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Research unit
INNOSUISSE
Project number
9389.1;5 PFLS-LS
Project title
DHM: cognitive microscopy for automatic and fast decision

Texts for this project

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Short description
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Abstract
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Short description
(English)
DHM: cognitive microscopy for automatic and fast decision
Short description
(French)
DHM: cognitive microscopy for diagnosis and high throughput screening
Abstract
(English)
R&D measurements using standard Digital Holographic Microscopes (DHM) are nowadays carried out on a routine basis by numerous users in Life Sciences. Neverthless, the path from measurement to relevant biological parameters, for instance shape and volume, required manual, non automated parameters extraction: this restricts the DHM sales. Additional software modules and automation of table and drug dispenser are required.The purpose of this new CTI project entitled ¿DHM: cognitive microscopy for diagnosis and high throughput screening¿ is essential for the valorisation of DHM technologies in the field of life sciences: appealing perspectives of DHM for cell viability determination have been evidenced. The potentiality of DHM must be fully exploited by developing innovative high throughput cell screening techniques. Application to important fields of life sciences such as Hematology, Immunology, Neuroscience, Pharmacology, Cellular cycle and motility will be addressed
Abstract
(French)
R&D measurements using standard Digital Holographic Microscopes (DHM) are nowadays carried out on a routine basis by numerous users in Life Sciences. Neverthless, the path from measurement to relevant biological parameters, for instance shape and volume, required manual, non automated parameters extraction: this restricts the DHM sales. Additional software modules and automation of table and drug dispenser are required.The purpose of this new CTI project entitled ¿DHM: cognitive microscopy for diagnosis and high throughput screening¿ is essential for the valorisation of DHM technologies in the field of life sciences: appealing perspectives of DHM for cell viability determination have been evidenced. The potentiality of DHM must be fully exploited by developing innovative high throughput cell screening techniques. Application to important fields of life sciences such as Hematology, Immunology, Neuroscience, Pharmacology, Cellular cycle and motility will be addressed