Sarah Cartmell
#121,108
Most Influential Person Now
British bioengineer
Sarah Cartmell's AcademicInfluence.com Rankings
Sarah Cartmellengineering Degrees
Engineering
#4155
World Rank
#5327
Historical Rank
Bioengineering
#88
World Rank
#90
Historical Rank
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Engineering
Sarah Cartmell's Degrees
- Masters Biomedical Engineering Imperial College London
- Bachelors Biomedical Sciences University of Oxford
Why Is Sarah Cartmell Influential?
(Suggest an Edit or Addition)According to Wikipedia, Sarah Harriet Cartmell is a British biomaterials scientist and Professor of Bioengineering at the University of Manchester. She specializes on the potential use of electrical regimes to influence cellular activity for orthopaedic tissue engineering applications.
Sarah Cartmell's Published Works
Published Works
- Conductive polymers: towards a smart biomaterial for tissue engineering. (2014) (1298)
- Effects of medium perfusion rate on cell-seeded three-dimensional bone constructs in vitro. (2003) (408)
- Microarchitectural and mechanical characterization of oriented porous polymer scaffolds. (2003) (403)
- Electrical stimulation: a novel tool for tissue engineering. (2013) (290)
- Piezoelectric materials as stimulatory biomedical materials and scaffolds for bone repair. (2018) (164)
- Mesenchymal stem cells, osteoblasts and extracellular matrix proteins: enhancing cell adhesion and differentiation for bone tissue engineering. (2010) (130)
- Quantitative microcomputed tomography analysis of mineralization within three-dimensional scaffolds in vitro. (2004) (129)
- State of the art composites comprising electrospun fibres coupled with hydrogels: a review. (2013) (128)
- In vivo performance of simvastatin-loaded electrospun spiral-wound polycaprolactone scaffolds in reconstruction of cranial bone defects in the rat model. (2009) (112)
- Osteoblast: osteoclast co-cultures on silk fibroin, chitosan and PLLA films. (2009) (111)
- Effect of fluid flow-induced shear stress on human mesenchymal stem cells: differential gene expression of IL1B and MAP3K8 in MAPK signaling. (2009) (97)
- Electroactive biomaterials: Vehicles for controlled delivery of therapeutic agents for drug delivery and tissue regeneration (2017) (97)
- Principles and Design of a Novel Magnetic Force Mechanical Conditioning Bioreactor for Tissue Engineering, Stem Cell Conditioning, and Dynamic In Vitro Screening (2006) (94)
- Genes and proteins involved in the regulation of osteogenesis (2007) (92)
- Biocompatibility of polyhydroxyalkanoate as a potential material for ligament and tendon scaffold material. (2010) (82)
- Development of magnetic particle techniques for long-term culture of bone cells with intermittent mechanical activation. (2002) (80)
- Suture techniques for tendon repair; a comparative review. (2019) (76)
- Polarization of hydroxyapatite: influence on osteoblast cell proliferation. (2010) (69)
- X-ray computed tomography in life sciences (2020) (62)
- Controlled release scaffolds for bone tissue engineering. (2009) (62)
- Three-dimensional visualisation of soft biological structures by X-ray computed micro-tomography (2016) (49)
- Ectopic bone formation in bone marrow stem cell seeded calcium phosphate scaffolds as compared to autograft and (cell seeded) allograft. (2007) (48)
- Porous methacrylate tissue engineering scaffolds: using carbon dioxide to control porosity and interconnectivity (2006) (47)
- Osteoblast activity on carbonated hydroxyapatite. (2012) (47)
- Modeling and design of optimal flow perfusion bioreactors for tissue engineering applications. (2012) (47)
- Mathematical modelling of fibre-enhanced perfusion inside a tissue-engineering bioreactor. (2009) (46)
- Direct electrical stimulation enhances osteogenesis by inducing Bmp2 and Spp1 expressions from macrophages and preosteoblasts (2019) (43)
- Ligament Tissue Engineering and Its Potential Role in Anterior Cruciate Ligament Reconstruction (2011) (40)
- In silico multi‐scale model of transport and dynamic seeding in a bone tissue engineering perfusion bioreactor (2013) (39)
