Abstract: Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
Abstract: Systems, methods, and apparatuses for providing dynamic, prioritized spectrum utilization management. The system includes at least one monitoring sensor, at least one data analysis engine, at least one application, a semantic engine, a programmable rules and policy editor, a tip and cue server, and/or a control panel. The tip and cue server is operable utilize the environmental awareness from the data processed by the at least one data analysis engine in combination with additional information to create actionable data.
Abstract: Systems and methods for cardiac radioablation treatment planning are disclosed. In some examples, a computing device receives a first signal identifying a first event within a first workspace from a second computing device. The computing device determines a first action to apply to a first image displayed within a second workspace based on the first signal. The computing device generates a second image based on applying the first action to the first image within the second workspace, and displays the second image within the second workspace. In some examples, the first workspace is a radiation oncologist workspace and the second workspace is an electrophysiologist workspace. In some examples, the first workspace is an electrophysiologist oncologist workspace and the second workspace is a radiation oncologist workspace.
Type:
Grant
Filed:
July 3, 2020
Date of Patent:
April 22, 2025
Assignees:
VARIAN MEDICAL SYSTEMS, INC., SIEMENS HEALTHINEERS INTERNATIONAL AG
Inventors:
Leigh Scott Johnson, Jonas Michael Honegger, Patrik Niklaus Kunz, Stefan Georg Scheib, Francesca Attanasi, Andrea Morgan
Abstract: Embodiments assess security vulnerability of an application. An embodiment identifies one or more executables associated with an application and identifies one or more libraries associated with the application. In turn, based on the identified one or more executables and identified one or more libraries, static vulnerability of the application and dynamic vulnerability of the application are determined. Then, an indication of security vulnerability of the application is generated based on the determined static vulnerability and the determined dynamic vulnerability.
Abstract: Embodiments determine event, e.g., performance degradation, security breach, etc., occurrence based on telemetry data. An embodiment receives telemetry data, e.g., data based on an HTTP transaction, and a rule associated with the telemetry data. The rule defines one or more filters for processing the telemetry data. In turn, a rule engine is modified in accordance with the received rule. The received telemetry data is processed with the modified rule engine to determine event occurrence.
Abstract: A microprocessor includes a macro-op (MOP) cache (MOC) comprising a set-associative MOC tag RAM (MTR) and a MOC data RAM (MDR) managed as a pool of MDR entries. A MOC entry (ME) comprises one MTR entry and one or more MDR entries that hold the MOPs of the ME. The MDR entries of the ME have a program order. Each MDR entry holds MOPs and a next MDR entry pointer. Each MTR entry holds initial MDR entry pointers and specifies the number of the MDR entries of the ME. During ME allocation, the MOC populates the MDR entry pointers to point to the MDR entries based on the program order. In response to an access that hits upon an MTR entry, the MOC fetches the MDR entries according to the program order initially using the initial pointers and subsequently using the next pointers.
Abstract: Alternative-reality devices and methods are disclosed for establishing and visualizing historical sites of vascular access, which are useful for evaluating potential sites of vascular access and improving the successes of obtaining vascular access. For example, an alternative-reality device includes anatomical target-defining instructions and vascular access site-tracking instructions in memory of the alternative-reality device for execution by one-or-more processors thereof. The alternative-reality device also includes a patient-facing camera configured to capture images or video frames for generating an anatomical target in the memory per the anatomical target-defining instructions and tracking the historical sites of vascular access in relation thereto with the vascular access site-tracking instructions.
Abstract: A lubrication mechanism of a strain wave gearing is disposed in an interior space of an externally toothed gear and comprises a powder-accommodating bag that stores solid lubricant powder. A diaphragm of the externally toothed gear is repeatedly deflected during the driving of the strain wave gearing. Vibration or deflection is repeatedly imparted to the powder-accommodating bag and the solid lubricant powder is discharged from a powder discharge hole formed in the powder-accommodating bag into the interior space. A site to be lubricated is lubricated with the solid lubricant powder discharged into the interior space. Harmful effects due to a large amount of the solid lubricant powder being supplied to the site to be lubricated at one time can be resolved, and a necessary amount of the solid lubricant powder can be continuously supplied to the site to be lubricated.
Abstract: Disclosed are systems and methods to track an object in a scene even when the object is partially or wholly obscured by an artifact, such as another object. As the tracked object moves through the scene, frames of video are processed and used to refine and tune a diffusion model that predicts an appearance of the tracked object in future frames of the video as well as the appearance of artifacts in the frames of the video. Frames of the video may then be enhanced to illustrate the tracked object as if the tracked object were visible through the artifact.
