日用化学工业 ›› 2022, Vol. 52 ›› Issue (7): 750-755.doi: 10.3969/j.issn.1001-1803.2022.07.010
收稿日期:
2021-09-22
修回日期:
2022-07-01
出版日期:
2022-07-22
发布日期:
2022-07-21
通讯作者:
苏宁
基金资助:
Jia Xueting,Yue Zhang,Li Jingjing,Zhang Chenyang,Yang Li,Su Ning()
Received:
2021-09-22
Revised:
2022-07-01
Online:
2022-07-22
Published:
2022-07-21
Contact:
Ning Su
摘要: 采用皮肤3D快速成像系统(简称AEVA-HE)旨在探讨女性唇部及唇周皮肤衰老变化特征。实验选取20名符合条件健康女性志愿者参与测试,并分为青年组和老年组,每组10人,通过采集志愿者面部3D图像,对唇部、唇周皮肤生理参数特征统计分析。结果表明:唇周:青年组和老年组之间皮肤皱纹粗糙度(Ra,Rz)差异性具有统计学意义(P<0.05),青年组唇周皮肤更细腻;下唇纹:对青年组和老年组下唇平滑度(Stm,Sa)比较,未表现统计学意义;唇角:唇部粗糙度和皱纹深度具有统计学意义(P<0.05);唇部:唇部形态参数(Positive volume)结合3D可视化立体形态图,青年组唇部表现更饱满,但未表现统计学意义。结论通过试验表明AEVA-HE系统可采用客观数据与可视化图像表征唇部和唇周的皮肤纹理结构和形态特征,为化妆品企业与研究机构对唇部和唇周皮肤衰老评价提供技术参考。
中图分类号:
贾雪婷,岳章,李晶晶,张辰暘,杨丽,苏宁. 基于皮肤3D快速成像技术对唇部和唇周皮肤衰老分析[J]. 日用化学工业, 2022, 52(7): 750-755.
Jia Xueting,Yue Zhang,Li Jingjing,Zhang Chenyang,Yang Li,Su Ning. A study on the lip and perioral aging via fast optical in vivo topometry of human skin[J]. China Surfactant Detergent & Cosmetics, 2022, 52(7): 750-755.
表2
皮肤生理参数类型、含义和判断标准"
参数 | 参数含义 | 判断标准 |
---|---|---|
Ra,Rz | 皮肤皱纹粗糙度 | Ra,Rz值减小,皱纹改善 |
Sa,Stm | 皮肤表面光滑度 | Sa,Stm值减小,皱纹改善 |
深度值 | 相对零平面*,皱纹最大、最小深度值 | 皱纹最大、最小深度绝对值越小,皱纹变浅 |
体积值 | 相对零平面*,皱纹的体积值 | 体积值越小,皱纹越浅 |
面积值 | 相对零平面*,皱纹的面积值 | 面积值越小,皱纹越浅 |
Positive volume | 相对零平面*,测试区域形态体积值 | Positive volume值越大,越饱满 |
Positive area | 相对零平面*,测试区域形态面积值 | Positive area值越大,越饱满 |
[1] | Wang Zhongfeng, Chen Zhongcun. The actuality and progress of aesthetic surgry for the aging lips[J]. Chinese Journal of Aesthetic Medicine, 2006: 1315-1318. |
[2] | Ruan Jing, Wang Xueming. The analysis of lip texture at different age group[J]. Journal of Clinical Dermatology, 2011: 715-718. |
[3] | Pinsky M A. Efficacy and safety of an anti-aging technology for the treatment of facial wrinkles and skin moisturization[J]. Journal of Clinical & Aesthetic Dermatology, 2017, 10 (12) : 27. |
[4] |
Penna V, Stark G, Voigt M, et al. Classification of the aging lips: a foundation for an integrated approach to perioral rejuvenation[J]. Aesthetic Plastic Surgery, 2015, 39 (1) : 1-7.
doi: 10.1007/s00266-014-0415-2 |
[5] |
Bielfeldt S, Laing S, Sadowski T, et al. Characterization and validation of an in vivo confocal Raman spectroscopy led tri‐method approach in the evaluation of the lip barrier[J]. Skin Research and Technology, 2020, 26 (3) : 390-397.
doi: 10.1111/srt.12814 pmid: 31820504 |
[6] | Iblher N, Kloepper J, Penna V, et al. Changes in the aging upper lip a photomorphometric and MRI-based study (on a quest to find the right rejuvenation approach)[J]. Journal of Plastic Reconstructive & Aesthetic Surgery, 2008, 61 (10) : 1170-1176. |
[7] | Lisa, Ramaut, Patrick, et al. Aging of the upper lip: part Ⅰ: a retrospective analysis of metric changes in soft tissue on magnetic resonance imaging[J]. Plastic & Reconstructive Surgery, 2019, 143 (2) : 440-446. |
[8] | Baldasso R, Damascena N, Deitos A, et al. Morphologic alterations ear, nose and lip detected with aging through facial photoanthropometric analysis[J]. The Journal of forensic odonto-stomatology, 2019, 2 (37) : 25-34. |
[9] | Penna V, Stark G, Eisenhardt, et al. The aging lip: a comparative histological analysis of age-related changes in the upper lip complex[J]. Plastic & Reconstructive Surgery, 2009, 124 (2) : 624. |
[10] |
Thuy V, Jonathan T, Steven H, et al. Corner of the mouth: reversing the earliest sign of aging[J]. Facial Plastic Surgery, 2019, 35 (2) : 172-175.
