51黑料吃瓜在线观看,51黑料官网|51黑料捷克街头搭讪_51黑料入口最新视频

設(shè)為首頁 |  加入收藏
首頁首頁 期刊簡介 消息通知 編委會(huì) 電子期刊 投稿須知 廣告合作 聯(lián)系我們
皮膚黏彈性的體內(nèi)檢測(cè)方法研究現(xiàn)狀與展望

Research status and prospect of in vivo measurement of skin viscoelasticity

作者: 陸思宇  曲曉威  張彤  宋義林 
單位:黑龍江大學(xué) 機(jī)電工程學(xué)院(哈爾濱 150080)
關(guān)鍵詞: 皮膚;  黏彈性;  檢測(cè)方法;  印壓法;  生物力學(xué) 
分類號(hào):R318.01
出版年·卷·期(頁碼):2020·39·1(96-102)
摘要:

皮膚黏彈性作為皮膚組織的重要生物力學(xué)特性,對(duì)生理病理狀態(tài)的分析、診斷、治療有著極其重要的參考價(jià)值和指導(dǎo)作用,是評(píng)價(jià)皮膚功能的重要指標(biāo)。近年來,隨著生活水平的日漸提高和家庭護(hù)理需求的不斷提升,人們?cè)絹碓街匾暺つw的美容、保健與護(hù)理。因此,與人體皮膚黏彈性相關(guān)的體內(nèi)檢測(cè)方法得到了廣泛關(guān)注,皮膚黏彈性體內(nèi)檢測(cè)裝置的研發(fā)也有了進(jìn)一步推進(jìn)。本文闡述了各類皮膚黏彈性體內(nèi)檢測(cè)方法的原理與技術(shù)發(fā)展歷程,歸納了各種檢測(cè)方法的優(yōu)缺點(diǎn)并做了對(duì)比分析,最后對(duì)皮膚黏彈性未來的研究方向進(jìn)行了展望。

 Viscoelasticity is considered as an important biomechanical property of skin, which plays an extremely important role in the whole procedure of evaluation, research, and treatment of dermal problems. In recent years, with the improvement of living standards and the increasing demand for family care, people pay more and more attention to skin beauty, health care and nursing. Thus, in vivo skin viscoelasticity detection technology of human skin has been widely concerned, which has further accelerated the development of in vivo skin viscoelasticity detection device.  In this paper, the principle and technological development of various skin viscoelasticity in vivo detection methods are described, the advantages and disadvantages of the detection methods are summarized and compared, and the future research directions are prospected.

參考文獻(xiàn):

[1] 盧天健, 徐峰. 皮膚的力學(xué)性能概述[J].力學(xué)進(jìn)展, 2008, 38(4):393-426.

Lu TJ, Xu F. Mechanical properties of skin:a review [J]. Advances in Mechanics, 2008, 38(4):393-426.

[2] 成海平,劉正津,何光篪. 生物軟組織力學(xué)活體測(cè)試技術(shù)進(jìn)展[J]. 力學(xué)進(jìn)展, 1995, 25(3):401-409.

Cheng HP, Liu ZJ, He GC, et al. The experimental approaches on the technique of measuring the mechanical properties of soft tissues in vivo [J]. Advances in Mechanics. 1995, 25(3):401-409.

[3] 王志超, 趙恒義, 楊黎明. 壓縮載荷作用下皮膚的生物力學(xué)特性[J]. 寧波大學(xué)學(xué)報(bào)(理工版), 2015,28(4):64-69.

Wang ZC,Zhao HY,Yang LM. Biomechanical property of the skin under compressive load [J].Journal of Ninbo University(NSEE), 2015,28(4):64-69.

[4] 吳新豐, 康國政, 錢林茂. 豬背部皮膚生物力學(xué)特性的實(shí)驗(yàn)研究[J]. 醫(yī)用生物力學(xué),2009,24(6):452-457.

Wu XF,Kang GZ,Qian LM .Experimental study on biomechanical property of the skin in pig's back[J]. Journal of Medical Biomechanic,2009, 24(6):452-457.

[5] Kvistedal YA , Nielsen PMF . Estimating material parameters of human skin in vivo[J]. Biomech Model Mechanobiol, 2009, 8(1):1-8.

[6] Hiroshi O , Shigemi K , Midori O , et al. Use of cutometer area parameters in evaluating age-related changes in the skin elasticity of the cheek.[J]. Skin Research & Technology, 2013, 19(1):238-242.

