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Ai Biofabrication

Ai Biofabrication
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Ai Biofabrication

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Showing 120 of 50

AI-Optimized Cell-Laden Scaffold Fabrication
Internship optimising fabrication settings with AI so cell-laden scaffolds keep viability while holding printed shape. Includes mentored hands-on analysis sessions.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £768
R · £1,117
3 Months
A · £1,010
T · £1,234
R · £1,795
6 Months
A · £2,244
T · £2,743
R · £3,989
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Machine Learning for Bioink Rheology Prediction
Internship predicting bioink flow and gelation behaviour from formulation so printing stays reliable across batches. Hands-on work runs alongside theory modules.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £778
R · £1,132
3 Months
A · £1,023
T · £1,251
R · £1,819
6 Months
A · £2,274
T · £2,779
R · £4,042
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
AI Vascularization Strategy in Tissue Fabrication
Internship planning perfusable channel networks with AI so fabricated tissues stay nourished as they thicken and mature.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £783
R · £1,139
3 Months
A · £1,030
T · £1,258
R · £1,830
6 Months
A · £2,287
T · £2,796
R · £4,066
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Deep Learning for Organoid Morphology Analysis
Internship quantifying organoid size, shape, and structure from imaging with deep models that track development over time.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £788
R · £1,146
3 Months
A · £1,036
T · £1,266
R · £1,842
6 Months
A · £2,302
T · £2,813
R · £4,092
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Generative Design for Biofabrication Architecture
Internship generating internal architectures for fabricated constructs that balance stiffness, diffusion, and cell space.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £778
R · £1,131
3 Months
A · £1,023
T · £1,250
R · £1,818
6 Months
A · £2,272
T · £2,777
R · £4,039
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
AI Stem Cell Differentiation Protocol Optimization
Internship tuning growth factors and timing with AI to steer stem cells reliably into the target cell lineages. Interns work with realistic case datasets.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £747
R · £1,086
3 Months
A · £982
T · £1,200
R · £1,745
6 Months
A · £2,181
T · £2,666
R · £3,877
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Reinforcement Learning for Bioprinting Parameters
Internship letting reinforcement learning agents tune pressure, speed, and temperature toward consistent print quality. Applied sessions reinforce each technique.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £791
R · £1,150
3 Months
A · £1,040
T · £1,271
R · £1,848
6 Months
A · £2,310
T · £2,823
R · £4,106
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
AI Quality Control in Biofabrication Pipelines
Internship adding AI inspection to biofabrication lines so structural and biological defects are caught before culture. Interns work with realistic case datasets.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £793
R · £1,153
3 Months
A · £1,042
T · £1,274
R · £1,852
6 Months
A · £2,315
T · £2,830
R · £4,116
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Digital Twin of Biofabricated Tissue Maturation
Internship simulating bioreactor maturation of fabricated tissues as digital twins that guide media, flow, and timing. Mentor-led sessions build applied skill.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £765
R · £1,113
3 Months
A · £1,006
T · £1,230
R · £1,788
6 Months
A · £2,235
T · £2,732
R · £3,973
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
AI Electrospin Nanofiber Scaffold Design Research
Internship designing electrospun nanofiber scaffolds with AI that match fibre diameter and porosity to target tissues. Guided practice with real datasets throughout.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £767
R · £1,116
3 Months
A · £1,008
T · £1,232
R · £1,792
6 Months
A · £2,240
T · £2,738
R · £3,983
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Neural Networks for Bioprinter Nozzle Optimization
Develop machine learning models to predict and optimize nozzle configurations for improved cell viability during extrusion-based bioprinting.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £777
R · £1,129
3 Months
A · £1,021
T · £1,248
R · £1,815
6 Months
A · £2,268
T · £2,772
R · £4,032
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
AI-Driven Microfluidic Chip Design for Biofabrication
Use generative algorithms to design and validate microfluidic channels that enhance cell seeding efficiency in biofabricated constructs.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £784
R · £1,141
3 Months
A · £1,031
T · £1,260
R · £1,833
6 Months
A · £2,291
T · £2,800
R · £4,072
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Computer Vision for Real-Time Bioprint Layer Detection
Implement image recognition systems to monitor and adjust bioprinting accuracy in real-time during multi-layer tissue fabrication.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £755
R · £1,098
3 Months
A · £992
T · £1,213
R · £1,764
6 Months
A · £2,204
T · £2,694
R · £3,919
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Machine Learning Prediction of Scaffold Mechanical Properties
Train algorithms to predict tensile strength and elasticity of 3D-printed bioscaffolds based on material composition and printing parameters.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £773
R · £1,124
3 Months
A · £1,016
T · £1,241
R · £1,805
6 Months
A · £2,257
T · £2,758
R · £4,012
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
AI Optimization of Crosslinking Chemistry in Bioinks
Apply machine learning to identify optimal crosslinking agent concentrations and UV exposure times for improved bioink stability.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £784
R · £1,141
3 Months
A · £1,031
T · £1,260
R · £1,833
6 Months
A · £2,291
T · £2,800
R · £4,072
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Deep Learning for Tumor Spheroid Growth Prediction
Develop neural network models to forecast 3D tumor spheroid development patterns in biofabricated tumor-on-chip platforms.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £766
R · £1,113
3 Months
A · £1,006
T · £1,230
R · £1,789
6 Months
A · £2,236
T · £2,733
R · £3,975
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Natural Language Processing for Biofabrication Protocol Standardization
Use NLP techniques to extract, standardize, and compare biofabrication protocols from scientific literature for reproducibility improvement.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £794
R · £1,154
3 Months
A · £1,043
T · £1,275
R · £1,854
6 Months
A · £2,318
T · £2,833
R · £4,120
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Federated Learning for Distributed Bioprinting Data Analysis
Research collaborative machine learning approaches to analyze bioprinting data across multiple labs while maintaining data privacy.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £789
R · £1,148
3 Months
A · £1,038
T · £1,268
R · £1,844
6 Months
A · £2,305
T · £2,818
R · £4,098
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
AI-Powered Metabolic Pathway Prediction in Biofabricated Tissues
Implement machine learning models to predict cellular metabolic activity and nutrient consumption in engineered tissue constructs.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £786
R · £1,143
3 Months
A · £1,034
T · £1,263
R · £1,837
6 Months
A · £2,296
T · £2,807
R · £4,082
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →
Graph Neural Networks for Cell-Cell Interaction Modeling
Apply graph-based deep learning to simulate and optimize cell-cell communication patterns within biofabricated tissue matrices.
Academic (A)Tech (T)Research (R)
1 Month
A · £268
T · £770
R · £1,120
3 Months
A · £1,013
T · £1,237
R · £1,800
6 Months
A · £2,249
T · £2,749
R · £3,999
14 more durations from 5 days to 1 year
10 focused areasClick to view more details →