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Avniel
Amir Avniel, New York, NY US
| Patent application number | Description | Published |
|---|---|---|
| 20110030097 | COMPOSITIONS AND METHODS FOR ENHANCING OIL CONTENT IN PLANTS - The present invention provides transgenic plants with altered oil content. The invention further provides nucleic acid sequences and methods for generating such plants. | 02-03-2011 |
Amir Avniel, Tel-Aviv IL
| Patent application number | Description | Published |
|---|---|---|
| 20100184205 | NUCLEIC ACIDS INVOLVED IN VIRAL INFECTION - Provided herein are isolated viral and human nucleic acids associated with viral infection and various nucleic acid molecules relating thereto or derived therefrom. The nucleic acids may be useful for the prevention, treatment and diagnosis of viral infections. | 07-22-2010 |
| 20110213007 | MicroRNAs and uses thereof - Described herein are novel polynucleotides associated with prostate and lung cancer. The polynucleotides are miRNAs and miRNA precursors. Related methods and compositions that can be used for diagnosis, prognosis, and treatment of those medical conditions are disclosed. Also described herein are methods that can be used to identify modulators of prostate and lung cancer. | 09-01-2011 |
Amir Avniel, Givataim IL
| Patent application number | Description | Published |
|---|---|---|
| 20110189766 | Micrornas and uses thereof - Described herein are novel polynucleotides associated with prostate and lung cancer. The polynucleotides are miRNAs and miRNA precursors. Related methods and compositions that can be used for diagnosis, prognosis, and treatment of those medical conditions are disclosed. Also described herein are methods that can be used to identify modulators of prostate and lung cancer. | 08-04-2011 |
Eitan Avniel, Lapid IL
| Patent application number | Description | Published |
|---|---|---|
| 20100062395 | DEVICE PROVIDING AN INTERFACE BETWEEN A DENTAL IMPLANT AND AN ABUTMENT - A system comprising a dental interface device and a dental implant. The interface device provides an interface between a dental abutment and the implant allowing connecting the implant to the abutment. The interface device may comprise a shank and a polygonal connector, where the connector extends from one end of the shank. The connector may comprise sections forming the polygonal shape where the implant may comprise a polygonal receptacle, which is a cavity designed to receive the polygonal connector of the interface device. The outer dimensions of the connector may be slightly larger than the corresponding inner dimensions of the polygonal receptacle. The sections can bend inwardly towards the center of the connector when inserted to the receptacle, and return to an unbent position once the connector is inside the receptacle, thereby applying pressure upon the inner walls of the receptacle, thereby securing said connector to the receptacle and implant. | 03-11-2010 |
Yehuda Avniel, Cambridge, MA US
| Patent application number | Description | Published |
|---|---|---|
| 20100258174 | GLOBAL OPTIMIZATION OF THIN FILM PHOTOVOLTAIC CELL FRONT COATINGS - A solar cell includes a thin film photovoltaic material structure used in absorbing light of a selective bandwidth. A multitude of dielectric front coatings are positioned on the thin film photovoltaic material structure so as to maximize admittance over the selected bandwidth. The thicknesses and indices of each of the front coatings are chosen by a global-optimization procedure to maximize the short-circuit current of the solar cell. | 10-14-2010 |
Yuval Avniel, Missoula, MT US
| Patent application number | Description | Published |
|---|---|---|
| 20110212320 | Composite Material - Disclosed herein are engineered composite materials suitable for applications that can benefit from a composite material capable of interacting with or responding to, in a controlled or pre-determined manner, changes in its surrounding environment. The composite material is generally includes a gradient layer structure of a sequence of at, e.g., three or more gradient-contributing layers of microscale particles, wherein a mean particle size of particles of neighboring gradient-contributing layers in the cross section of the gradient layer structure varies from layer to layer, thereby forming a particle size gradient, and in contact with the gradient layer structure, a densely packed particle structure including densely packed microscale particles, wherein a mean particle size of the densely packed microscale particles does not form a particle size gradient in the cross section of the densely packed particle structure. | 09-01-2011 |
