Patents
Literature
Hiro is an intelligent assistant for R&D personnel, combined with Patent DNA, to facilitate innovative research.
Hiro

114 results about "Intervention measures" patented technology

Measures of Effect Size of an Intervention. A key question needed to interpret the results of a clinical trial is whether the measured effect size is clinically important. Three commonly used measures of effect size are relative risk reduction (RRR), absolute risk reduction (ARR), and the number needed to treat (NNT) to prevent one bad outcome.

Computational method and system to perform empirical induction

The present invention is an improved computational method and system of empirical induction that can be used to arrive at generalized conclusions and make predictions involving longitudinal associations between and among variables and events. Empirical induction is used to gain scientific knowledge, to develop and evaluate treatments and other interventions, and to help make predictions and decisions. The invention, which is distinct from and often complementary to the statistical method, is applied to repeated measures and multiple time-series data and can be used to quantify, discover, analyze, and describe longitudinal associations for individual real and conceptual entities. Major improvements include provisions to define Boolean independent events and Boolean dependent events and to apply analysis parameters such as episode length and episode criterion for both independent and dependent variables, persistence after independent events, and delay and persistence after Boolean independent events. These improvements are in addition to levels of independent and dependent variables, delay after independent events, and provision to quantify benefit and harm across two or more dependent variables. Additional improvements include provisions to quantify longitudinal associations as functions of period or time and to compute values of predictive indices when there are two or more independent variables. Major applications and uses of the invention include data mining, the conduct of clinical trials of treatments for the management or control of chronic disorders, health-effect monitoring, the quantification and analysis internal control in adaptive systems, analyses of serial functional images, analyses of behavior and behavior modification, and use to create computerized devices and systems whose behavior can be modified by experience. The present invention is best implemented on the Internet.
Owner:BAGNE MILLER ENTERPRISES INC

Control method for avoiding collision during emergent lane changing of vehicle in high-speed state

The invention discloses a control method for avoiding collision during emergent lane changing of a vehicle in a high-speed state and belongs to the technical field of vehicle active safety. A detecting unit obtains a road adhesion coefficient as well as the speeds, distance and accelerated speeds of the vehicle and a vehicle on an adjacent lane through a GPS/INS, millimeter-wave radar, a high-definition camera, a speed sensor and an accelerated speed sensor. A processing unit judges whether an alarm is given or an emergent lane changing collision avoiding intervention measure is taken under the collision risk situation according to the data of the detecting unit. An alarm unit carries out voice prompting and carries out displaying through a vehicle-mounted terminal. An executing unit achieves lane changing collision avoiding intervention through a braking controller and a steering controller. According to the method, risk early warning and lane changing prompting are achieved, under the situation that accidents cannot be avoided through emergent braking, the lane changing direction is judged according to the speed, accelerated speed and distance of the vehicle on the adjacent lane, an emergent lane changing trajectory is planned reasonably, and thus the purpose of avoiding accidents by avoiding collision during emergent lane changing is realized.
Owner:江阴智产汇知识产权运营有限公司

Cognitive Collaboration with Neurosynaptic Imaging Networks, Augmented Medical Intelligence and Cybernetic Workflow Streams

The invention integrates emerging applications, tools and techniques for machine learning in medicine with videoconference networking technology in novel business methods that support rapid adaptive learning for medical minds and machines. These methods can leverage domain knowledge and clinical expertise with cognitive collaboration, augmented medical intelligence and cybernetic workflow streams for learning health care systems. The invention enables multimodal cognitive communications, collaboration, consultation and instruction between and among heterogeneous networked teams of persons, machines, devices, neural networks, robots and algorithms. It provides for both synchronous and asynchronous cognitive collaboration with multichannel, multiplexed imagery data streams during various stages of medical disease and injury management—detection, diagnosis, prognosis, treatment, measurement, monitoring and reporting, as well as workflow optimization with operational analytics for outcomes, performance, results, resource utilization, resource consumption and costs. The invention enables cognitive curation, annotation and tagging, as well as encapsulation, saving and sharing of collaborated imagery data streams as packetized medical intelligence. It can augment packetized medical intelligence through recursive cognitive enrichment, including multimodal annotation and [semantic] metadata tagging with resources consumed and outcomes delivered. Augmented medical intelligence can be saved and stored in multiple formats, as well as retrieved from standards-based repositories. The invention can incorporate and combine various machine learning techniques [e.g., deep, reinforcement and transfer learning, convolutional and recurrent neural networks, LSTM and NLP] to assist in curating, annotating and tagging diagnostic, procedural and evidentiary medical imaging. It also supports real-time, intraoperative imaging analytics for robotic-assisted surgery, as well as other imagery guided interventions. The invention facilitates collaborative precision medicine, and other clinical initiatives designed to reduce the cost of care, with precision diagnosis and precision targeted treatment. Cybernetic workflow streams—cognitive communications, collaboration, consultation and instruction with augmented medical intelligence—enable care delivery teams of medical minds and machines to ‘deliver the right care, for the right patient, at the right time, in the right place’—and deliver that care faster, smarter, safer, more precisely, cheaper and better.
Owner:SMURRO JAMES PAUL

System and Method for Mental Health Disease management

The present invention is a system and method of related healthcare processes protecting workplace productivity and mental health. It provides tools to patients and their physicians to assist them in identifying, managing and tracking mental health disorders. It also provides information to employers and health and disability insurers regarding the most effective interventions promoting productivity and mental and physical health. Through an interactive process with a website, the patient undergoes an initial screening for the presence of a mental health disorder, in an anonymous and confidential manner. After the first stage of screening, if the possibility of a mental disorder is identified, questions will be posed to the patient to determine the level of risk for possible diagnosis of a mental disorder by the M.D. A printable diagnostic risk map is provided in addition to appropriate care maps and follow up maps that guide physician and patient management of these disorders. Compliance with current best practices in disease management by both patient and physician is supported by scientific information at the lay level and physician level. Clinical and functional outcomes are quantified economically. Outcomes are tracked individually, but only aggregate information is provided to the employer and / or insurer. The overall result is improved mental health, physical health, productivity for large populations in a cost effective manner without requiring changes to the existing health care systems
Owner:OZERSKY SAM

