医药, 2017, 10(8):915-917.
ZHANG Jianguo, SU Yongzhi, ZHU Jiajun, et al. Tuina treatment for children with autism[J]. Global Traditional Chinese Medicine, 2017, 10(8):915-917.
[19] 王登辉, 侯中伟, 和俊燕, 等. 基于内关穴临床与实验文献的经穴-脏腑相关理论初探[J]. 光明中医, 2022, 37(1): 24-28.
WANG Denghui, HOU Zhongwei, HE Junyan, et al. A preliminary study on the theory of correlation between channel acupoints and zang-fu organs based on Neiguan (PC6) clinical and experimental literature[J]. Guangming Journal of Chinese Medicine, 2022, 37(1):24-28.
[20] 赵美华. 经络按摩结合运动疗法治疗儿童自闭症的临床疗效观察[J]. 中医临床研究, 2019, 11(9):11-13.
ZHAO Meihua. Clinical observation of meridian massage combined with exercise therapy in the treatment of children with autism[J]. Clinical Jounal of Chineses Medicine, 2019, 11(9): 11-13.
[21] 蔡柳萍. 3D服装虚拟技术实用性的研讨: 虚拟服装压与真实服装压的回归关系[J]. 轻纺工业与技术, 2022, 51(3):64-65,73.
CAI Liuping. Discussion on the practicality of 3D clothing virtual technology: the return relationship between virtual clothing pressure and real clothing press[J]. Light and Textile Industry and Technology, 2022, 51(3): 64-65,73.
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