Quick Overview: We are pleased to report that the cutting-edge research performed at the Distinguished Professor Dietmar W. Hutmacher and other Please visit our crowdfunding page and support the campaign.

Arc Ittc Additive Biomanufacturing Microsurgery - Detailed Overview & Context

We are pleased to report that the cutting-edge research performed at the Distinguished Professor Dietmar W. Hutmacher and other Please visit our crowdfunding page and support the campaign. In vitro disease models are used in biomedical research to study human diseases or to develop novel pharmaceutical reagents. Queensland researchers are giving new hope to breast cancer survivors who have undergone a mastectomy. Using a 3D printer ... Dietmar Hutmacher was awarded the QUT Vice Chancellor's Award for Excellence 2017 in recognition of his sustained and ...

Dr. Alan Lumsden, chairman of cardiovascular surgery at Houston Methodist, shares how the breakthrough technologies featured ... Achieve real-time visibility into viable cell density (VCD) with the Hamilton Incyte

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ARC ITTC Additive Biomanufacturing  (Microsurgery training tool, cancer research, biopen)
ARC ITTC Additive Biomanufacturing on 10 news (Microsurgery training tool, cancer research, biopen)
ARC ITTC Additive Biomanufacturing featured on 9 Channel
Easysurgery - Microsurgical Training Device, crowdfunding video
Easysurgery - Microsurgical Training Device, crowdfunding video
In vitro disease models 4.0 via automation and high-throughput processing
Channel 7 News: QUT Breast Cancer Research
QUT Vice Chancellor’s Award for Excellence 2017 - Prof Dietmar W Hutmacher
Inside the Future of CV Surgery: Remote Ultrasound, Super-Microsurgery, New Surgical Robots & More
Incyte Arc: Real-Time Viable Cell Density Monitoring for Smarter Bioprocess Control
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