Research Project: 3D Spatiotemporal Control of Neurons and Disease Modeling
| dc.contributor.department | Department of Mechanical Engineering | |
| dc.contributor.department | Department of Mechanical Engineering | |
| dc.contributor.schoolcollegeinstitute | College of Engineering | |
| dc.contributor.schoolcollegeinstitute | College of Engineering | |
| dc.date.accessioned | 2024-12-29T10:39:15Z | |
| dc.date.available | 2024-12-29 | |
| dc.description.publisherscope | National | |
| dc.identifier | TB.00491 | |
| dc.identifier.uri | https://hdl.handle.net/20.500.14288/24739 | |
| dc.relation.affiliation | Koç University | |
| dc.relation.collection | Koç University Projects Collection | |
| dc.relation.relatedpublications | Skin-on-a-chip technologies towards clinical translation and commercialization | |
| dc.relation.relatedpublications | Microneedle arrays integrated with microfluidic systems: Emerging applications and fluid flow modeling | |
| dc.relation.relatedpublications | ML-automated microfluidic circuit design | |
| dc.relation.relatedpublications | Machine learning-enabled optimization of interstitial fluid collection via a sweeping microneedle design | |
| dc.relation.relatedpublications | CRISPR-on-chip for point-of-care diagnostics | |
| dc.relation.relatedpublications | Disposable paper-based microfluidics for fertility testing | |
| dc.relation.relatedpublications | 3D-printed microrobots: translational challenges | |
| dc.relation.relatedpublications | Repurposing sewage and toilet systems: environmental, public health, and person-centered healthcare applications | |
| dc.relation.relatedpublications | Microfluidic Invasion Chemotaxis platform for 3D neurovascular co-culture | |
| dc.relation.relatedpublications | Deep learning-enabled technologies for bioimage analysis | |
| dc.relation.relatedpublications | Piezoelectric metamaterial blood pressure sensor | |
| dc.relation.relatedpublications | Low-cost optical assays for point-of-care diagnosis in resource-limited settings | |
| dc.relation.relatedpublications | 3D engineered neural co-culture model and neurovascular effects of marine fungi-derived citreohybridonol | |
| dc.relation.relatedpublications | Impedimetric antimicrobial peptide biosensor for the detection of human immunodeficiency virus envelope protein GP120 | |
| dc.relation.relatedpublications | Large language model-based chatbots in higher education | |
| dc.relation.relatedpublications | CRISPR-Cas-Integrated LAMP | |
| dc.relation.relatedpublications | 3D printed microneedles for point of care biosensing applications | |
| dc.relation.relatedpublications | Increasing the packing density of assays in paper-based microfluidic devices | |
| dc.relation.relatedpublications | AI-based metamaterial design for wearables | |
| dc.relation.relatedpublications | Programmable 3DP microfluidic bio-reaction system: automated LAMP-on-a-chip | |
| dc.relation.relatedpublications | 3D bioprinted glioma models | |
| dc.relation.relatedpublications | AI-based metamaterial design | |
| dc.relation.relatedpublications | Machine learning-augmented fluid dynamics simulations for micromixer educational module | |
| dc.relation.relatedpublications | Portable magnetic levitation technologies | |
| dc.relation.relatedpublications | Leveraging synthetic imagery and YOLOv8 for a novel colorimetric approach to paper-based point-of-care male fertility testing | |
| dc.relation.relatedpublications | Shape fidelity evaluation of alginate-based hydrogels through extrusion-based bioprinting | |
| dc.relation.relatedpublications | Biosensors for prostate cancer detection | |
| dc.relation.relatedpublications | Emerging applications of electrochemical impedance spectroscopy in tear film analysis | |
| dc.relation.relatedpublications | Development and validation of LAMP assays for distinguishing MPXV clades with fluorescent and colorimetric readouts | |
| dc.relation.relatedpublications | Deep learning-augmented T-junction droplet generation | |
| dc.relation.relatedpublications | Optimizing solid microneedle design: a comprehensive ML-augmented DOE approach | |
| dc.relation.relatedpublications | Three-dimensional-bioprinted liver chips and challenges | |
| dc.relation.relatedpublications | Machine learning-enabled multiplexed microfluidic sensors | |
| dc.relation.relatedpublications | Loop-mediated isothermal amplification-integrated CRISPR methods for infectious disease diagnosis at point of care | |
| dc.relation.relatedpublications | Bioprinting in microgravity | |
| dc.relation.relatedpublications | Bayesian machine learning optimization of microneedle design for biological fluid sampling | |
| dc.relation.relatedpublications | Machine learning-enabled prediction of 3D-printed microneedle features | |
| dc.relation.relatedpublications | Smartphone and wearable diagnostics | |
| dc.title | 3D Spatiotemporal Control of Neurons and Disease Modeling | |
| dc.title.alternative | 3D Spatiotemporal Control | |
| dspace.entity.type | Project | |
| local.contributor.kuauthor | Taşoğlu, Savaş | |
| local.project.contractnumber | 118C391 | |
| local.project.endDate | 2024-03-01 | |
| local.project.startDate | 2020-05-31 | |
| local.project.template | TB.BIDEB.2232 | |
| project.funder.identifier | TÜBİTAK | |
| project.funder.name | TÜBİTAK | |
| project.investigator | Taşoğlu, Savaş | |
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