FACULTY

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Ma, Jinjin 

  • Positional Title: Professor

  • Email: jinjinma@scut.edu.cn

  • Working For: Shien-Ming Wu School of Intelligent Engineering

  • Zip Code: 510640

  • Office: D1-b206

  • Graduated School: University of Michigan

Personal profile

马津津博士毕业于密歇根大学机械工程系,研究方向为生物医学工程。为进一步拓展交叉研究背景并加深基础研究和临床研究的转化,自2012年开始于克利夫兰诊所从事博士后工作, 2017年起任副研究员和克利夫兰诊所肌肉骨骼研究中心(MSRC)成员,并先后在克利夫兰诊所生物医学工程系及骨外科系独立开展研究,主持(PI)科研项目3个参与(co-I)1个。在临床及生物医学工程和组织工程领域的高水平期刊上多次发表论文,授权 2 项美国专利授权,并获得了多项杰出奖项,包括美国运动医学骨科学会 AOSSM 国际卓越研究奖、密歇根大学 Proquest 杰出论文奖及克利夫兰诊所Lerner研究所主席创新基金奖。

马博士与2022年全职回国,就职于华南理工大学医学院、未来健康研究院,兼岗吴贤铭智能工程学院,担任教授职位,独立PI和博士生导师。目前主要研究领域包括生物力学、组织工程及精准医学等。研究方向为改善关节修复后的愈合的治疗策略及结果工具的研发转化, 包括:关节相关的疾病的临床观察性研究、不同维度(严重程度与修复愈合)的生物标记物、临床流行病的结局信息测量工具(MRI,PROMs)的开发和转化及生物治疗(干细胞,组织工程,生物材料)。

Work Experience

  • 2023–至今: 中国, 华南理工大学, 吴贤铭智能工程学院, 教授(兼岗)

  • 2022–至今: 中国, 华南理工大学, 医学院,未来健康研究院,教授

  • 2019–2022: 美国, 克利夫兰诊所, 骨外科, 副研究员

  • 2017–2022: 美国, 克利夫兰诊所 生物医学工程, 副研究员

  • 2012–2017: 美国, 克利夫兰诊所 生物医学工程, 博士后2006–2012: 美国, 密歇根大学, 机械工程, 研究助理

Education

  • 美国, 密歇根大学, 机械工程, 博士

  • 美国, 密歇根大学, 机械工程, 学士

  • 中国,上海交通大学,机械工程,学士

Research Interest

  • 生物力学,组织工程,精准医学

Selected Publications

  • 1.Ma J, Sahoo S, Imrey PB, Jin Y, Baker Ar, Entezari V, Ho J, Iannotti JP, Ricchetti ET, Polster JM, Winalski CS, Derwin KA, Agreement between intraoperative and magnetic resonance imaging assessments of rotator cuff pathology and 2 magnetic resonance imaging-based assessments of supraspinatus muscle atrophy, J Shoulder Elbow Surg International, 2022, Sep 14;6(6):948-956

  • 2.Ma J, Sahoo S, Imrey PB, Jin Y, Baker Ar, Entezari V, Ho J, Iannotti JP, Ricchetti ET, Polster JM, Winalski CS, Derwin KA, Inter-rater agreement of rotator cuff tendon and muscle MRI parameters evaluated preoperatively and during the first postoperative year following rotator cuff repair, J Shoulder Elbow Surg, 2021, Dec;30(12):e741-e752

  • 3.Sahoo, S., Ma, J., Tastaldi, L., Baker, A.R., Loftis, J., Rosen, M.J. and Derwin, K.A., Biodegradable hyaluronan hydrogel coatings on acellular dermis grafts—A potential strategy to improve biologic graft durability in hernia repair application. Journal of Biomedical Materials Research Part B: Applied Biomaterials, 107(8), pp.2664-2672, 2019

  • 4.Ma, J., Piuzzi, N.S., Muschler, G.F., Iannotti, J.P., Ricchetti, E.T. and Derwin, K.A., Biomarkers of rotator cuff disease severity and repair healing. Journal of Bone and Joint Research reviews, 6(9), p.e9, 2018

  • 5.Ma J, Baker AR, Calabro T, Derwin KA, Exploratory Study on the Effect of Osteoactivin on Muscle Regeneration in a Rat Volumetric Muscle Loss Model, PLoS ONE, 12(4):e017583, 2017

  • 6.Ma, J., Sahoo, S., Baker, A.R. and Derwin, K.A., Investigating Muscle Regeneration With a dermis/small Intestinal Submucosa Scaffold in a Rat Full-Thickness Abdominal Wall Defect Model. Journal of biomedical materials research. Part B, Applied biomaterials, 103(2), pp.355-364, 2015

  • 7.Ma J and Arruda EM. A Micromechanical Viscoelastic Constitutive Model for Native and Engineered Anterior Cruciate Ligaments, Computer Models in Biomechanics From Nano to Macro, GA Holzapfel and E Kuhl Eds, Springer, 351-363, 2013

  • 8.Ma J, Smietana MJ, Kostrominova TY, Wojtys EM, Larkin LM and Arruda EM. Three- Dimensional Engineered Bone-Ligament-Bone Constructs for ACL Replacement in the Sheep.  Tissue Engineering Part A, 18 (1 & 2): 103-116, 2012 (cover article)

  • 9.Ma J, Gharaee-Kermani M, Kunju L, Hollingsworth J,  Adler J,  Arruda  EM and  Macoska  JA, Prostatic Fibrosis is Associated with Lower Urinary Tract Dysfunction, The Journal of Urology, 188(4), 1375-1381, 2012

  • 10.Ma J, Narayanan H, Garikipati K, Grosh K and EM Arruda. Experimental and Computational Investigation of Viscoelasticity of Native and Engineered Ligament and Tendon. Proceedings of the IUTAM Symposium on Cellular, Molecular and Tissue Mechanics, K Garikipati and EM Arruda Eds, Springer, 16: 3-17, 2010

  • 11.Ma J, Goble K, Smietana MJ, Kostrominova T, Larkin LM and EM Arruda. Morphological and Functional Characteristics of Three-Dimensional Engineered Bone-Ligament-Bone Constructs Following Implantation. Journal of Biomechanical Engineering, 131(10):  101017-1 101017-9, 2009

  • 12.Smietana MJ, Syed-Picard FN, Ma J, Kostrominova TY, Arruda EM and Larkin LM. The effect of implantation on scaffoldless three-dimensional engineered bone constructs. In Vitro Cellular and Developmental Biology - Animal, 45 (9), 512-522, DOI: 10.1007/s11626-009-9216-3, 2009