- In situ characterization of nanoscale strains in loaded whole joints via synchrotron X-ray tomography (2019) (36)
- Bioreactors for bone tissue engineering (2010) (35)
- X-ray computed tomography of the anterior cruciate ligament and patellar tendon. (2014) (33)
- Biotransformation of Silver Released from Nanoparticle Coated Titanium Implants Revealed in Regenerating Bone. (2017) (32)
- The composition of hydrogels for cartilage tissue engineering can influence glycosaminoglycan profile. (2010) (32)
- Enhancing Biocompatibility without Compromising Material Properties: An Optimised NaOH Treatment for Electrospun Polycaprolactone Fibres (2019) (30)
- Sutured tendon repair; a multi-scale finite element model (2014) (30)
- Cell response to sterilized electrospun poly(ɛ‐caprolactone) scaffolds to aid tendon regeneration in vivo (2016) (28)
- Fabrication and Characterisation of Stimuli Responsive Piezoelectric PVDF and Hydroxyapatite-Filled PVDF Fibrous Membranes (2019) (28)
- Uniaxial cyclic strain of human adipose–derived mesenchymal stem cells and C2C12 myoblasts in coculture (2014) (27)
- Primary human osteoblast culture on 3D porous collagen-hydroxyapatite scaffolds. (2010) (27)
- The Effect of Branching (Star Architecture) on Poly(d,l-lactide) (PDLLA) Degradation and Drug Delivery. (2017) (27)
- Most British Surgeons Would Consider Using a Tissue-Engineered Anterior Cruciate Ligament: A Questionnaire Study (2012) (26)
- Electroactive 3D Printed Scaffolds Based on Percolated Composites of Polycaprolactone with Thermally Reduced Graphene Oxide for Antibacterial and Tissue Engineering Applications (2020) (26)
- Osteoblasts and their applications in bone tissue engineering (2012) (25)
- Use of magnetic particles to apply mechanical forces for bone tissue engineering purposes (2005) (23)
- Haemocompatiblity of controlled release glass (1998) (22)
- Mimicking the Annulus Fibrosus Using Electrospun Polyester Blended Scaffolds (2019) (21)
- Polarization of porous hydroxyapatite scaffolds: influence on osteoblast cell proliferation and extracellular matrix production. (2008) (21)
- Low‐density subculture: a technical note on the importance of avoiding cell‐to‐cell contact during mesenchymal stromal cell expansion (2015) (19)
- Tissue Engineering the Annulus Fibrosus Using 3D Rings of Electrospun PCL:PLLA Angle-Ply Nanofiber Sheets (2020) (19)
- Peptide hydrogel in vitro non‐inflammatory potential (2016) (19)
- Material Characterization of PCL:PLLA Electrospun Fibers Following Six Months Degradation In Vitro (2020) (18)
- Engineering a cell-hydrogel-fibre composite to mimic the structure and function of the tendon synovial sheath. (2020) (17)
- POSS-Functionalized Graphene Oxide/PVDF Electrospun Membranes for Complete Arsenic Removal Using Membrane Distillation (2021) (17)
- Mechanical conditioning of bone cells in vitro using magnetic microparticle technology (2002) (16)
- Cyclic tensile strain upon human mesenchymal stem cells in 2D and 3D culture differentially influences CCNL2, WDR61 and BAHCC1 gene expression levels. (2012) (16)
- Mechanical Bioreactors for Bone Tissue Engineering (2005) (14)
- Hyperpolarization of Human Mesenchymal Stem Cells in Response to Magnetic Force (2010) (14)
- A correlative imaging based methodology for accurate quantitative assessment of bone formation in additive manufactured implants (2016) (14)
- Electrical stimulation enhanced mesenchymal stem cell gene expression for orthopaedic tissue repair (2013) (13)
- Soft tissue response to glycerol-suspended controlled-release glass particulate (1998) (13)
- Electrical Stimulation of Titanium to Promote Stem Cell Orientation, Elongation and Osteogenesis. (2021) (13)
- Electrical stimulation changes human mesenchymal stem cells orientation and cytoskeleton organization (2017) (12)
- Changes in the extracellular microenvironment and osteogenic responses of mesenchymal stem/stromal cells induced by in vitro direct electrical stimulation (2021) (12)
- Bioreactors for Tissue Engineering: Mechanical Bioreactors for Tissue Engineering (2006) (12)
