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皮肤柔性弹性客观定量灵敏分析激光测量仪

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世联博研(北京)科技有限公司(Bio Excellence International Tech Co.,Ltd),简称世联博研(Bioexcellence),是一家国际前沿生命科学设备、耗材、试剂代理销售与技术服务科技企业,于2010年成立于北京。 世联博研(Bioexcellence)意即联合世界生命科学界有秀的博士研究生,通过他们向厂商、用户传递专业、实效的生命科学产品与服务,把包括生物力学、3D生物打印、再生医学、生物医学工程、微流控&组织器官芯片、细胞微环境在内的等生命科学国际前沿产品与技术引进中国,为中国科研学者提供专业、实效的仪器设备、耗材、试剂以及科研技术服务一站式解决方案。 世联博研有10多年的国际前沿科研仪器代理销售经验,已成功与国际生命科学领域近50多家的科研产品制造商以及1300多家中国三甲医院、2100多家科研院所、600多家高校、400多家检验检疫等用户单位建立了良好诚信的长期合作关系,正以不断引进国际前沿生命科学领域科研产品、专业和规模化的营销渠道、高效安quan的国际联运、快捷的海关清关报关和专业人性化售前售后的服务模式,实现了国际厂家与中国科研用户的对接、落地实施,实现合作伙伴资源共享,共同发展,世联博研(Bioexcellence)是个开放热情的企业单位,热烈欢迎国内外相关单位人士洽谈、合作,共谋发展。世联博研业务范围:科研院所单位、生物医学科研高校、医院基础科研单位等。世联博研公司代理的品牌具有:1)近10年长期稳定的货源2)以生物力学、细胞力学、生物打印机、电纺丝、酶联斑点分析、细胞生物分子学、生物医学组织工程、生物材料学为主,兼顾其他相关产品线3)提供专业产品培训和销售培训4)良好的技术支持5)已成交老客户考证6)每年新增的货源。
测试仪
皮肤柔性弹性客观定量灵敏分析激光测量仪
皮肤柔性弹性客观定量灵敏分析激光测量仪 产品信息
产品名称:皮肤等软组织等纤维化柔韧度紧致度弹性材料机械特性实时测定系统品牌:美国 货号:btc2k价格:询价 :李先生电话: 皮肤等软组织等纤维化、柔韧度、紧致度、弹性材料机械特性实时测定系统

用于对以下生物力学特性进行客观、定量和灵敏分析的激光测量系统:

●皮肤弹性、柔软度、紧致度(测试护肤品和仪器的效果)
●伤口强度和生物力学组织特征(评估疤痕/烧伤、伤口愈合、伤口闭合和手术组织粘合剂的治疗。
●粘性有机硅凝胶(量化材料性能-乳房植入物有机硅填充物的合规性)



对皮肤,软组织,伤口闭合,伤口愈合以及弹性材料的完整和破坏性表征的生物力学特性进行客观,定量和灵敏的分析。


其测量样品的种类包括人类及动物皮肤、瘢痕及愈合组织、人工凝胶及植入假体,人工器、橡胶薄膜、塑胶薄膜等多种材料。 


测量原理是通过在被测皮肤表面形成负压,使皮肤吸入测试探头,此探头有一对收发光管(激光收发装置),发光管的激光功率恒定,由于吸入皮肤的深度不同,接收管感到的激光强度也不同,从而可以得到深度一气压差的曲线,通过分析此曲线就可以得到皮肤的弹性和粘弹性值。

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应用领域:

