Publications

Melt electrospun scaffolds for rotary blood pumps

, , , , & (2018) Melt electrospun bilayered scaffolds for tissue integration of a suture-less inflow cannula for rotary blood pumps. Artificial Organs, 42(5), E43-E54.
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Electrofluidodynamic Technologies (EFDTs) for Biomaterials and Medical Devices

, , , & (2018) Electrofluidodynamic technologies for biomaterials and medical devices: melt electrospinning. In Guarino, Vincenzo & Ambrosio, Luigi (Eds.) Electrofluidodynamic Technologies (EFDTs) for Biomaterials and Medical Devices. Elsevier, pp. 37-70.
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    Aesthetic reconstruction of microtia: A review

    , , , Arnott, Wendy L., , & (2018) Aesthetic reconstruction of microtia: A review of current techniques and new 3D printing approaches. Virtual and Physical Prototyping, 13(2), pp. 117-130.
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    Smartphones for 3D scanning of the external ear

    , , , , , & (2018) Smartphones for frugal three-dimensional scanning of the external ear with application to microtia. Journal of Plastic, Reconstructive & Aesthetic Surgery, 71(9), pp. 1362-1380.
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    Comparison of three-dimensional surface scanning techniques for capturing the external ear

    , , , , , & (2018) Comparison of three-dimensional surface scanning techniques for capturing the external ear. Virtual and Physical Prototyping, 13(4), pp. 255-265.
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    MEW bilayered scaffolds for suture-less inflow cannula for rotary blood pumps

    , , , , & (2018) Melt electrospun bilayered scaffolds for tissue integration of a suture-less inflow cannula for rotary blood pumps. Artificial Organs, 42(5), E43-E54.
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    Color-Tuning Approach for OLEDs Using Anisotropic Filters

    , , , , & (2018) Facile and dynamic color-tuning approach for organic light-emitting diodes using anisotropic filters. ACS Photonics, 5(7), pp. 2760-2766.
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    3D printing chocolate: Properties of formulations for extrusion, sintering, binding and ink jetting

    , , & (2018) 3D printing chocolate: Properties of formulations for extrusion, sintering, binding and ink jetting. In Godoi, Fernanda C., Bhandari, Bhesh R., Prakash, Sangeeta, & Zhang, Min (Eds.) Fundamentals of 3D Food Printing and Applications. Academic Press, pp. 151-171.
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      3D printing complex chocolate objects

      , , , , , , & (2017) 3D printing complex chocolate objects: Platform design, optimization and evaluation. Journal of Food Engineering. (In Press)
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      Comparison of Decalcification Methods

      , , , Theodoropoulos, Christina, & (2017) Comparison of different decalcification methods using rat mandibles as a model. Journal of Histochemistry & Cytochemistry, 65(12), pp. 705-722.
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      Effects of topical icing skeletal muscle regeneration

      , , , , , & (2017) Effects of topical icing on inflammation, angiogenesis, revascularization, and myofiber regeneration in skeletal muscle following contusion injury. Frontiers in Physiology, 8, Article 93.
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      Characterization of normal murine carpal bone development

      Lazarus, Syndia, Tseng, Hsu-Wen, Lawrence, Felicity, Woodruff, Maria A., , & Pettit, Allison R. (2017) Characterization of normal murine carpal bone development prompts re-evaluation of pathologic osteolysis as the cause of human carpal-tarsal osteolysis disorders. American Journal of Pathology, 187(9), pp. 1923-1934.
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      Proposal to assess printability of bioinks for bioprinting

      , Smolan, Willi, Böck, Thomas, , Groll, Jürgen, & Jungst, Tomasz (2017) Proposal to assess printability of bioinks for extrusion-based bioprinting and evaluation of rheological properties governing bioprintability. Biofabrication, 9(4), Article number-044107.
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      Microparticles for sustained growth factor delivery in the regeneration of bone defects

      Kirby,Giles T.S., White,Lisa J., Steck,Roland, Berner,Arne, Bogoevski,Kristofor, Qutachi,Omar, Jones,Brendan, Saifzadeh,Siamak, Hutmacher,Dietmar W., Shakesheff,Kevin M., et al. (2016) Microparticles for sustained growth factor delivery in the regeneration of critically-sized segmental tibial bone defects. Materials, 9(4), pp.Article Number-259.
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      Biofabrication: The future of regenerative medicine

