Pages that link to "Q30540684"
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The following pages link to Recapitulating maladaptive, multiscale remodeling of failing myocardium on a chip (Q30540684):
Displaying 50 items.
- Barth Syndrome: From Mitochondrial Dysfunctions Associated with Aberrant Production of Reactive Oxygen Species to Pluripotent Stem Cell Studies (Q26772690) (← links)
- Microfluidic Organ/Body-on-a-Chip Devices at the Convergence of Biology and Microengineering. (Q26774240) (← links)
- Tissue engineering the cardiac microenvironment: Multicellular microphysiological systems for drug screening (Q26799470) (← links)
- From cardiac tissue engineering to heart-on-a-chip: beating challenges (Q27022144) (← links)
- The role of mechanotransduction on vascular smooth muscle myocytes' [corrected] cytoskeleton and contractile function (Q27026682) (← links)
- Organs-on-chips at the frontiers of drug discovery (Q28083671) (← links)
- Micromolded gelatin hydrogels for extended culture of engineered cardiac tissues (Q33753038) (← links)
- Approaching the in vitro clinical trial: engineering organs on chips (Q33983767) (← links)
- Using physiologically-based pharmacokinetic-guided "body-on-a-chip" systems to predict mammalian response to drug and chemical exposure (Q34143269) (← links)
- Structural phenotyping of stem cell-derived cardiomyocytes (Q35222607) (← links)
- Angiotensin II Induced Cardiac Dysfunction on a Chip (Q35903561) (← links)
- 3D cardiac μtissues within a microfluidic device with real-time contractile stress readout (Q36378243) (← links)
- Mechanical Forces Reshape Differentiation Cues That Guide Cardiomyogenesis. (Q36550789) (← links)
- In vitro cardiac tissue models: Current status and future prospects. (Q36801550) (← links)
- Emergent Global Contractile Force in Cardiac Tissues (Q36804302) (← links)
- State-of-the-Art Metabolic Toxicity Screening and Pathway Evaluation (Q36887497) (← links)
- Prolonged Culture of Aligned Skeletal Myotubes on Micromolded Gelatin Hydrogels (Q37044962) (← links)
- Mechanotransduction and Metabolism in Cardiomyocyte Microdomains. (Q37511851) (← links)
- From stem cells to cardiomyocytes: the role of forces in cardiac maturation, aging, and disease. (Q38235819) (← links)
- Quality metrics for stem cell-derived cardiac myocytes (Q38460432) (← links)
- Integration concepts for multi-organ chips: how to maintain flexibility?! (Q38663725) (← links)
- Mitochondrial Function in Engineered Cardiac Tissues is Co-Regulated by Extracellular Matrix Elasticity and Tissue Alignment. (Q38667230) (← links)
- Multiscale Characterization of Engineered Cardiac Tissue Architecture. (Q38804892) (← links)
- Concise Review: Organ Engineering: Design, Technology, and Integration. (Q38806366) (← links)
- Smart material platforms for miniaturized devices: implications in disease models and diagnostics. (Q38815982) (← links)
- Organ-on-a-Chip Systems: Microengineering to Biomimic Living Systems (Q38905001) (← links)
- Assessing the multiscale architecture of muscular tissue with Q-space magnetic resonance imaging: Review. (Q38970723) (← links)
- Microfluidic Genipin Deposition Technique for Extended Culture of Micropatterned Vascular Muscular Thin Films (Q38985431) (← links)
- Human iPSC-derived cardiomyocytes and tissue engineering strategies for disease modeling and drug screening (Q39050993) (← links)
- Recent lab-on-chip developments for novel drug discovery (Q39140639) (← links)
- Intrinsic Cell Stress is Independent of Organization in Engineered Cell Sheets (Q39252067) (← links)
- Modular Assembly Approach to Engineer Geometrically Precise Cardiovascular Tissue (Q40357468) (← links)
- Regulatory role of CARD3 in left ventricular remodelling and dysfunction after myocardial infarction (Q40435871) (← links)
- Cardiovascular Organ-on-a-Chip Platforms for Drug Discovery and Development (Q41783099) (← links)
- Towards engineering integrated cardiac organoids: beating recorded (Q42331456) (← links)
- Microfabrication of human organs-on-chips. (Q45924666) (← links)
- Engineering micromyocardium to delineate cellular and extracellular regulation of myocardial tissue contractility (Q46181309) (← links)
- Passive Stretch Induces Structural and Functional Maturation of Engineered Heart Muscle as Predicted by Computational Modeling. (Q46240809) (← links)
- Controlling Differentiation of Stem Cells for Developing Personalized Organ-on-Chip Platforms. (Q47675953) (← links)
- Automated fabrication of photopatterned gelatin hydrogels for organ-on-chips applications (Q50027536) (← links)
- Numerical investigation of dynamic microorgan devices as drug screening platforms. Part II: Microscale modeling approach and validation (Q50860051) (← links)
- Aptamer-Based Microfluidic Electrochemical Biosensor for Monitoring Cell-Secreted Trace Cardiac Biomarkers. (Q51166866) (← links)
- Microfluidic organs-on-chips (Q51510970) (← links)
- Traction force microscopy of engineered cardiac tissues. (Q52625621) (← links)
- The contractile strength of vascular smooth muscle myocytes is shape dependent. (Q53641725) (← links)
- Engineering a microcirculation for perfusion control of ex vivo-assembled organ systems: Challenges and opportunities. (Q55019699) (← links)
- Cardiovascular disease models: A game changing paradigm in drug discovery and screening (Q57818505) (← links)
- Mussel-inspired 3D fiber scaffolds for heart-on-a-chip toxicity studies of engineered nanomaterials (Q58335467) (← links)
- Three-dimensional microengineered models of human cardiac diseases (Q64080614) (← links)
- Taking a peek at the border of the sarcomere in heart failure and cardiac resynchronization therapy (Q87802640) (← links)