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Integrated high-resolution on-chip structured illumination microscopy

Descripción del proyecto

Microscopia de fluorescencia basada en chips

La microscopia de fluorescencia permite estudiar la fisiología celular mediante la visualización de la distribución de moléculas individuales. A pesar de los avances en las tecnologías de alta resolución, estas son complejas y aún tienen un impacto social limitado, ya que no se han introducido en los diagnósticos rutinarios. El equipo del proyecto IROCSIM, financiado con fondos europeos, pretende desarrollar un nuevo tipo de microscopio que sustituya las lentes por circuitos integrados fotónicos. La plataforma de microscopia generada integrará iluminación óptica, filtros y sensores de imagen en un único chip. El nuevo microscopio será compacto, robusto y tendrá unos requisitos de mantenimiento mínimos, lo cual facilitará su amplia accesibilidad.

Objetivo

Fluorescent microscopy is an indispensable tool in biology and medicine that has fueled many breakthroughs in a wide set of sub-domains.
Recently the world of microscopy has witnessed a true revolution in terms of increased resolution of fluorescent imaging techniques. To break the intrinsic diffraction limit of the conventional microscope, several advanced super-resolution techniques were developed, some of which have even been awarded with the Nobel Prize in 2014. High resolution microscopy is also responsible for the spectacular cost reduction of DNA sequencing during the last decade.
Yet, these techniques remain largely locked-up in specialized laboratories as they require bulky, expensive instrumentation and highly skilled operators.
The next big push in microscopy with a large societal impact will come from extremely compact and robust optical systems that will make high-resolution (fluorescence) microscopy highly accessible, enabling both cellular diagnostics at the point of care and the development of compact, cost-effective DNA sequencing instruments, facilitating early diagnosis of cancer and other genomic disorders.
IROCSIM will facilitate this next breakthrough by introducing a novel high-resolution imaging platform based entirely on an intimate marriage of active on-chip photonics and CMOS image sensors.
This concept will completely eliminate the necessity of standard free-space optical components by integrating specially designed structured optical illumination, illumination modulation, an excitation filter and an image sensor in a single chip.
The resulting platform will enable high resolution, fast, robust, zero-maintenance, and inexpensive microscopy with applications reaching from cellomics to DNA sequencing, proteomics, and highly parallelized optical biosensors.

Ámbito científico (EuroSciVoc)

CORDIS clasifica los proyectos con EuroSciVoc, una taxonomía plurilingüe de ámbitos científicos, mediante un proceso semiautomático basado en técnicas de procesamiento del lenguaje natural.

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Régimen de financiación

ERC-STG - Starting Grant

Institución de acogida

INTERUNIVERSITAIR MICRO-ELECTRONICA CENTRUM
Aportación neta de la UEn
€ 1 499 625,00
Dirección
KAPELDREEF 75
3001 Leuven
Bélgica

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Región
Vlaams Gewest Prov. Vlaams-Brabant Arr. Leuven
Tipo de actividad
Research Organisations
Enlaces
Coste total
€ 1 499 625,00

Beneficiarios (1)