doi: 10.1055/s-0039-1681070 pmid: 30943562 |
[11] | Uwe W. Perioral rejuvenation: restoration of attractiveness in aging females by minimally invasive procedures[J]. Clinical Interventions in Aging, 2013, 8: 1149-1155. |
[12] |
J-L Lévêque, Lévêque, Goubanova, et al. Influence of age on the lips and perioral skin[J]. Dermatology, 2004, 208 (4) : 307-313.
pmid: 15178912 |
[13] |
Chong Yuming, Dong Ruijia, Liu Xinyu, et al. Stereophotogrammetry to reveal age‐related changes of labial morphology among Chinese women aging from 20 to 60[J]. Skin Research and Technology, 2021, 27 (1) : 41-48.
doi: 10.1111/srt.12906 |
[14] | Liu Yuguang. Ouantitative evaluation of rejuvenation treatment of nasolabial foldwrinkles by regression model and 3D photography[D]. Beijing: Peking Union Medical College, 2018. |
[15] | Wang Peng, Sha Ou, Guo Ruoxi, et al. Experimental methods for evaluation of cosmetics delaying skin aging efficacy on humans[J]. Detergent & Cosmetics, 2021, 44 (9) : 42-44. |
[16] | Qi Yan, Liu Juan, Chen Yan, et al. A study on evaluating the effectiveness of anti-wrinkle cosmetics by fastoptical in vivo topometry of human skin method [G]//China Association of Fragrance Flavour and Cosmetic Industries. The Proceedings of the Seminar on Cosmetic China:2006. Beijing: China Association of Fragrance Flavour and Cosmetic Industries, 2006: 406-411. |
[1] | 柳婧璇, 金建明, 吴华. 化妆品植物原料(Ⅶ)——抗真菌的植物原料的研究与开发[J]. 日用化学工业(中英文), 2024, 54(3): 259-266. |
[2] | 胡翠翠, 周代红, 陈欣菀, 钟佳伶, 茆灿泉. 中药复方MHC-20的抗化脓性链球菌功效与作用机制探究[J]. 日用化学工业(中英文), 2024, 54(3): 282-289. |
[3] | 毕武, 潘小红, 涂晓琴, 殷帅, 孙辉. 基于网络药理学的化妆品原料粉防己抗敏作用机制分析[J]. 日用化学工业(中英文), 2024, 54(3): 305-312. |
[4] | 李瑶瑶. 异橙黄酮的抗衰老及抗氧化功效研究[J]. 日用化学工业(中英文), 2024, 54(3): 313-319. |
[5] | 张婉萍, 彭祺, 张冬梅, 郑时莲, 蒋汶, 顾理浩. 4-取代酚诱导化学性白斑的机制及研究进展[J]. 日用化学工业(中英文), 2024, 54(3): 320-328. |
[6] | 许梦然, 赵华. 化妆品晒后修护功效评价方法研究进展[J]. 日用化学工业(中英文), 2024, 54(3): 329-336. |
[7] | 塔娜, 冯孟鑫, 高家敏, 张凤兰, 王钢力. 潜在内分泌干扰风险防晒剂的监管及其使用情况分析[J]. 日用化学工业(中英文), 2024, 54(3): 337-343. |
[8] | 周文瑞, 贺建彪, 焦倩, 王紫迪, 苏芊芊, 贾焱. O/W乳化体系化妆品感官评价与仪器分析相关性研究进展[J]. 日用化学工业(中英文), 2024, 54(3): 344-352. |
[9] | 张丽媛, 颜琳琦, 程巧鸳, 戚绿叶, 王容, 黄柳倩. 高效液相色谱法测定化妆品中14种α-羟基酸和羟基酸酯[J]. 日用化学工业(中英文), 2024, 54(3): 353-359. |
[10] | 徐炜, 邹坡, 李长于, 杨铭, 鹿燕, 李慧良. 超高效液相色谱-串联质谱法测定化妆品中36种兴奋剂[J]. 日用化学工业(中英文), 2024, 54(3): 360-368. |
[11] | 周康夫, 支奕轩, 王飞飞, 尚亚卓. 新型乳化体系及其在化妆品中的应用(Ⅵ)——微乳液[J]. 日用化学工业(中英文), 2024, 54(2): 139-148. |
[12] | 张红菱, 程琳, 王海燕, 罗飞亚, 张会亮, 孙磊. 应用DPRA替代方法评价3种香豆素类化合物的皮肤致敏性[J]. 日用化学工业(中英文), 2024, 54(2): 156-160. |
[13] | 谢珍, 黄微, 张劲松, 陈舒怀, 瞿霖吉, 匡荣. 化妆品眼刺激性评价中角膜损伤生物标志物研究[J]. 日用化学工业(中英文), 2024, 54(2): 161-167. |
[14] | 李慧怡, 周悦, 吴谦, 杜丽镝, 谢嘉颖, 谭建华. 化妆品防晒黑功效评价方法研究[J]. 日用化学工业(中英文), 2024, 54(2): 168-174. |
[15] | 彭心宇, 梁海燕, 温紫娴, 李美停, 李鑫, 邱晓锋. 流变调节剂在二元喷雾产品中的影响[J]. 日用化学工业(中英文), 2024, 54(2): 181-187. |
|