→    皮肤纤维化、弹性、ji限形变、松弛度、硬度(模量)、能量吸收、柔韧性变化评价

→    生物力学皮肤的评估

→    病理状态下皮肤的弹性变化

→    化妆品和激光对皮肤的效

→    皮肤及凝胶类组织的弹性、硬度实时测量

→    组织工程皮肤的生物学特性及临床应用评价

→    体表的创伤愈合和伤口愈合的早期阶段皮肤的弹性特征分析

→    非破坏性测量完整的人体皮肤,对伤口和弹性材料进行测量

主要优势

  •  对皮肤弹性测量为wu创型测量,不会对皮肤或材料产生破坏

  •  采用高分辨率激光(?m)和负压(毫米和毫巴)传感器

  • 测量方法简便快捷、技术实现成本较低

  • 屏幕进行实时图形更新,可自动计算和自动显示测量结果

  • 简单的触摸屏界面,测试流程简单

  • 系统为便携式轻量化系统,容易携带,可提供实时数据和结果

  • 可选择应力-应变计算,归一化面积和样品厚度

  • 应用领域多样,包括对皮肤、软组织和伤口愈合、凝胶材料、薄膜材料等

  • 用于输入和分析测试的软件兼容Windows 系统,可直接连接打印机进行打印

图片上传


应用文献:


BTC - 2000测量软组织纤维化的临床效用评价

硬皮病皮肤受累和纤维化活性的生物标志物

测量辐射后皮下软组织纤维化:技术和未来方向

口服补充剂改善光老化皮肤外观的安慰剂对照研究 1

人脸皮肤的粘弹性特性——初步研究

硅凝胶乳房植入物的物理特性

烧伤脉冲多模式定量分析

减肥对脂肪团的影响:雌性脂肪营养不良(松弛度) 

使用非侵入性仪器表征人的面部和腹部皮肤

系统性硬化症皮肤生物力学特性的wu创测量

真皮厚度、组织成分和身体部位对皮肤生物力学特性的影响

非侵入性设备和微生物活检评估后面部皮肤再生的新用途

使用BTC - 2000装置对接受加速部分乳房照射 (APBI) 治疗的患者的乳房纤维化进行客观评估

非烧蚀激光技术的定量评价。

伤口破裂强度和局部皮肤粘合剂顺应性的体内研究

直接比较烧伤疤痕特性定量评估的重现性和可靠性

In Vivo Btc - 2000 ? 测量接受手术修复的脱垂患者的前阴道壁生物力学特性

脱垂阴道前壁的粘弹性测量:一种以患者为导向的方法

人体脱垂阴道前壁粘弹性的体内测量

生物力学皮肤特性评估:蜂窝组织皮肤是否不同

 

使用wu创仪器客观测量面部嫩肤治疗后人面部皮肤的变化

 

 