[7] Qu D,Leverett JC , Mayne JR . Cutometer皮膚彈性分析方法的開發(fā)與應(yīng)用[C]// 第七屆中國化妝品學(xué)術(shù)研討會(huì)論文集. 北京:中國香料香精化妝品工業(yè)協(xié)會(huì), 2008:238-243.

Qu D, Mayne JR , Seehra GP , et al. Development and application of novel viscoelastic parameters in cutometer[C].Proceedings of the 7th China cosmetic symposium.Beijing:China Association of Fragrance Flavour and Cosmetic Industries ,2008:238-243.

[8] Luebberding S , Krueger N , Kerscher M . Quantification of age-related facial wrinkles in men and women using a three-dimensional fringe projection method and validated assessment scales[J]. Dermatologic Surgery, 2014, 40(1):22-32.

[9] 程方, 高金平, 楊森, 等. 漢族人群皮膚彈性與年齡和部位的相關(guān)性分析[J]. 中國美容醫(yī)學(xué), 2017,26(2):61-64.

Cheng F, Gao JP, Yang S, et al. Age-related and regional changes in skin elasticity: a quantitative evaluation of han subjects [J]. Chinese Journal of Aesthetic Medicine, 2017,26(2):61-64.

[10] 黃燕平, 鄭永平. 組織彈性測(cè)量之傳統(tǒng)印壓測(cè)試[J]. 中國醫(yī)療設(shè)備, 2011,26(7):1-12.

Huang YP, Zheng YP. Traditional indentation test for measurement of soft tissue elasticity [J].China Medical Devices, 2011,26(7):1-12.

[11] 寇良朋, 孫中圣, 劉源峰, 等. 動(dòng)態(tài)載荷下手指非線性響應(yīng)實(shí)驗(yàn)研究[J]. 機(jī)械制造與自動(dòng)化, 2013, 42(5):7-9.

Kou LP, Sun ZS, Liu YF, et al. Experimental study of finger nonlinear response under dynamic loading[J]. Mechanical Building & Automation, 2013, 42(5): 7-9.

[12] 胡偉, 汪道輝, 陳科,等. 軟組織壓彈性模量力學(xué)測(cè)量裝置的設(shè)計(jì)[J]. 實(shí)驗(yàn)科學(xué)與技術(shù), 2015, 13(4):19-21. 

Hu W, Wang DH, Cheng K, et al. Scheme for mechanical measuring device used to the compression elasticity of soft tissue [J] Experimental Science and Technology, 2015, 13(4):19-21.

[13] 王恒, 桑元俊. 動(dòng)態(tài)微印壓方法前臂皮膚黏彈性屬性測(cè)量[J]. 科學(xué)技術(shù)與工程, 2017,17(3):164-168.

Wang H , Sang YJ. Measurement of viscoelastic properties of forearm skin based on dynamic micro indentation method[J]. Science Technology and Engineering, 2017,17(3): 164-168.

[14] Zheng YP , Mak AFT . Extraction of quasi-linear viscoelastic parameters for lower limb soft tissues from manual indentation experiment[J]. Journal of Biomechanical Engineering, 1999, 121(3):330-339.

[15] Schade PDH . Untersuchungen zur organfunction des bindegewebes[J]. Zeitschrift Für Experimentelle Pathologie Und Therapie, 1913, 14(1):1-29.

[16] Kirk E , Kvorning SA . Quantitative measurements of the elastic properties of the skin and subcutaneous tissue in young and old individuals[J]. Journal of Gerontology, 1949, 4(4):273-284.

[17] Lewis HE , Mayer J , Pandiscio AA . Recording skinfold calipers for the determination of subcutaneous edema [J]. Journal of Clinical Laboratory Analysis, 1965,66(1):154-160.

[18] Mak AFT , Liu GHW , Lee SY . Biomechanical assessment of below-knee residual limb tissue[J].The Journal of Rehabilitation Research and Development, 1994, 31(3):188-198.

[19] Pathak AP, Silver-Thorn MB, Thierfelder CA, et al. A rate-controlled indentor for in vivo analysis of residual limb tissues [J]. IEEE transactions on rehabilitation engineering:a publication of the IEEE Engineering in Medicine and Biology Society, 1998,6(1):12-20.

[20] Klaesner JW , Commean PK , Hastings MK , et al. Accuracy and reliability testing of a portable soft tissue indentor[J]. IEEE Transactions on Neural Systems and Rehabilitation Engineering, 2001, 9(2):232-240.

[21] Lu MH , Yu W , Huang QH , et al. A hand-held indentation system for the assessment of mechanical properties of soft tissues in vivo[J]. IEEE Transactions on Instrumentation and Measurement, 2009, 58(9):3079-3085. 

