Basak
Basak Icli, Wellesley, MA US
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20140121262 | Methods of Using microRNA-26a to Promote Angiogenesis - Methods for promoting angiogenesis, and for diagnosing the presence or risk of developing disorders associated with impaired angiogenesis or blood flow to a tissue in the body, using microRNA-26a (miR-26a). | 05-01-2014 |
Basak Kayhan, Ankara TR
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20100021489 | Nucleic acid molecules, polypeptides, antibodies and compositions for treating and detecting influenza virus infection - Polynucleotides and polypeptides which participate in influenza virus infection of cells and nucleic acid molecules, which include a polynucleotide sequence capable of specifically binding the polypeptides of the present invention. Also provided are methods of using such nucleic acid molecules, polynucleotides and antibodies directed thereagainst for diagnosing, treating and preventing influenza virus infection. | 01-28-2010 |
20130079390 | NUCLEIC ACID MOLECULES, POLYPEPTIDES, ANTIBODIES AND COMPOSITIONS FOR TREATING AND DETECTING INFLUENZA VIRUS INFECTION - Polynucleotides and polypeptides which participate in influenza virus infection of cells and nucleic acid molecules, which include a polynucleotide sequence capable of specifically binding the polypeptides of the present invention. Also provided are methods of using such nucleic acid molecules, polynucleotides and antibodies directed thereagainst for diagnosing, treating and preventing influenza virus infection. | 03-28-2013 |
Basak Oztan, Rochester, NY US
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20090214113 | Removing Ringing and Blocking Artifacts from JPEG Compressed Document Images - A method of removing ringing and blocking artifacts from a decompressed digital image. In one method, a background value of the digital image a background region and foreground regions is determined, and a threshold value is computed. A mapping of the digital image is then generated by thresholding the digital image based on the threshold value to produce a thresholded image, and enlarging the foreground regions of the thresholded image to form a map image. The mapping includes the background pixels of the map image. The background region of the decompressed digital image is then cleansed based on the mapping. In an alternate method, ringing artifacts are removed from a decompressed digital image based on a signal-to-noise ratio of the image. In yet another alternate embodiment, ringing artifacts are from a decompressed digital color image that includes a chrominance channel and a luminance channel. An alternate embodiment removes ringing and blocking artifacts. | 08-27-2009 |
Basak Ulker Karbeyaz, Medford, MA US
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20120294415 | METHOD AND SYSTEM FOR HIGH RESOLUTION NUTATED SLICE RECONSTRUCTION USING QUARTER DETECTOR OFFSET - A method and system are provided for generating high resolution CT images. The NSR# method improves on the AMPR method, by increasing the in-plane image resolution of CT scanners, in the helical scanning mode. The provided method uses the quarter detector offset and interleaving of complementary data to achieve in plane image resolution that is similar to the high resolution axial scanning mode utilizing quarter detector offset and interleaving. The method includes several ways of choosing the data to be interleaved, like NSR# with two planes, NSR# with 3 planes, NSR# with multiple planes. The interleaved data are used to create high resolution tilted slices. The NSR# method optimizes the untilting filter to create a mix of high and low resolution tilted slices to achieve the desired in-plane image resolution-image artifact balance required for the imaging task. In one embodiment in the untilting process one may use only high resolution tilted slices, for maximum resolution benefit. In another embodiment one may mix high resolution tilted slices with standard resolution tilted slices resulting from data that did not go through interleaving. This creates unfilled slices of higher resolution than the standard and with lower artifacts. In another embodiment for scans with pitch lower than ⅔ one may reduce the collimation to reduce the dose to the patient. | 11-22-2012 |