  • Measurement      of change in the mechanical properties of burned skin to therapist      intervention with a vacuum device. Gabriel V, Kowalske K. Burns. 2015      Jun;41(4):796-802.
  • Establishing a Reproducible Hypertrophic Scar      following Thermal Injury: A Porcine Model. Scott J. Rapp, MD, Aaron      Rumberg, BS, Marty Visscher, PhD, David A. Billmire, MD, Ann S.      Schwentker, MD, and Brian S. Pan, MD. Plast Reconstr Surg Glob Open. 2015      Feb; 3(2): e309. 
  • Silicone      gel breast implants: science and testing. Kinney BM1, Jeffers LL, Ratliff      GE, Carlisle DA. Plast Reconstr Surg. 2014 Jul;134(1 Suppl):47S-56S.
  • Viscoelastic      Properties of Human Facial Skin- A Pilot Study. M.W. Beatty · A. Wee ·      D.B. Marx · L. Ridgway · B. Simetich. Conference Paper. IADR General      Session and Exhibition 2014; 06/2014. 
  • Viscoelastic properties measurement of the      prolapsed anterior vaginal wall: a patient-directed methodology. Chuong      CJ, Ma M, Eberhart RC, Zimmern P. Eur J Obstet Gynecol Reprod Biol. 2014      Feb;173:106-12.
  • Effect of      Clostridial Collagenase Ointment on Healing, Scarring, and Granulation      Tissue in Acute Wounds. David Mire, Herbert Slade, Kathy Weedon, Shai      Rozen. Conference Paper: 2013 Clinical Symposium on Advances in Skin and      Wound Care, At Orlando, Fl
  • A comparative study of the surgically relevant      mechanical characteristics of the topical skin adhesives. Singer AJ, Perry      L. Acad Emerg Med. 2012 Nov;19(11):1281-6.
  • LiquiBand?      ExceedTM Topical Skin Adhesive Summary of Effectiveness Data. J Alarcon,      BSc (Hons), CCRA, G Miller, BSc (Hons). ADVANCED MEDICAL SOLUTIONS. web:      .
  • Multimodal quantitative analysis of early      pulsed-dye laser treatment of scars at a pediatric burn hospital. Bailey      JK, Burkes SA, Visscher MO, Whitestone J, Kagan RJ, Yakuboff KP, Warner P,      Randall Wickett R. Dermatol Surg. 2012 Sep;38(9):1490-6.
  • TOPICAL      SKIN CARE FORMULATIONS. United States Patent. Hines et al. Patent No.: US      8,178,106. Date of Patent: May 15, 2012. 
  • In Vivo      Btc-2000 Measurement of Anterior Vaginal Wall Biomechanical Properties in      Prolapse Patients Undergoing Surgical Repair. Elizabeth Mosier, Rachel      Jerome, Xian-Jin Xie, Charles CJ Chuong, J Yan, Robert C Eberhart and      Philippe E Zimmern. J Biotechnol Biomaterial. Dec 07, 2011. 1:117
  • Antioxidants      and Skin Aging: A Review. Christian Oresajo, PhD; Sreekumar Pillai, PhD;      Margarita Yatskayer, MS; Germain Puccetti, PhD; David H. McDaniel, MD.      Cosmetic Dermatology. November 2009 Vol. 22 No. 11.: 563-570.
  • In Vivo      Study of Wound Bursting Strength and Compliance of Topical Skin Adhesives.      Adam J. Singer MD, Larry C. Perry RN and Robert L. Allen Jr BS. Acad Emerg      Med. 2008 Dec;15(12):1290-4.
  • Overexpression of mIGF-1 in Keratinocytes      Improves Wound Healing and Accelerates Hair Follicle Formation and Cycling      in Mice. Ekaterina Semenova, Heidi Koegel, Sybille Hasse, Jennifer E.      Klatte, Esfir Slonimsky, Daniel Bilbao, Ralf Paus, Sabine Werner, and      Nadia Rosenthal. Am J Pathol. 2008 Nov; 173(5): 1295–1310.
  • Lip care compositions. United States Patent.      Wright et al. Pub. No.: US2008/0287540A1. Pub. Date: NOV. 20, 2008
  • Role of Rac1 in a Bleomycin-Induced Scleroderma      Model Using Fibroblast-Specific Rac1-Knockout Mice., Liu S, Kapoor M,      Shi-wen X, Kennedy L, Denton CP, Glogauer M, Abraham DJ, Leask A., Arthritis      Rheum. 2008 Jul;58(7):2189-95.
  • Accelerated Wound Closure in Mice Deficient for      Interleukin-10. Sabine A. Eming, Sabine Werner, Philippe Bugnon, Claudia      Wickenhauser, Lisa Siewe, Olaf Uterm?hlen, Jeffrey M. Davidson, Thomas      Krieg, and Axel Roers. Am J Pathol. 2007 Jan; 170(1): 188–202.