Abstract: An ultrasound imaging system configured to simultaneously capture one or more ultrasound images and sterilize a skin surface within a target area via ultraviolet light. The ultrasound imaging system includes an ultrasound probe having an ultrasound array configured to capture the one or more ultrasound images of a target area. A sterilizing system of the ultrasound probe includes a plurality of ultraviolet light sources. Logic of the ultrasound imaging system governs the operation of the ultraviolet light sources including activation, deactivation, intensity modulation, and/or pulsing modulation. Contact and motion sensors provide input to the logic and the logic governs operation of the ultraviolet light sources in accordance input received from the contact and motion sensors.
Abstract: Systems, methods, and apparatuses for providing optimization of network resources. The system is operable to monitor the electromagnetic environment, analyze the electromagnetic environment, and extract environmental awareness of the electromagnetic environment. The system extracts the environmental awareness of the electromagnetic environment by including customer goals. The system is operable to use the environmental awareness with the customer goals and/or user defined policies and rules to extract actionable information to help the customer optimize the network resources.
Abstract: Systems and methods are disclosed for cutting and trimming dental molds and oral appliances by receiving a digital model of teeth, determining a cutting loop path and applying a drape wall to the cutting loop to generate a simplified tooth base in a dental mold having an inner arch curve and an outer arch curve. The oral appliance may be formed on the dental mold and a cutter may be applied using a sweeping motion across the inner and outer arch curves.
Abstract: Pulsatile balloon catheter systems are provided. Aspects of the systems include: a pulse generator; and a balloon catheter assembly operably connected to the pulse generator. In embodiments, the balloon catheter assembly includes: a proximal connector operably connecting the balloon catheter assembly to the pulse generator and configured to transduce a first pulse energy generated by the pulse generator to a second pulse energy; a distal balloon; and a catheter component, where the catheter component includes a fluidic passage operably positioned between the proximal connector and the distal balloon, which passage is configured to propagate the second pulse energy from the proximal connector along the fluid passage to the distal balloon. Also provided are balloon catheter assemblies and kits that include the same. Also provided are systems and methods for assessing vessel compliance in-vivo. Also provided are systems and methods for determining system state of balloon catheter systems.
Abstract: Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
Abstract: A method is disclosed. In the method, a set of data blocks can be stored. A continuous stream of data can be received. First data from the continuous stream of data can be stored in a first subset of data blocks. Second data from the continuous stream of data can be stored in a second subset of data blocks. Responsive to determining each of the set of data blocks is filled with data, data in a third subset of data blocks can be overwritten with data from the continuous stream of data.
Abstract: Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
Abstract: A system for optimizing shut-down and restart of an Open Radio Access Network (O-RAN) radio unit (O-RU) deployed in an O-RAN Citizens Broadband Radio Service (CBRS) network includes: spectrum access system (SAS); CBRS Domain Proxy (DP) located in a Centralized Data Center (CDC); Cloud Management Service (CMS) located in the CDC; a first CBRS Interface Monitoring and Alert (CIMA) located in the CDC; a second CIMA located in a Distributed Data Center (DDC); at least one O-RAN Distributed Unit (O-DU) located in the DDC; a plurality of O-RAN Radio Units (O-RUs) located in the DDC; and an O1 interface connecting the CDC and DDC. The second CIMA located in the DDC monitors the O1 interface connection to the DDC, and if a failure of the O1 interface lasts longer than a specified time duration Sd, alerts the at least one O-DU regarding the failure of the O1 interface.
Type:
Application
Filed:
October 7, 2024
Publication date:
April 17, 2025
Applicant:
Mavenir Systems, Inc.
Inventors:
Rangsan Leelahakriengkrai, Abhilash Dev
Abstract: Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor data that the system validates above a mathematical threshold.
Abstract: Systems and methods of sensor data fusion including sensor data capture, curation, linking, fusion, inference, and validation. The systems and methods described herein reduce computational demand and processing time by curating data and calculating conditional entropy. The system is operable to fuse data from a plurality of sensor types. A computer processor optionally stores fused sensor that the system validates above a mathematical threshold.
Abstract: Disclosed herein is a method for the preparation of an aromatic polyimide substrate for optical displays that can be carried out during the manufacture of the display, The process includes the steps of applying a solution of an aromatic tetracarboxylic acid or an aromatic tetracarboxylic acid derivative and a low molecular weight polyamic acid on a solid support and heating to 425° C. to 450° C. The polyamic acid is prepared from non-stoichiometric amounts of BPDA and PDA. The tetracarboxylic acid is BPTA or PMA. The solution has a solids content of 15 to 25 wt % and an apparent viscosity of 2,000 to 10,000 cPs. The substrate has an elongation to break of greater than 30%, a modulus greater than 8 GPa, a maximum stress to break greater than 400 MPa, and a yellowness factor b*<25. For display manufacturing, the substrate has a softening temperature above 450° C.
Type:
Application
Filed:
March 19, 2024
Publication date:
April 17, 2025
Applicant:
Akron Polymer Systems, Inc.
Inventors:
Zhen Li, Lang Hu, Limin Sun, Frank W. Harris, Dong Zhang