      , , & (2016) Biofabrication: The future of regenerative medicine. Techniques in Orthopaedics, 31(3), pp. 190-203.
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      Challenges in engineering large customized bone constructs

      , , & (2016) Challenges in engineering large customized bone constructs. Biotechnology and Bioengineering. (In Press)
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      Effect of humidity on melt electrospun polycaprolactone scaffolds

      , , , , , , , Gregory, Shaun D., , & (2016) Effect of humidity on melt electrospun polycaprolactone scaffolds. BioNanoMaterials, 17(3-4), pp. 173-178.
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      A hydrogel model incorporating 3D-plotted hydroxyapatite for osteochondral tissue engineering

      , Akkineni, Ashwini Rahul, Gelinsky, Michael, , & (2016) A hydrogel model incorporating 3D-plotted hydroxyapatite for osteochondral tissue engineering. Materials, 9(4), Article No. 285.
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      Data for accelerated degradation of calcium phosphate surface coated PCL and PCL/SrBG scaffolds

      , , , Solanki, Anu K., & (2016) Data for accelerated degradation of calcium phosphate surface coated polycaprolactone and polycaprolactone/bioactive glass composite scaffolds. Data in Brief, 7, pp. 923-926.
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      Systematic review of critical sized mandibular defect regeneration in preclinical in vivo models

      G Brierly, S Trednnick, A Lynham, M Woodruff. (2016) Systematic review of critical sized mandibular defect regeneration in preclinical in vivo models. Molecular Biology Reports, accepted for publication.

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      Bone formation potential of surface calcium phosphate-coated PCL and PCL/SrBG scaffolds

      , , , Solanki, Anu K., Stevens, Molly M., & (2016) In vitro and in vivo bone formation potential of surface calcium phosphate-coated polycaprolactone and polycaprolactone/bioactive glass composite scaffolds. Acta Biomaterialia, 30, pp. 319-333.
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      Growth factor-loaded microparticles for tissue engineering

      , , , , & (2016) Growth factor-loaded microparticles for tissue engineering: The discrepancies of in vitro characterization assays. Tissue Engineering Part C: Methods, 22(2), pp. 142-154.
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      Numerical prediction of thrombus risk in an anatomically dilated left ventricle:

      , Simpson, Benjamin, Neidlin, Michael, Kaufmann, Tim, , , & (2016) Numerical prediction of thrombus risk in an anatomically dilated left ventricle: The effect of inflow cannula designs. BioMedical Engineering OnLine, 15(Supp2), pp. 587-604.
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      Tailoring hydrogel viscoelasticity with physical and chemical crosslinking

      , , , & (2015) Tailoring hydrogel viscoelasticity with physical and chemical crosslinking. Polymers, 7(12), pp. 2650-2669.
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      Protective effects of reactive functional groups on chondrocytes in photocrosslinkable hydrogel systems

      , , , , & (2015) Protective effects of reactive functional groups on chondrocytes in photocrosslinkable hydrogel systems. Acta Biomaterialia, 27, pp. 66-76.
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      Scaffold-cell bone engineering in a validated preclinical animal model

      Berner,Arne, Henkel,Jan, Woodruff,Maria A., Saifzadeh,Siamak, Kirby,Giles, Zaiss,Sascha, Gohlke,Jan, Reichert,Johannes, Nerlich,Michael, Schuetz,Michael, et al. (2015) Scaffold-cell bone engineering in a validated preclinical animal model: Precursors vs differentiated cell source. Journal of Tissue Engineering and Regenerative Medicine, Online(Online), pp.1-9.
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      Estrogen deficiency-associated bone loss in the maxilla

      , , , , , & (2015) Estrogen deficiency-associated bone loss in the maxilla: A methodology to quantify the changes in the maxillary intra-radicular alveolar bone in an ovariectomized rat osteoporosis model. Tissue Engineering Part C: Methods, 21(5), pp. 458-466.
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      Delayed minimally invasive injection of allogenic bone marrow stromal cell sheets

      , , , , Nerlich, Michael, , & (2015) Delayed minimally invasive injection of allogenic bone marrow stromal cell sheets regenerates large bone defects in an ovine preclinical animal model. Stem Cells Translational Medicine, 4(5), pp. 503-512.
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      Improved fabrication of melt electrospun tissue engineering scaffolds