  • Development of a method for the evaluation of      wound tensile strength in cynomolgus macaques. Joel B. Cornacoff, Kreg      Howk, Bill Pikounis, Vince Mendenhall, Pauline Martin. Journal of      Pharmacological and Toxicological Methods. 28 August 2007.
  • Accelerated      Wound Closure in Mice Deficient for Interleukin-10. Sabine A. Eming,*      Sabine Werner,? Philippe Bugnon,? Claudia Wickenhauser,? Lisa Siewe,* Olaf      Uterm?hlen,§ Jeffrey M. Davidson,?|| Thomas Krieg,* and Axel Roers* Am J      Pathol. 2007 January; 170(1): 188–202.
  • Evaluation      of the multiple pass, low fluence algorithm for radiofrequency tightening      of the lower face. Melissa A. Bogle, MD 1 2 *, Nathan Ubelhoer, DO 1 3,      Robert A. Weiss, MD 4, Flor Mayoral, MD, Michael S. Kaminer, MD 1 Lasers      in Surgery and Medicine. Volume 39, Issue 3 , Pages 210 – 217. 2007.
  • Surfactants      in Personal Care Products and Decorative Cosmetics By Linda D. Rhein,      Mitchell Schlossman, Ponisseril Somasundaran, Anthony O'Lenick. Published      2006 CRC Press. Chapter 3, Noninvasive Techniques to Measure Cutaneous      Effects of Skin Care. Randall P. Wickett, PhD, Linda D. Rluein PhD,      Svetlana Babajanyan MD.
  • Peroxiredoxin      6 Is a Potent Cytoprotective Enzyme in the Epidermis.  Angelika      Kümin, Christine Huber, Thomas Rülicke, Eckhard Wolf, and Sabine      Werner.  Am J Pathol. 2006 October; 169(4): 1194–1205.
  • Effect of      Weight Loss on Cellulite: Gynoid Lypodystrophy. Smalls, Lola K. B.S.;      Hicks, Matthew; Passeretti, David M.D.; Gersin, Keith M.D.; Kitzmiller, W      John M.D.; Bakhsh, Adel M.D.; Wickett, R Randall Ph.D.; Whitestone,      Jennifer M.S.; Visscher, Marty O. Ph.D. Plastic & Reconstructive      Surgery. 118(2):510-516, August 2006.
  • COMPARISON BETWEEN LOW ENERGY, MULTIPLE PASS      TECHNIQUE AND HIGH ENERGY, FEWER PASS TECHNIQUE WITH THERMACOOL SYSTEM FOR      FACIAL REJUVENATION. Karen H. Kim, James Koch, and Roy G. Geronemus.      Journal of American Society for Laser Medicine and Surgery Abstracts 2005      Page 3 #74.
  • Emerging Technologies and Therapies in      Dermatology. Michael S. Krivda. Skin & Aging - ISSN: 1096-0120 -      Volume 13 - Issue 9_2005 - September 2005 - Pages: 78 – 84.
  • The      Epidermis in Wound Healing By David T. Rovee, Howard Ira Maibach.      Published 2004 Informa Health Care. Chapter 18 OptimizingEpidermal      Regeneration in Facial Skin Following Aesthetic Procedures. Greg Skover.      James M. Spencer, and Mitchel P. Goldman.
  • Activities      of the Matrix Metalloproteinase Stromelysin-2 (MMP-10) in Matrix      Degradation and Keratinocyte Organization in Wounded Skin. Monika Krampert      *, Wilhelm Bloch , Takako Sasaki , Philippe Bugnon *, Thomas R?licke ,      Eckhard Wolf ||, Monique Aumailley ", William C. Parks #, and Sabine      Werner *. Vol. 15, Issue 12, 5242-5254, December 2004.
  • Transgenic mice reveal novel activities of      growth hormone in wound repair, angiogenesis and myofibroblast      differentiation. Thorey IS, Hinz B, Hoeflich A, Kaesler S, Bugnon P,      Elmlinger M, Wanke R, Wolf E, Werner S. J Biol Chem. 2004 Jun      18;279(25):26674-84. Epub 2004 Apr 7.
  • Validation      of improved texture and elasticity measurement techniques using benchmark      cosmetic and dermatological anti-aging treatments. Stacy S Hawkins, PhDa,      Carol Feinberga, Melissa Matzke, MSa, Ronni Weinkauf, PhDa. Journal of the      American Academy of Dermatology. Volume 50, Issue 3, Page P26 (March 2004)
