Journal of Textile Research ›› 2024, Vol. 45 ›› Issue (10): 184-190.doi: 10.13475/j.fzxb.20240100501
• Apparel Engineering • Previous Articles Next Articles
QIU Wenchi1, LI Tao1, MA Ling1, LÜ Yexin1,2, ZOU Fengyuan1,3,4()
CLC Number:
[1] | ZHANG Y, MA L, GUO Z, et al. Personalized garment pattern generation based on space vector and distance ease[J]. International Journal of Clothing Science and Technology, 2023, 35(5): 715-737. |
[2] | CHRIMES C, BOARDMAN R, MCCORMICK H, et al. Investigating the impact of body shape on garment fit[J]. Journal of Fashion Marketing and Management, 2023, 27(5): 741-759. |
[3] | KIM I H, HAN H, SHIN S J H. Characteristics of women's basic bodice pattern formation in relation to the anthropometric references[J]. International Journal of Clothing Science and Technology, 2021, 33(2): 188-198. |
[4] | DOMINGO J, IBÁÑEZ M V, SIMÓ A, et al. Modeling of female human body shapes for apparel design based on cross mean sets[J]. Expert Systems with Applications, 2014, 41(14): 6224-6234. |
[5] | ZAKARIA N, RUZNAN W S. Developing apparel sizing system using anthropometric data: body size and shape analysis, key dimensions, and data segmentation[G]//ZAKARIA N, GUPTA D. Anthropometry, Apparel Sizing and Design (2nd Ed). Woodhead Publishing, 2020: 91-121. |
[6] | BAO C, MIAO Y, GU B, et al. 3D interactive garment parametric pattern-making and linkage editing based on constrained contour lines[J]. International Journal of Clothing Science and Technology, 2021, 33(5): 696-723. |
[7] | LEI G, LI X. A new approach to 3D pattern-making for the apparel industry: Graphic coding-based localization[J]. Computers in Industry, Amsterdam: Elsevier, 2022. DOI: 10.1016/j.compind.2021.103587. |
[8] | SUN J, CAI Q, LI T, et al. Body shape classification and block optimization based on space vector length[J]. International Journal of Clothing Science and Technology, 2019, 31(1): 115-129. |
[9] | BARTOL K, BOJANIC D, PETKOVIC T, et al. A Review of Body Measurement Using 3D Scanning[J]. IEEE Access, 2021, 9: 67281-67301. |
[10] | PARKER C J, GILL S, HARWOOD A, et al. A method for increasing 3D body scanning's precision: gryphon and consecutive scanning[J]. Ergonomics, 2022, 65(1): 39-59. |
[11] | JIN P, FAN J, ZHENG R, et al. Design and research of automatic garment-pattern-generation system based on parameterized design[J]. Sustainability, 2023. DOI 10.3390/su15021268. |
[12] | 王婷, 顾冰菲. 基于图像的人体颈肩部三维模型构建[J]. 纺织学报, 2021, 42(1): 125-132. |
WANG Ting, GU Bingfei. 3-D modeling of neck-shoulder part based on human photos[J]. Journal of Textile Research, 2021, 42(1): 125-132. | |
[13] | CARUFEL R, BYE E. Exploration of the body-garment relationship theory through the analysis of a sheath dress[J]. Fashion and Textiles, 2020, 7(1): 22. |
[14] | 薛福平. 日本文化女装新原型构成要素与造型的关系[J]. 纺织学报, 2007, 28(10): 91-94. |
XUE Fuping. Relationship of constitute element and silhouette about the Japanese New Cultural Women's Wear Block[J]. Journal of Textile Research, 2007, 28(10): 91-94. |
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