Health monitoring system and method based on cloud resource low delay scheduling

The invention discloses a health monitoring system based on cloud resource low delay scheduling. The system comprises a physiological sensor node, a fog computing server, a cloud data center and a mobile intelligent terminal. The invention further discloses a health monitoring method based on the cloud resource low delay scheduling. The physiological sensor node transmits physiological monitoringdata to the fog computing server with nearest network distance; the fog computing server is responsible for receiving, processing and merging data, and uploading the data to the cloud data center; themobile intelligent terminal is connected with the fog computing server with nearest network distance, receives intelligent alarm information, a health assessment result and an intervention measure; the fog computing server and a resource scheduling algorithm restrained based on a time threshold in the cloud data center process a request to ensure the low delay. The health monitoring system and method based on the cloud resource low delay scheduling have the advantages that the system is intelligent and front-end, the delay is low, the location awareness is strong, the limitations of physiological sensors in terms of energy and storage are overcome, the user experience is improved, and the method is conducive to finding problems and providing ambulance at the first time.
Owner:XIAMEN UNIV OF TECH

Eye fatigue detection method for smart phones

According to the invention, the human eyes are accurately positioned by a scale-invariant gradient integral projection algorithm and a Kalman filtering method, the degree of fatigue of the human eyes is detected by a calculation method based on the PERLOG feature, and different intervention measures are taken according to the degree of fatigue. The process mainly comprises the following steps: first, an image frame sequence of a user when the user uses a smart phone is collected through the front-facing camera of the smart phone, all the frames are sequentially processed by the smart phone, and the smallest rectangle containing the human eyes is positioned; second, the smallest rectangle containing the human eyes is positioned within a certain range of accuracy, the rectangle obtained each time is scaled according to the same fixed ratio, the area of the rectangle is worked out, the opening and closing condition of the eyes is judged according to an eye opening and closing threshold obtained through training, and the PERLOG feature value for judging the degree of fatigue of the human eyes is updated; and third, corresponding intervention measures are taken according to the degree of fatigue.
Owner:RES INST OF SUN YAT SEN UNIV & SHENZHEN

Method for accurately positioning and correcting abnormal brain region based on functional magnetic resonance imaging

The invention belongs to the field of medical image processing and application, and relates to a method for accurately positioning and correcting an abnormal brain region based on a functional magnetic resonance imaging, in particular to a method for calculating inter-brain activity correlation based on a functional magnetic resonance imaging signal. The method for accurately positioning and correcting the abnormal brain region based on the functional magnetic resonance imaging comprises the following step of accurately detecting and calculating the activity correlation between any brain regions of the whole brain of a subject, namely the whole brain functional connection (FC) by using a resting state functional magnetic resonance technology (rs-fMRI). The method can provide medical basisfor the detection of individual brain function connection and the study of group on the integration of mass data for various brain diseases including depression, and provide objective basis for the evaluation of individual physiological and psychological health level. The method can be further used for determining the target area of the rTMS intervention and facilitating accurate intervention aiming at the target area of an individual by using the rTMS, and formulating intervention measures of mental diseases such as depression and the like by using the rTMS clinically.
Owner:FUDAN UNIV

Predicting safety incidents using machine learning

A safety system associated with a travel coordination system collects safety data describing safety incidents by providers and generates a plurality of safety incident prediction models using the safety data. The safety incident prediction models predict likelihoods that providers in the computerized travel coordination system will be involved in safety incidents. Two types of safety incidents predicted by the safety system include dangerous driving incidents and interpersonal conflict incidents. The safety system uses the plurality of safety incident prediction models to generate a set of predictions indicating probabilities that a given provider in the travel coordination system will be involved in a safety incident in the future. The safety system selects a safety intervention for the given provider responsive to the set of predictions and performs the selected safety intervention on the given provider.
Owner:UBER TECH INC

Wearable arteriosclerosis detector and pulse wave velocity detecting method

InactiveCN104958064AHigh testing costTo achieve the purpose of early detection and early interventionDiagnostic signal processingCatheterIntervention measuresVia brachial artery
The invention discloses a wearable arteriosclerosis detector and a pulse wave velocity detecting method. The wearable arteriosclerosis detector comprises a brachial artery paster type pressure sensor, an ankle artery paster type pressure sensor, a signal collecting and processing system and intelligent equipment. The detector collects arterial pulse signals of two parts through the brachial artery paster type pressure sensor and the ankle artery paster type pressure sensor. The collected arterial pulse signals are synchronously processed through the signal collecting and processing system and converted into audio signals. The converted audio signals are sent to the intelligent equipment. The audio signals sent to the intelligent equipment are processed and analyzed through an arteriosclerosis detecting module. As measurement and analysis of the pulse wave velocity are easy, fast and noninvasive, the detector is generally applied to the clinic, is suitable for being applied to common population study, predicts the occurrence risk of cardiovascular disease, and is beneficial for taking intervention measures at the early stage.
Owner:四川宇峰科技发展有限公司
Who we serve
  • R&D Engineer
  • R&D Manager
  • IP Professional
Why Eureka
  • Industry Leading Data Capabilities
  • Powerful AI technology
  • Patent DNA Extraction
Social media
Try Eureka
PatSnap group products