  • Use of a fibroblast growth factor-binding      protein for the treatment and diagnosis of diabetic wound healing      problems. Goppelt, Andreas (Wien, AT), Bittner Michaela (Wien, AT). United      States Patent . 01/19/2006.
  • Evaluation      of clinical utility of BTC-2000 for measuring soft tissue fibrosis. A. M.      Davis;C. Gerrand;A. Griffin;B. O'Sullivan;R. P. Hill;J. S. Wunder;A.      Abudu;R. S. Bell. Int J Radiat Oncol Biol Phys. 2004 Sep 1;60(1):286-94.
  • Comparison      of wound-bursting strengths and surface characteristics of FDA-approved      tissue adhesives for skin closure. Adam J. Singer, Tom Zimmerman, Jean      Rooney, Paul Cameau, Gregory Rudomen and Steve A. McClain. Journal of Adhesion      Science and Technology. Volume 18, Number 1 / January, 2004
  • Taking a Closer Look at Post-Surgical Skin      Changes. Larisa Hubbs. Skin & Aging - ISSN: 1096-0120 - Volume 11 -      Issue 10 - October 2003 - Pages: 100 – 104.
  • Quantitative      evaluation of nonablative laser technology. Friedman PM, Skover GR, Payonk      G, Geronemus RG. Semin Cutan Med Surg. 2002 Dec;21(4):266-73. 
  • Evaluation      of clinical utility of BTC-2000 for measuring soft tissue fibrosis. A. M.      Davis;C. Gerrand;A. Griffin;B. O'Sullivan;R. P. Hill;J. S. Wunder;A.      Abudu;R. S. Bell. Int J Radiat Oncol Biol Phys. 2004 Sep 1;60(1):286-94.
  • Jerry J. Wilmink. Vanderbilt University Center      for Matrix Biology. Research Summary. 2004
  • Interference with Transforming Growth Factor-?/      Smad3 Signaling Results in Accelerated Healing of Wounds in Previously      Irradiated Skin. Kathleen C. Flanders*, Christopher D. Major*, Alidad      Arabshahi*, Ekinadese E. Aburime*, Miya H. Okada*, Makiko Fujii*, Timothy      D. Blalock, Gregory S. Schultz, Anastasia Sowers, Mario A. Anzano*, James      B. Mitchell, Angelo Russo and Anita B. Roberts*. American Journal of      Pathology. 2003;163:2247-2257.
  • Non-Invasive      Skin Check Sensitive In Systemic Sclerosis Patients. Anne MacLennan. A      DGReview of :"Non-invasive measurement of biomechanical skin      properties in systemic sclerosis". Annals of the Rheumatic Diseases      (ARD Online). 03/01/2002.
  • Scleroderma      in children. Raynaud phenomenon, scleroderma, overlap syndromes, and other      fibrosing syndromes. Foeldvari, Ivan MD. Current Opinion in Rheumatology.      14(6):699-703, November 2002.
  • A 28-Day Study of the Effect of Coated VICRYL*      Plus Antibacterial Suture (Coated Polyglactin 910 Suture with Triclosan)      on Wound Healing in Guinea Pig Linear Incisional Skin Wounds. Mark Storch,      Larry C. Perry, Jeffrey M. Davidson, James J. Ward. Surgical Infections.      2002. 
  • Quantitative      evaluation of nonablative laser technology. Friedman PM, Skover GR, Payonk      G, Geronemus RG. Semin Cutan Med Surg. 2002 Dec;21(4):266-73.
  • Nonablative Resurfacing Improves Skin Topology      (New York-Skin & Allergy News, November, 2001)
  • Second      Messenger Eps8 Is A Gene Therapy Candidate In Wound Healing. Yubin Shi*,      Jayasri Dasgupta*,Jin-hua Liu*, Mike Slowey*, Gianluca Carlesso*, Susan R.      Opalenik*, Michaela Bittner#, , Andreas Goppelt#,Jeffrey M. Davidson*?      *Department of Pathology, Vanderbilt University, and ? Research Service,      VA Medical Center , Nashville, TN 37212; # Switch-Biotech AG, D-82152      Martinsried, Germany (yubin.shi@mcmail.vanderbilt.ed)
  • The      Conditional Knock-Out Of The Transforming Growth Factor Type II Receptor      In Fibroblasts Results In Impaired Wound Healing. Neil A. Bhowmick1, Anna      Chytil1, Cher      Carlisle2, Eric      Neilson3, Jeffrey      M. Davidson2*, Harold      L. Moses1. Departments      of 1Cancer      Biology, 2Pathology,      and 3Medicine,      Vanderbilt University, and *VA Medical      Center, Nashville, TN 37232 neil.bhowmick@mcmail.vanderbilt.edu
