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[{"model": "core.projectfund", "pk": 28847, "fields": {"project": 6063, "organisation": 4, "amount": 247584, "start_date": "2011-12-01", "end_date": "2013-05-30", "raw_data": 47301}}]
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[{"model": "core.projectfund", "pk": 20978, "fields": {"project": 6063, "organisation": 4, "amount": 247584, "start_date": "2011-12-01", "end_date": "2013-05-30", "raw_data": 28809}}]
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[{"model": "core.projectorganisation", "pk": 79270, "fields": {"project": 6063, "organisation": 7144, "role": "PARTICIPANT_ORG"}}]
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[{"model": "core.projectorganisation", "pk": 79269, "fields": {"project": 6063, "organisation": 7144, "role": "LEAD_ORG"}}]
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[{"model": "core.projectperson", "pk": 49012, "fields": {"project": 6063, "person": 7824, "role": "PM_PER"}}]
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{"title": ["", ""MEGALASE" - Multi-mEGAwatt peak power ultrafast fibre LASEr for ophthalmic surgery"], "description": ["", "\nUltra-short pulse (Femtosecond) laser technology is becoming increasingly common within\nophthalmic surgery, with all-laser LASIK eye surgery now becoming a routine procedure,\navailable at high street opticians. However, high capital cost and limitations in performance\nof traditional femtosecond laser technology are slowing down the uptake of the technology,\nwhich still only has approximately 20% of the global market for LASIK procedures. The cost\nand performance barriers become even greater for non-elective procedures such as Cataract,\nespecially within developing nations where clinics cannot afford high-cost instrumentation.\nA commercially viable, compact, cost-effective femtosecond laser technology is required to\nenable widespread use of laser-surgery in ophthalmology. MEGALASE will address this\nneed by developing a prototype femtosecond laser delivering in excess of 20 Megawatts of\noptical peak power within pulses shorter than 500 Femtoseconds.\nMEGALASE is inspired by several Fianium patent applications for state of art ultrashort\npulse fibre amplifier technology. The novel amplifier design delivers output power in a\npurely single spatial mode, offering the quality of beam that is essential for ophthalmic\nsurgery applications.\nDelivering more than 10 micro-Joules of pulse energy, the laser system output has potential\napplication within all existing elective refractive surgery procedures as well emerging\nprocedures including cataract repair.\nSuccessful delivery of the prototypes will present a fantastic opportunity to further exploit the\nrapidly expanding global market for industrial and scientific laser technology to the benefit of\nUK companies and the wider UK economy.\n\n"], "extra_text": ["", "\n\n\n\n"], "status": ["", "Closed"]}
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{"external_links": [22519]}
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April 11, 2022, 1:48 a.m. |
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[{"model": "core.project", "pk": 6063, "fields": {"owner": null, "is_locked": false, "coped_id": "fed091d0-00ca-490d-9fba-3a3b2ab0249b", "title": "", "description": "", "extra_text": "", "status": "", "start": null, "end": null, "raw_data": 28794, "created": "2022-04-11T01:42:22.734Z", "modified": "2022-04-11T01:42:22.734Z", "external_links": []}}]
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