- Bioreactors for Tissue Engineering: Mechanical Bioreactors for Tissue Engineering (2006) (12)
- Simvastatin Release from Poly(lactide-co-glycolide) Membrane Scaffolds (2010) (12)
- A perfusion co-culture bioreactor for osteochondral tissue engineered plugs (2014) (11)
- Optimization of cell seeding efficiencies on a three-dimensional gelatin scaffold for bone tissue engineering. (2006) (11)
- Effect of TiO2 Nanotube Pore Diameter on Human Mesenchymal Stem Cells and Human Osteoblasts (2020) (10)
- In vitro evaluation of poly (lactic-co-glycolic acid)/polyisoprene fibers for soft tissue engineering. (2017) (10)
- Status and challenges of electrical stimulation use in chronic wound healing. (2022) (8)
- 3D sample preparation for orthopaedic tissue engineering bioreactors. (2011) (8)
- Osteochondral tissue coculture: An in vitro and in silico approach (2019) (8)
- Mechanical Strains Induced in Osteoblasts by Use of Point Femtosecond Laser Targeting (2006) (8)
- The Effects of Ionising and Non-Ionising Electromagnetic Radiation on Extracellular Matrix Proteins (2021) (8)
- A Novel Methodology for Economical Scale-Up of TiO2 Nanotubes Fabricated on Ti and Ti Alloys (2019) (8)
- Wound dressings: curbing inflammation in chronic wound healing (2021) (7)
- Design of a 3D perfused cell culture system to evaluate bone regeneration technologies (2001) (7)
- Lactone-layered double hydroxide networks: Towards self-assembled bioscaffolds (2018) (7)
- The Use of Magnetic Particles in Tissue Engineering (2011) (7)
- Preliminary analysis of magnetic particle techniques for activating mechanotransduction in bone cells (2002) (6)
- Rise of the Real-Time Traveler: An Exploration of Trends and Innovation in Urban Mobility (2015) (6)
- Bone Tissue Engineering (2005) (5)
- Differential Gene Expression of Integrins Alpha 2 and Beta 8 in Human Mesenchymal Stem Cells Exposed to Fluid Flow (2009) (5)
- Potentiation of methylglyoxal-bis-guanylhydrazone by alpha-difluoro- methyl ornithine, stilbamidine and pentamidine in mouse leukemia. Abstr. (1981) (5)
- Optimization of Cell Seeding Efficiencies on a Three-Dimensional Gelatin Scaffold for Bone Tissue Engineering (2006) (5)
- Four-Dimensional Imaging of Soft Tissue and Implanted Biomaterial Mechanics: A Barbed Suture Case Study for Tendon Repair. (2018) (4)
- Tissue Engineering of Ligaments (2011) (4)
- Use of statins for enhancing bone-tissue-engineered grafts (2012) (4)
- Optimisation of Fluid Distribution Inside a Porous Construct (2006) (3)
- Instructive electroactive electrospun silk fibroin-based biomaterials for peripheral nerve tissue engineering. (2022) (3)
- A simple in vitro biomimetic perfusion system for mechanotransduction study (2020) (3)
- Optimizing Attachment of Human Mesenchymal Stem Cells on Poly(ε-caprolactone) Electrospun Yarns (2015) (2)
- Mesenchymal stem cells and tensile strain (2007) (2)
- Co-culture bioreactor design for skeletal tissue engineering (2007) (2)
- Corrigendum to “Polarization of hydroxyapatite: Influence on osteoblast cell proliferation” [Acta Biomaterialia 6 (2010) 1549–1554] (2010) (2)
- The use of osteoblast/osteoclast co-cultures on PLLA, silk and dentine scaffolds (2007) (2)
- Bioreactor design for osteochondral tissue (2007) (1)
- Effects of mechanical force application on 3D bone tissue engineered constructs using magnetic microparticles (2003) (1)
- Tissue engineering applications of microcomputed tomography (micro-CT) imaging (2002) (1)
- Finite Element Modelling of a Cellular Electric Microenvironment. (2021) (1)
- Novel lactone-layered double hydroxide ionomer powders for bone tissue repair. (2020) (1)
- Fluid shear stress induces differential gene expression of leukemia inhibitory factor in human mesenchymal stem cells (2011) (1)
- Cyclical loading of electrospun scaffolds affects Mesenchymal stem cell response (2012) (1)
- Comparable long term healing with PCL scaffolds in a murine tendon injury model (2014) (1)
- Simvastatin releasing novel PCL scaffolds in rat cranium defects (2007) (1)
- Electrical modification of aligned electrospun silk fibroin via interpenetrating polymer network of PEDOT:PSS for peripheral nerve regeneration. (2020) (1)