  • The The S100 Proteins MRP8 and MRP14 Are Active      As Gene Therapy Agents In Incisional Wound Repair. Jayasri Dasgupta*,      Yubin Shi*, Uwe Gosslar?, Wolgang Hans?, Michaela Bittner?, Andreas      Goppelt? and Jeffrey M Davidson*?. *Department of Pathology, Vanderbilt      University and ?Research Service, VA Med. Ctr., Nashville, TN and ?SWITCH      Biotech AG, D-82152 Martinsried, Germany (jayasri.dasgupta@mcmail.vanderbilt.edu)
  • The      evaluation of aluminum oxide crystal microdermabrasion for photodamage., Tan      MH, Spencer JM, Pires LM, Ajmeri J, Skover G., Dermatol Surg 2001      Nov;27(11):943-9
  • Assessment of Biomedical Skin Properties: Is      Cellulitic Skin Different? Dobke MK, DiBernardo B, Thompson RC, Usal H.      Aesthetic Surg J 2002;22:260-266
  • Impaired      wound healing in transgenic mice overexpressing the activin antagonist      follistatin in the epidermis. Wankell M, Munz B, Hubner G, Hans W, Wolf E,      Goppelt A, Werner S. EMBO J 2001 Oct 1;20(19):5361-72
  • Assessment      of Acute Tensile Strength in Wounds Closed with Fibrin Tissue Adhesive.      James W. Doyle Erin Wirth, Yaye Lo, and David Tuthill. American Red Cross,      Holland Laboratory, Rockville, MD. Presented at the Wound Healing Society      Meeting, 2001
  • Comparison      of the Biomechanical Properties of Burns Grafted with Conventional Split      Thickness Skin vs. IntegraTM Artificial Skin. DW Mozingo, MD; K Ben-David,      MD; KJ Perrin, RN BSN; GS Schultz, PhD, Department of Surgery, University      of Florida College of Medicine. Presented at the John Bostwick Burn &      Wound Symposium, February 2001.
  • The Effect Of An Amino Acid Complex On The      Biomechanical Behavior Of Facial Skin., Rube J. Pardo, Ph.D., M.D., Greg      Skover, Ph.D., Florence Foucauld, M.D., Mitchel P. Goldman, M.D. And      Richard E. Fitzpatrick, M.D.
  • Device measures skin stiffening in systemic      sclerosis. Chustecka Z, Rheumawire, March 21, 2002
  • Non-invasive      measurement of biomechanical skin properties in systemic sclerosis.      Balbir-Gurman A, Denton CP, Nichols B, Knight CJ, Nahir AM, Martin G,      Black CM. Ann Rheum Dis 2002 Mar;61(3):237-41.
  • Non-Invasive      Measurement Of Biomechanical Properties Of Skin In Systemic Sclerosis      Patients. Balbir-Gurman A.*, Nichols B.#, Denton C.P., Knight C.K., Martin      G.#, Black C.M., *Centre for Rheumatology, Royal Free Hospital, London,      UK., #Fibrogen Inc, South San Francisco, USA. *Department of Rheumatology,      Rambam Medical Center, Haifa.
  • Quantification Clinical Assessment of the Burn      Scar, Redden R.A., Eberhardt A.W., Smith D.R.*, Walker S.G.#, Feldman      D.S,Department of Biomedical Engineering, University of Alabama at      Birmingham; *Birmingham Surgical PC; #Department of Acute Physical      Therapy, UAB Outpatient Burn Clinic; Wound Healing Society Annual Meeting,      June 2000. Toronto, Canada.
  • Quantification      Of Wound Parameters In Animals Treated With Prolyl-4-Hydroxylase      Inihibitors, Nichols B., Witschi C., Guenzler V., Department of      Preclinical Development and Pharmacology, Fibrogen, Inc., South San      Francisco, CA; Wound Healing Society Annual Meeting, June 2000. Toronto,      Canada..
  • A Method      for Measuring Human Skin Elasticity In Vivo with Observations on the Effect      of Age, Sex, and Pregnancy. Grahame, R. Clinical Science (1970)      39,223-238.
  • BTC-1000 ?: System for in-vivo biomechanical      testing of linear incision wounds..
  • Use of Octyl-2-Cyanoacrylate for Skin Closure in      Facial Plastic Surgery, Dean M. Toriumi, M.D., Kevin O'Grady, Devang      Desai, M.D., Amita Bagal, M.D, Journal of Plastic and Reconstructive      Surgery, November 1998, Vol. 102, No. 6.
