Acoustically ejecting a droplet of fluid from a reservoir by an acoustic fluid ejection apparatus
US-9221250-B2 · Dec 29, 2015 · US
US9629989B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9629989-B2 |
| Application number | US-201514692821-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 22, 2015 |
| Priority date | Mar 4, 2010 |
| Publication date | Apr 25, 2017 |
| Grant date | Apr 25, 2017 |
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Bioprinting station ( 1 ) comprising:—a Bioprinting device ( 4 ) adapted to deposit a pattern of biological material ( 2 ) onto an area of interest ( 3 a ) of a substrate ( 3 ),—an imaging system ( 15 ) adapted to acquire an image of the substrate ( 3 ) and to reveal on the acquired image the area of interest ( 3 a ) with respect to a remaining part ( 3 b ) of the substrate ( 3 ), the acquired image of the substrate ( 3 ) being processed so as to detect the revealed area of interest ( 3 a ) on the acquired image and to determine the pattern corresponding to the area of interest ( 3 a ) detected on the acquired image.
Opening claim text (preview).
The invention claimed is: 1. Bioprinting method comprising the following steps: A—providing a Bioprinting device adapted to deposit a pattern of biological material, B—providing a substrate presenting at least one area of interest and a remaining part, said area of interest having a feature that distinguishes said area of interest from the remaining part, C—positioning the area of interest with respect to the Bioprinting device, D—acquiring an image of the substrate and revealing on the acquired image the feature of the area of interest with respect to the remaining part, E—processing the acquired image of the substrate so as to detect the revealed area of interest on the acquired image and to determine the pattern corresponding to the area of interest detected on the acquired image, F—depositing onto the area of interest the biological material according to the pattern determined at step E and corresponding to the area of interest detected on the acquired image. 2. Bioprinting method according to claim 1 , wherein the step E comprises automatically detecting the revealed area of interest on the acquired image and automatically determining the pattern corresponding to the area of interest detected on the acquired image. 3. Bioprinting method according to claim 1 , wherein the area of interest of the substrate has a relief with respect to the remaining part of the substrate as feature, said relief having a geometry, and the step D comprises revealing on the acquired image the relief, the step E comprises detecting the revealed relief on the acquired image and determining the pattern corresponding to the geometry of the relief detected on the acquired image, and the step F comprises forming a biological tissue structure corresponding to the relief. 4. Bioprinting method according to claim 1 , wherein the step E further comprises determining a location of the area of interest, and the step F comprises depositing the biological material at the determined location. 5. Bioprinting method according to claim 1 , wherein the providing step A includes providing a bioprinting station comprising the bioprinting device and an imaging system, the bioprinting device comprising: at least one biological material dispenser comprising a holding device provided with at least one opened working space, and a laser system comprising a laser device for emitting a laser beam adapted to transfer the biological material and an optical scanning device adapted to orient the laser beam within the opened working space, and a positioning system, wherein step C includes holding at least one ribbon containing the biological material in the holding device of the dispenser with at least a part of the ribbon being received in the opened working space, placing the substrate in the positioning system and positioning the area of interest with respect to the dispenser by the positioning system, wherein step D includes driving the imaging system according to an optical pathway to acquire the image of the substrate, the substrate being scanned by moving the optical pathway along the substrate through the optical scanning device of the laser device, and wherein step F includes driving the holding device and the positioning system relative to one another so that the opened working space faces the area of interest, and depositing the biological material according to the pattern determined at step E within the opened working space by driving the laser system and the positioning system relative to one another.
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