Leblans
Marc Jan René Leblans, Kontich BE
Patent application number | Description | Published |
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20110082046 | METHOD AND DEVICE FOR THE MANIPULATION OF MICROCARRIERS FOR AN IDENTIFICATION PURPOSE - The present invention relates to a method for the manipulation for an identification purpose of a microcarrier comprising the steps of: (a) an identification purpose step of the microcarrier; and (b) a positioning and orientation step prior to or during the identification purpose step, wherein the identification purpose step is a detection step for the detection of an encoded microcarrier having an anisotropy in its shape. The invention further relates to an apparatus for the manipulation for identification purposes of a microcarrier comprising means for identification purposes such as a microscoper and means for the positioning and orientation of the microcarriers. | 04-07-2011 |
20130190552 | IMPLANTABLE ACTUATOR FOR HEARING APPLICATIONS - The invention relates to an electromechanical actuator | 07-25-2013 |
Marc Jan René Leblans, Kontich BE
Patent application number | Description | Published |
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20110082046 | METHOD AND DEVICE FOR THE MANIPULATION OF MICROCARRIERS FOR AN IDENTIFICATION PURPOSE - The present invention relates to a method for the manipulation for an identification purpose of a microcarrier comprising the steps of: (a) an identification purpose step of the microcarrier; and (b) a positioning and orientation step prior to or during the identification purpose step, wherein the identification purpose step is a detection step for the detection of an encoded microcarrier having an anisotropy in its shape. The invention further relates to an apparatus for the manipulation for identification purposes of a microcarrier comprising means for identification purposes such as a microscoper and means for the positioning and orientation of the microcarriers. | 04-07-2011 |
Marc Jan René Leblans, B-2550 Kontich BE
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20140249050 | METHOD AND DEVICE FOR THE MANIPULATION OF MICROCARRIERS FOR AN IDENTIFICATION PURPOSE - Disclosed is a method for the manipulation for an identification purpose of a microcarrier comprising the steps of: (a) an identification purpose step of the microcarrier; and (b) a positioning and orientation step prior to or during the identification purpose step. Also disclosed is an apparatus for the manipulation for identification purposes of a microcarrier comprising means for identification purposes such as a microscope or labelling means such as a high spatial resolution light source, and means for the positioning and orientation of the microcarriers. | 09-04-2014 |
Paul Leblans, Kontich BE
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20080292060 | X-ray imaging cassette for use in radiotherapy - An X-ray imaging cassette having a cover side and a tube side is suitable for use in radiotherapy applications, if comprising, in admixture with storage phosphor particles in the phosphor layer of a loaded radiation image storage phosphor plate, metal or metal compound particles in form of powder, dispersed in a binder. | 11-27-2008 |
20090001287 | RADIATION IMAGE STORAGE PANEL SUITABLE FOR USE IN MAMMOGRAPHIC APPLICATIONS - In a photostimulable storage phosphor screen or panel wherein said screen comprises storage phosphor particles dispersed in a binder and wherein said particles have a particle size distribution having a d | 01-01-2009 |
20090162535 | METHOD OF FORMING A PHOSPHOR OR SCINTILLATOR MATERIAL AND VAPOR DEPOSITION APPARATUS USED THEREFOR - In a method of preparing a storage phosphor or a scintillator layer on a support by vapor depositing from a crucible unit in a vapor deposition apparatus, while heating as phosphor or scintillator precursor raw materials a matrix component and an activator component or a precursor component thereof, said crucible unit comprises a bottom and surrounding side walls as a container for the said phosphor or scintillator precursor raw materials present in said crucible, said crucible is provided with an internal lid with perforations ( | 06-25-2009 |
20090242836 | X-RAY IMAGING PHOTOSTIMULABLE PHOSPHOR SCREEN OR PANEL - In a method of preparing a phosphor or scintillator layer to become deposited on a support, a vapor depositing step is applied from a crucible unit by heating as phosphor precursor raw materials present in said crucible, a Cs(X,X′) matrix compound and an activator or dopant precursor compound, wherein said crucible unit comprises at least a bottom and surrounding side walls as a container for phosphor precursor raw materials present in said crucible in liquefied form after heating said crucible, and wherein said Cs(X,X′) matrix compound has a higher vapor pressure than said activator or dopant precursor compound, said method comprising a step of providing said activator or dopant compound in form of a precursor raw material represented by the formula Cs | 10-01-2009 |
20100226557 | Method of Eliminating Effect of Afterglow on Radiation Image Read Out of Photostimulable Phosphor Screen - Method of eliminating the effect of afterglow on a radiation image read out of a photostimulable phosphor screen. For each pixel the amount of afterglow generated by previously scanned pixels in the same line of pixels is determined and subtracted from the digital signal representation of that pixel. | 09-09-2010 |
20140186657 | STORAGE SCREENS FOR MEDICAL RADIOGRAPHY - The present invention concerns a method for the treatment of stimulable phosphors and/or screens for use in diagnosis, in particular medical radiography. The method comprises subjecting the stimulable phosphors and/or screens to an epoxide containing gaseous compound, promptly following their manufacture. By applying the method according to the invention yellowing of the stimulable phosphors and/or screens is prevented in a safe and efficient manner; thereby the disadvantages known as such resulting from such yellowing will not occur. | 07-03-2014 |
Paul Leblans, Mortsel BE
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20160051706 | PROCESS FOR PRODUCING A COMPLEX OF A LANTHANIDE WITH A MACROCYCLIC LIGAND - A process for producing a complex of a lanthanide or similar compound with a macrocyclic ligand, wherein the ratio of macrocyclic ligand in free form in relation to the lanthanide or similar compound is equal or more than 0.002% mol/mol, includes the steps of a) measuring the moisture content in a sample of the macrocyclic ligand; and b) mixing an amount G of the lanthanide with an amount X3 of the macrocyclic ligand with the proviso that X3=LG+Lf+M, wherein LG is the amount of macrocyclic ligand necessary for complexing the amount G of lanthanide or similar compound, Lf is an excess amount of the macrocyclic ligand, and M is the amount of moisture present in the amount X3 of the macrocyclic ligand. | 02-25-2016 |