[22] Gefen A, Megido-ravid M, Itzchak Y. In vivo biomechanical behavior of the human heel pad during the stance phase of gait[J]. Journal of Biomechanics, 2002, 34(12):1661-1665.

[23] Laasanen MS, T, J, Hirvonen J, et al. Novel mechano-acoustic technique and instrument for diagnosis of cartilage degeneration[J]. Physiological Measurement, 2002, 23(3):491-503.

[24] Li X, Wang G, Huang L, et al. Young\"s modulus extraction methods for soft tissue from ultrasound measurement system[J]. Instrumentation Science & Technology, 2006, 34(4):393-404.

[25] 王立科,鄭永平,黃燕平,等.應(yīng)用于組織力學(xué)性能分析的光學(xué)印壓系統(tǒng)研究[J].中國醫(yī)療設(shè)備,2011,26(1):22-24.

Wang LK, Zheng YP, Huang YP, et al. Optical indentation system for analysis of the mechanical properties of tissue[J]. China Medical Devices,2011,26(1): 22-24.

[26] Liu H, Li J, Song X, et al. Rolling indentation probe for tissue abnormality identification during minimally invasive surgery[J]. IEEE Transactions on Robotics, 2011, 27(3):450-460. 

[27] Lu MH , Zheng YP , Huang QH . A novel noncontact ultrasound indentation system for measurement of tissue material properties using water jet compression[J]. Ultrasound in Medicine and Biology, 2005, 31(6):817-826.

 [28] Huang YP, Zheng YP, Wang SZ, et al. An optical coherence tomography (OCT)-based air jet indentation system for measuring the mechanical properties of soft tissues[J]. Measurement Science and Technology, 2009, 20(1):1-11.

[29] 鄧輝勝,黃晶,李進(jìn)嵩,等.介入超聲印壓系統(tǒng)的壓力和超聲校驗(yàn)研究[J].醫(yī)療設(shè)備信息,2007,22(7):2-4.

Deng HS, Huang J, Li JS, et al. Discussion on checking the pressure and ultrasound of intervention supersonic indentation system[J]. Information of Medical Equipment,2007,22(7):2-4.

[30] 王晴. 液體加載式皮膚軟組織生物力學(xué)測(cè)試儀的研制與應(yīng)用[D]. 第三軍醫(yī)大學(xué), 2009.

Wang Q. Development and application of a novel liquid-loading device for biomechanical testing on skin tissue[D]. The Third Military Medical University, 2009.

[31] Srinivasan S, Krouskop T, Ophir J. Comparing elastographic strain images with modulus images obtained using nanoindentation: preliminary results using phantoms and tissue samples[J]. Ultrasound in Medicine & Biology, 2004, 30(3):329-343.

[32] Li C, Pruitt LA, King KB. Nanoindentation differentiates tissue-scale functional properties of native articular cartilage[J]. Journal of Biomedical Materials Research, 2006, 78(4):729-738.

[33] Grant CA, Twigg PC, Tobin DJ. Static and dynamic nanomechanical properties of human skin tissue using atomic force microscopy: effect of scarring in the upper dermis[J]. Acta Biomaterialia, 2012, 8(11):4123-4129.

[34] Gennisson JL, Baldeweck T, Tanter M, et al. Assessment of elastic parameters of human skin using dynamic elastography[J]. IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control, 2004, 51(8):980-989.

[35] Omata S , Terunuma Y . New tactile sensor like the human hand and its applications[J]. Sensors and Actuators A (Physical), 1992, 35(1):9-15.

[36] Ishihara H, Sugo Y, Tsutsui M, et al. The ability of a new continuous cardiac output monitor to measure trends in cardiac output following implementation of a patient information calibration and an automated exclusion algorithm[J]. Journal of Clinical Monitoring and Computing, 2012, 26(6):465-471.

[37] 鄭永平, 黃燕平.生物組織彈性測(cè)量:技術(shù)、儀器和應(yīng)用[J]. 中國醫(yī)療設(shè)備, 2011, 26(5):1-15.

Zheng YP, Huang YP. Soft tissue elasticity measurement: techniques, instrument and applications [J]. China Medical Devices, 2011, 26(5):1-15.

服務(wù)與反饋:
文章下載】【加入收藏
提示:您還未登錄,請(qǐng)登錄!點(diǎn)此登錄
 
友情鏈接  
地址:北京安定門外安貞醫(yī)院內(nèi)北京生物醫(yī)學(xué)工程編輯部
電話:010-64456508  傳真:010-64456661
電子郵箱:[email protected]