Shilon
Eyal Shilon, Tel Aviv IL
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20120067345 | Nasal Dilation Method And Device - A nasal dilator adapted to stretch facial skin, including a resilient layer and attachment means. The resilient layer has an equilibrium configuration and a plurality of nonequilibrium configurations. Portions of the resilient layer are disposed upon a plurality of points upon the facial skin. The facial skin may be stretched by attaching the nasal dilator in a nonequilibrium configuration to the facial skin by the attachment means and allowing the nasal dilator to stretch the facial skin as the resilient layer moves towards the equilibrium. | 03-22-2012 |
Hanan Shilon, Yehud IL
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20120084605 | REPLAYING CAPTURED NETWORK TRAFFIC - Systems, methods, and machine readable and executable instructions are provided for replaying captured network traffic. A method for replaying captured network traffic can include replaying multiple captured network traffic files simultaneously on the same network device, the captured network traffic files including original network traffic captured from N original connections between C original clients and S original servers. During replaying, rewriting IF addresses and/or port number information of data packets comprising the original network traffic to reflect test network traffic from M test connections between X test clients and Y test servers, where at least X is different than C or Y is different than S. The method further includes modifying checksums, during replaying, to correct values corresponding to the rewritten IF addresses and port number information. N, C, S, M, X, and Y are positive integers. | 04-05-2012 |
Nir Shilon, Yehud IL
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20120084605 | REPLAYING CAPTURED NETWORK TRAFFIC - Systems, methods, and machine readable and executable instructions are provided for replaying captured network traffic. A method for replaying captured network traffic can include replaying multiple captured network traffic files simultaneously on the same network device, the captured network traffic files including original network traffic captured from N original connections between C original clients and S original servers. During replaying, rewriting IF addresses and/or port number information of data packets comprising the original network traffic to reflect test network traffic from M test connections between X test clients and Y test servers, where at least X is different than C or Y is different than S. The method further includes modifying checksums, during replaying, to correct values corresponding to the rewritten IF addresses and port number information. N, C, S, M, X, and Y are positive integers. | 04-05-2012 |
Ofek Shilon, Kfar Sava IL
Patent application number | Description | Published |
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20090177454 | SYSTEM AND METHOD FOR PERFORMING COMPUTERIZED SIMULATIONS FOR IMAGE-GUIDED PROCEDURES USING A PATIENT SPECIFIC MODEL - Embodiments of the invention are directed to a method of performing computerized simulations of image-guided procedures. The method may include producing a digital image-based model of an anatomical structure based on medical image data, producing, based on the image-based model and extrapolated data, an extended model that represents the anatomical structure and adjacent anatomical regions not included in the medical image data, displaying a graphical representation of the extended model and performing a computerized simulation of an image-guided procedure using the extended model. | 07-09-2009 |
20110236868 | SYSTEM AND METHOD FOR PERFORMING A COMPUTERIZED SIMULATION OF A MEDICAL PROCEDURE - Embodiments of the invention are directed to a method of performing computerized simulations of image-guided procedures. The method may comprise receiving medical image data of a specific patient. A patient-specific digital image-based model of an anatomical structure of the specific patient may be generated based on the medical image data. A computerized simulation of an image-guided procedure may be performed using the digital image-based model. Medical image data, the image-based model and a simulated medical tool model may be simultaneously displayed. | 09-29-2011 |
20140129200 | PREOPERATIVE SURGICAL SIMULATION - An apparatus for simulating an image-guided procedure. The system comprises an input for receiving a three-dimensional (3D) medical image depicting an organ of a patient, a model generation unit for generating a 3D anatomical model of the organ according to the 3D medical image, and a simulating unit for simulating a planned image-guided procedure on the patient, according to the 3D anatomical model. | 05-08-2014 |
Ofek Shilon, Sde Hemed IL
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20090018808 | Preoperative Surgical Simulation - An apparatus for simulating an image-guided procedure. The system comprises an input for receiving a three-dimensional (3D) medical image depicting an organ of a patient, a model generation unit for generating a 3D anatomical model of the organ according to the 3D medical image, and a simulating unit for simulating a planned image-guided procedure on the patient, according to the 3D anatomical model. | 01-15-2009 |
Reshef Shilon, Tel Aviv IL
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20150032443 | SELF-LEARNING STATISTICAL NATURAL LANGUAGE PROCESSING FOR AUTOMATIC PRODUCTION OF VIRTUAL PERSONAL ASSISTANTS - Technologies for natural language request processing include a computing device having a semantic compiler to generate a semantic model based on a corpus of sample requests. The semantic compiler may generate the semantic model by extracting contextual semantic features or processing ontologies. The computing device generates a semantic representation of a natural language request by generating a lattice of candidate alternative representations, assigning a composite weight to each candidate, and finding the best route through the lattice. The composite weight may include semantic weights, phonetic weights, and/or linguistic weights. The semantic representation identifies a user intent and slots associated with the natural language request. The computing device may perform one or more dialog interactions based on the semantic request, including generating a request for additional information or suggesting additional user intents. The computing device may support automated analysis and tuning to improve request processing. Other embodiments are described and claimed. | 01-29-2015 |