      , , , , , , , & (2015) Improved fabrication of melt electrospun tissue engineering scaffolds using direct writing and advanced electric field control. Biointerphases, 10(1), pp. 1-10.
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      Scaffold-cell bone engineering in a validated preclinical animal model

      Berner,Arne, Henkel,Jan, Woodruff,Maria A., Saifzadeh,Siamak, Kirby,Giles, Zaiss,Sascha, Gohlke,Jan, Reichert,Johannes, Nerlich,Michael, Schuetz,Michael, et al. (2015) Scaffold-cell bone engineering in a validated preclinical animal model: Precursors vs differentiated cell source. Journal of Tissue Engineering and Regenerative Medicine, Online(Online), pp.1-9.
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      Melt-electrospun polycaprolactone-strontium substituted bioactive glass scaffolds for bone regeneration

      , , Doustgani, Amir, , , Stevens, Molly M., & (2014) Melt-electrospun polycaprolactone-strontium substituted bioactive glass scaffolds for bone regeneration. Journal of Biomedical Materials Research Part A, 102(9), pp. 3140-3153.
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      Characterisation of the micro-architecture of MEW scaffolds using DTI and micro-CT

      , , , , , & (2014) Characterisation of the micro-architecture of direct writing melt electrospun tissue engineering scaffolds using diffusion tensor and computed tomography microimaging. 3D Printing and Additive Manufacturing, 1(2), pp. 95-103.
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      Controlling microencapsulation and release of micronized proteins using PEG and electrospraying

      , , & (2014) Controlling microencapsulation and release of micronized proteins using poly(ethylene glycol) and electrospraying. European Journal of Pharmaceutics and Biopharmaceutics, 87(2), pp. 366-377.
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      Effects of scaffold architecture on mechanical characteristics and perfusion bioreactor cultures

      , , Melchels, Ferry P.W., & (2014) Effects of scaffold architecture on mechanical characteristics and osteoblast response to static and perfusion bioreactor cultures. Biotechnology and Bioengineering, 111(7), pp. 1440-1451.
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      Fabrication and in vitro characterisation of bioactive glass composite scaffolds for bone regeneration

      , , Stevens, Molly M., & (2013) Fabrication and in vitro characterisation of bioactive glass composite scaffolds for bone regeneration. Biofabrication, 5(4).
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      Bone regeneration based on tissue engineering conceptions

      , , , , , Dickinson, Ian C., Choong, Peter F.M., , & (2013) Bone regeneration based on tissue engineering conceptions – a 21st century perspective. Bone Research, 1(3), pp. 216-248.
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      Autologous vs. allogenic mesenchymal progenitor cells for the reconstruction of bone defects in sheep

      , Reichert, J.C., , , , , Nerlich, M, , & (2013) Autologous vs. allogenic mesenchymal progenitor cells for the reconstruction of critical-sized segmental tibial bone defects in aged sheep. Acta Biomaterialia, 9(8), pp. 7874-7884.
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      Healing of a complex femur fracture with concurrent soft tissue injury

      , , Matthys, Romano, Webster, John D., , , Ito, Keita, & (2013) A new model to study healing of a complex femur fracture with concurrent soft tissue injury in sheep. Open Journal of Orthopedics, 3(2), pp. 62-68.
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        Effects of scaffold architecture on cranial bone healing

        Berner,A., Woodruff,M.A., Lam,C.X.F., Arafat,M.T., Saifzadeh,S., Steck,R., Ren,J., Nerlich,M., Ekaputra,A.K., Gibson,I., et al. (2013) Effects of scaffold architecture on cranial bone healing. International Journal of Oral & Maxillofacial Surgery, 43(4), pp.506-513.
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        A collagen network phase improves cell seeding of open-pore structure scaffolds under perfusion

        Papadimitropoulos, Adam, Riboldi, Stephanie, Tonnarelli, Beatrice, , , & Martin, Ivan (2013) A collagen network phase improves cell seeding of open-pore structure scaffolds under perfusion. Journal of Tissue Engineering and Regenerative Medicine, 7(3), pp. 183-191.
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        Effect of a novel compound from Lycopodium obscurum L. on osteogenic activity of osteoblasts in vitro