  • A Method for Assessing Biomechanical Properties of      Intact Skin. Azurin, D.J, Perry, L., Gendimenico, G., Allen, R., Maxwell,      G.P., Fisher, J., Energy Absorption: Presented at the American Society of      Plastic & Reconstructive Surgeons Annual Meeting - Boston, October 7      1998.
  • A      Non-Disruptive In-Vivo Method for Biomechanical Characterization of Linear      Incision Wound Healing: A Preliminary Report. Gingrass M., Perry L.,      Matrisian L., Hill D., Wright T., Robson M., Fisher J. Journal of Plastic      and Reconstructive Surgery 1998, Vol. 102, No. 3: 801-806.
  • A      Randomized Trial Comparing Octylcyanoacrylate Tissue Adhesive and Sutures      in the Management of Lacerations. Quinn, J., Wells, G., Sutcliffe, T.,      Jarmuske, M., Maw, J., Stiell, I., Johns, P., JAMA, May 21, 1997-Vol 277,      No. 19, pages 1527-1530.
  • The Role of Glutathione in a Rat Incisional      Wound Model. Adamson B., Schwarz D., Clugston P., Gilmont R., Perry L.,      Fisher J., Lindblad W., Rees R. Delayed Repair: Journal of Surgical      Research 1996, Vol. 62, 159-164..
  • A Technology and Methodology for Mechanical      Characterization of Intact Elastic Materials, and In-vivo Biomechanical      Analysis of Soft Tissues and Linear Incision Wounds. Perry, L., Maxwell,      GP., Fisher, J., Proceedings from The Biomaterials Society Meeting, San      Francisco California. March 1995.
  • A New Technology for In-vivo biomechanical Tissue      Analysis: Surgical Tissue Adhesives and Wound Healing. Vistnes D. M.,      Perry L. C., Fisher J., G. P. Maxwell. Proceedings from the Symposium on      Surgical Tissues Adhesives, Atlanta, Georgia. October 1994.
  • True In-Vivo Analysis of Linear Incision Wound      Strength. Vistnes D. M., Perry L. C., G. P. Maxwell, Fisher J. Abstracts      from Technologies to Assess Wound Healing Symposium. San Francisco,      California, May 1994.
  • In-Vivo Multiaxial Stress-Strain Analysis of Soft      Tissue: An Advancement in the Analysis of Incisional Wound Strength.      Vistnes D. M., Perry L. C., G. P. Maxwell, Fisher J. Proceedings from The      Biomaterials Society Meeting, Boston, MA. April 1994.
  • A New Method for Characterization of Elastic      Materials: Compliance Analysis of Silicone Elastomer Shells. Vistnes D.,      Perry L., Fisher J., Maxwell P., Proceedings from The Biomaterials Society      Meeting, Boston, MA. April 1994.
  • Characterization of Silicone Elastomer Shells:      The Role of Structural Modifications. Vistnes D. M., Perry L. C., Fisher      J., Maxwell G. P. Abstracts from the 39th Annual Meeting of the Plastic      Surgery Research Council. Ann Arbor, Michigan. June 1994.
  • Evaluation      of Silicone Gel Sheeting on the Wound Healing of Linear Incisions.      Clugston P. A., Vistnes D. M., Perry L. C., Maxwell G. P., Fisher J.      Annals of Plast. Surg. 1994, Vol. 34(1) 12-15.
  • Materials Characterization System Meets      Increasing Demands. Perry, L. Biomaterials forum, Vol 16(4), September      1994.
  • The Role of TGF-B1 and EGF in the Wound Healing      Process: An In-Vivo Biomechanical Evaluation. Perry LC, Connors AW,      Matrisian LM, Nanney LB, Charles D, Reyes D. J Wound Repair and Regen      1993; 1: 41-6.
  • A New In-Vivo System for Biomechanical      Characterization of Skin and Wound Healing. Perry LC, Fisher J. J 11th      Southern Eng Conf 1992:83-4.
  • An Improved      Method of Wound Disruption and Measurement. Charles D, Williams K III,      Perry L C, Fisher J, Rees R. J Surg. Res 1992; 52:214-8.





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