進階篩選

Technical category
技術研發單位
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    • Advancement Project for Smart Machinery and Aerospace Industries in Central and Southern Taiwan

      Smart machinerynovel materials FutureTech Advancement Project for Smart Machinery and Aerospace Industries in Central and Southern Taiwan

      The developed technology is a cross-platform interface demonstrates its capabilities via the machining center VP2012. The interface is able to synchronize operating systems for diversified controllers. It integrates multiple functions, such as intelligent thermal balance, intelligent vibration analysis, and artificial neural network learning responsive technique. The developed technology advances software, hardware and firmware of a MIT machining center, setting up a representative example of smart machine for local manufactures, even the whole industry.
    • Low-dose nanoscale biomimetic cell structure – Next-generation platform technology for advanced precision immunotherapy

      Precision Health Ecosystem FutureTech Low-dose nanoscale biomimetic cell structure – Next-generation platform technology for advanced precision immunotherapy

      We developed a biomimetic triple-antibody-immobilized magnetic fucoidan nanomedicine as a multifunctional artificial antigen presenting cell, which possessed the ability to not only inhibit immune checkpoint but activate tumor infiltrated T cells. of Bridging sites with tunable density on the nanoplatform was designed, allowing the antibodies to be well-distributed on the surface for mimicking immune cells. In contrast to the complex cell expansion process using microbeads in adaptive cell therapy, the nanoplatform can be i.v. administrated to cut the course of therapy from several weeks to days. With the development of the platform technology, an artificial immune system family can be built to pave the way for personalized immunotherapy.
    • Precision blood test for detection of breast cancer

      Precision Health Ecosystem FutureTech Precision blood test for detection of breast cancer

      EPICAn is a novel technique that uses liquid biopsy for epigenetic analysis. Using methylation-specific PCR method to analyze specific gene methylation of cell-free DNA in plasma for early detection of breast cancer. The advantages of this technology are 1. High accuracy 2. Low false positive rate 3. Low-invasive 4. less limitation 5. Available for routine continuous detection 6. Monitoring cancer changes 7. Aided diagnosis 8. Automated process 9. Easy-to-operate 10. Rapid analysis. It is expected that EPICAn technique can increase the accuracy of early detection of breast canceraid clinicians diagnosis.
    • Next Precision Weightlifting Platform

      AI & IOT Application FutureTech Next Precision Weightlifting Platform

      The main purpose of this invention is to provide a training system with the surrounding photographing unit, the display unit,a force platform. The system can immediately capture the motion of the user from various angles,measure the force of the user from both legs, in order to provide the useful biofeedback information to coachesathletes.
    • Modular Polymeric Nanoshells for Precision AntiviralAnticancer Vaccination

      Bio-tech & New Drugs FutureTech Modular Polymeric Nanoshells for Precision AntiviralAnticancer Vaccination

      Effectively inducing cytotoxic T cell expansion has been a critical challenge in vaccine development. To address this challenge, an entirely biodegradable polymeric nanoshell was invented to couple antigensadjuvants for safepotent immune potentiation. The invention has been adopted for precision anticancer vaccine, broadly reactive influenza vaccine,an effective vaccine MERS-CoV.
    • High Precision Maskless Lithography System for Advanced IC SubstratesPackaging

      Electronic & Optoelectronics Innotech Expo High Precision Maskless Lithography System for Advanced IC SubstratesPackaging

      This project develops a high-precision maskless lithography system consists of digital light processing, microlens / spatial filters arrays,precision servo-controlled motion technologies. Based on this maskless UV lithographic system, we are able to achieve UV patterning of arbitrarycomplicated 2D/3D microstructures for advanced IC substratepackaging.
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