        Wang, Chaoyuan, Wu, Ruiyun, Yang, Guangzhong, , , , & (2013) Effect of a novel compound from Lycopodium obscurum L. on osteogenic activity of osteoblasts in vitro. Natural Science, 5(1), pp. 84-92.
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          Nano- to macroscale remodeling of functional tissue-engineered bone

          , Lange, Claudia, Chen, Fulin, Fratzl, Peter, & (2013) Nano- to macroscale remodeling of functional tissue-engineered bone. Advanced Healthcare Materials, 2(4), pp. 546-551.
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          Bone tissue engineering : from bench to bedside - Review article

          , , , Lange, Claudia, , Fratzl, Peter, & Chen, F. (2012) Bone tissue engineering : from bench to bedside - Review article. Materials Today, 15(10), pp. 430-435.
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          Electrospraying of polymers with therapeutic molecules : state of the art

          , , & (2012) Electrospraying of polymers with therapeutic molecules : state of the art. Progress in Polymer Science, 37(11), pp. 1510-1551.
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          Scaffolds for growth factor delivery as applied to bone tissue engineering

          , , , & (2012) Scaffolds for growth factor delivery as applied to bone tissue engineering. International Journal of Polymer Science, 2012(174942), pp. 1-25.
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          A tissue engineering solution for segmental defect regeneration in load-bearing long bones

          Reichert,J.C., Cipitria,A., Epari,D.R., Saifzadeh,S., Krishnakanth,P., Berner,A., Woodruff,M.A., Schell,H., Mehta,M., Schuetz,M., et al. (2012) A tissue engineering solution for segmental defect regeneration in load-bearing long bones. Science Translational Medicine, 4(141), pp.141ra93.
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          Biomimetic tubular nanofiber mesh for large bone defect regeneration

          Berner,Arne, Boerckel,JD, Saifzadeh,Siamak, Steck,Roland, Ren,Jiongyu, Vaquette,Cedryck, Qiyi Zhang,J., Nerlich,M, Guldberg,Robert E., Hutmacher,Dietmar, et al. (2012) Biomimetic tubular nanofiber mesh and platelet rich plasma-mediated delivery of BMP-7 for large bone defect regeneration.. Cell and Tissue Research, 347(), pp.603-612.
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          Myocyte enhancer factor 2C : an osteoblast transcription factor

          Stephens, Alexandre S., Stephens, Sebastian R., Hobbs, Carl, , Bacic-Welsh, Desa, , & Morrison, Nigel A. (2011) Myocyte enhancer factor 2C : an osteoblast transcription factor identified by DMSO enhanced mineralization. Journal of Biological Chemistry.
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          Cell sourcing for bone tissue engineering

          Peister, Alexandra, , Prince, Jarod, Gray, Derwin, , & (2011) Cell sourcing for bone tissue engineering : amniotic fluid stem cells have a delayed, robust differentiation compared to mesenchymal stem cells. Stem Cell Research, 7(1), pp. 17-27.
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          PLGA-based microparticles for the sustained release of BMP-2

          Kirby, Giles, , Rahman, Cheryl, Cox, Helen, Qutachi, Omar, Rose, Felicity, , Shakesheff, Kevin, & (2011) PLGA-based microparticles for the sustained release of BMP-2. Polymers, 3(1), pp. 571-586.
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          Electrospraying reproducible polymeric microspheres

          , , , & (2011) Electrospraying a reproducible method for production of polymeric microspheres for biomedical applications. Polymers, 3(1), pp. 131-149.
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          Ovine bone and marrow derived progenitor cells

          , , , , Gronthos, Stan, Duda, Georg N., , & (2010) Ovine bone and marrow derived progenitor cells : isolation, characterization, and osteogenic potential. Journal of Tissue Engineering and Regenerative Medicine, 4(7), pp. 565-576.
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          The effect of unlocking RGD-motifs in collagen I on pre-osteoblast adhesion and differentiation

          Taubenberger, Anna V., , Bai, Huifen, Muller, Daniel J., & (2010) The effect of unlocking RGD-motifs in collagen I on pre-osteoblast adhesion and differentiation. Biomaterials, 31(10), pp. 2827-2835.
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          The return of a forgotten polymer : Polycaprolactone in the 21st century

          & Hutmacher, Dietmar W. (2010) The return of a forgotten polymer : Polycaprolactone in the 21st century. Progress in Polymer Science, 35(10), pp. 1217-1256.
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