- Electrophysiological responses of HMSCs and bone cells to magnetic particle tagging (2007) (1)
- Cellulose nanowhiskers and nechanotransduction as strategies for tissue engineering skeletal muscle from human mesenchymal stem cells (2012) (0)
- Tissue engineering of the anterior cruciate ligament using degradable phosphate-based glass fibres (2007) (0)
- Regenerative Technologies: Future Grand Challenges and Emerging Strategies (2020) (0)
- Fabricating Scaffolds of Electrospun Nanofibres from Synthetic Biopolymers for Tendon Repair (2012) (0)
- PPIA and YWHAZ Constitute a Stable Pair of Reference Genes during Electrical Stimulation in Mesenchymal Stem Cells (2021) (0)
- Generation of tissue scaffolds composed of aligned electrospun fibres of interpenetrating polymer networks of silk fibroin and PEDOT:PSS for peripheral nerve regeneration (2020) (0)
- Capacitive electrical stimulation of a conducting polymeric thin film induces human mesenchymal stem cell osteogenesis. (2022) (0)
- Instantaneous 4D micro-particle image velocimetry (µPIV) via multifocal microscopy (MUM) (2022) (0)
- Biotechnology and Bioengineering (2019) (0)
- Effect of micro-tomography radiation on cell viability and survival of live human mesenchymal stem cells (2012) (0)
- A degradable bioactive glass: an in vitro and in vivo study. (1999) (0)
- Why do tendon repairs fail? A computational approach (2012) (0)
- A novel mechanical conditioning regime for tissue-engineered constructs (2005) (0)
- In situ characterization of nanoscale strains in loaded whole joints via synchrotron X-ray tomography (2019) (0)
- Passaging effects on mineralization and mRNA expression of rat calvarial cells seeded in monolayer and on 3D polymer constructs in vitro (2002) (0)
- Multiscale finite element modelling to assess sutured tendon repairs (2014) (0)
- Magnetic Nanomaterials : Use of Magnetic Particles in Tissue Engineering (2009) (0)
- Sutured tendon repair; a multi-scale finite element model (2014) (0)
- X-ray computed tomography in life sciences (2020) (0)
- British society for matrix biology autumn meeting (2005) (0)
- Magnetic Nanomaterials : Use of Magnetic Particles in Tissue Engineering (2009) (0)
- Investigating Cell Seeding Techniques for Optimising Attachment of Human (2013) (0)
- OSTEOBLAST: OSTEOCLAST CO-CULTURE ON VARIOUS BIOMATERIALS: AN INVESTIGATION OF CELL ACTIVITY AND SCAFFOLD DEGRADATION. (2008) (0)
- Comparison of manufacture and sterilisation techniques on in vivo biological response: a six-week study using electrospun yarns grafted into mouse tendons (2015) (0)
- Capacitive stimulation enhanced osteogenic differentiation of primary human mesenchymal stem cells (2012) (0)
- 2010 Index IEEE Transactions on NanoBioscience Vol. 9 (2010) (0)
- Using 3D Electrospun Nanofibrous Scaffolds to Repair Tendons (2012) (0)
- Numerical Solution of a Complete Formulation of Flow in a Perfusion Bone-Tissue Bioreactor Using Lattice Boltzmann Equation Method (2011) (0)
- Magnetic nanoparticle-based tagging of mechanosensors for bone tissue engineering (2006) (0)
- TISSUE ENGINEERING OF THE ANTERIOR CRUCIATE LIGAMENT CHARACTERISING DEGRADABLE GLASS FIBRES (2008) (0)
- Electrospun poly(3-hydroxybutyrate-co-3-hydroxyvalerate) scaffolds – a step towards ligament repair applications (2022) (0)
- 8 Tissue Engineering of Ligaments (2012) (0)
- Current Clinical Opinion of Ligament Tissue Engineering (2012) (0)
- Current Clinical Opinion of Ligament Tissue Engineering (2012) (0)
- Tendon repair techniques; stress analysis using CT imaging and FE modelling (2016) (0)
- Stress and deformation in a sutured tendon repair; an in-silico model (2014) (0)
- Annals of Biomedical Engineering: Thanks to Reviewers (2009) (0)
- Comparison of hydrogels for the optimal design of an osteochondral construct (2009) (0)
- Title : Multidisciplinary In Silico Ageing Model to develop Rotator Cuff Surgeries and Therapies Research Team : (2018) (0)
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What Schools Are Affiliated With Sarah Cartmell?
Sarah Cartmell is affiliated with the following schools: