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  • Dorthé E, Zhang Y. Load-bearing increase in alumina evoked by introduction of a functional glass gradient. J Eur Ceram Soc 2011.
  • Grogan, S. P., Dorthe, E. W. & D’Lima, D. D. CARTILAGE 3D PRINTING. in 3D Bioprinting and Nanotechnology in Tissue Engineering and Regenerative Medicine (eds. Zhang, L. G., Fisher, J. P. & Leong, K. W.) 265–280 (Elsevier, 2015).
  • Kador KE, Grogan SP, Dorthé EW, Venugopalan P, Malek MF, Goldberg JL, et al. Control of retinal ganglion cell positioning and neurite growth: combining 3D printing with radial electrospun scaffolds. Tissue Eng Part A 2016.
  • Jerban S, Ma Y, Nazaran A, Dorthe EW, Cory E, Carl M, et al. Detecting stress injury (fatigue fracture) in fibular cortical bone using quantitative ultrashort echo time-magnetization transfer (UTE-MT): An ex vivo study. NMR Biomed 2018;31:e3994.
  • van Schaik TJA, Gaul F, Dorthé EW, Lee EE, Grogan SP, D’Lima DD. Development of an Ex Vivo Murine Osteochondral Repair Model. Cartilage 2018;12:112–20.
  • Chen B, Cheng X, Dorthe EW, Zhao Y, D’Lima D, Bydder GM, et al. Evaluation of normal cadaveric Achilles tendon and enthesis with ultrashort echo time (UTE) magnetic resonance imaging and indentation testing. NMR Biomed 2019;32:e4034.
  • Jerban S, Ma Y, Dorthe EW, Kakos L, Le N, Alenezi S, et al. Assessing cortical bone mechanical properties using collagen proton fraction from ultrashort echo time magnetization transfer (UTE-MT) MRI modeling. Bone Reports 2019;11:100220.
  • Celik H, Chauhan A, Flores-Hernandez C, Dorthe E, Goodine T, D’Lima D, et al. Vertical and Rotational Stiffness of Coracoclavicular Ligament Reconstruction: A Biomechanical Study of 3 Different Techniques. Arthrosc J Arthrosc Relat Surg 2020;36:1264–70.
  • Celik H, Chauhan A, Flores-Hernandez C, Dorthe E, D’Lima D, Hoenecke H. Sagittal orientation of coracoclavicular ligament reconstruction affects the stability of surgical repair. J Shoulder Elb Surg 2020;29:1901–11.
  • Grogan SP, Dorthé EW, Glembotski NE, Gaul F, D’Lima DD. Cartilage tissue engineering combining microspheroid building blocks and microneedle arrays. Connect Tissue Res 2020;61:229–43.
  • Jerban S, Lu X, Dorthe EW, Alenezi S, Ma Y, Kakos L, et al. Correlations of cortical bone microstructural and mechanical properties with water proton fractions obtained from ultrashort echo time (UTE) MRI tricomponent T2 model*. NMR Biomed 2020;33.
  • Namiranian B, Jerban S, Ma Y, Dorthe EW, Masoud-Afsahi A, Wong J, et al. Assessment of mechanical properties of articular cartilage with quantitative three-dimensional ultrashort echo time (UTE) cones magnetic resonance imaging. J Biomech 2020;113:110085.
  • Lim TK, Dorthé E, Williams A, D’Lima DD. Nanofiber Scaffolds by Electrospinning for Rotator Cuff Tissue Engineering. Chonnam Med J 2021;57:13.
  • K. Kono, E. W. Dorthe, T. Tomita, S. Tanaka, L. Angibaud, and D. D. D’Lima, Intraoperative knee kinematics measured by computer‐ assisted navigation and intraoperative ligament balance have the potential to predict postoperative knee kinematics, J. Orthop. Res., February, pp. 1–9, 2021.
  • Jerban S, Hananouchi T, Ma Y, Namiranian B, Dorthe E, Wong J, Shojaeiadib N, Wu M, Du J, D’Lima D, Chung C, Chang E, Correlation between the elastic modulus of anterior cruciate ligament ( ACL ) and quantitative ultrashort echo time ( UTE ) magnetic resonance imaging, J. Orthop. Res., January 2022, doi:10.1002/jor.25266.
  • Dorthé EW, Williams AB, Grogan SP, D’Lima DD. Pneumatospinning Biomimetic Scaffolds for Meniscus Tissue Engineering. 2022;10(February):1-13. doi:10.3389/fbioe.2022.810705