Abstract:
Example systems, methods, and apparatus, including cognitive platforms, are provided for computing performance metrics of an individual based at least in part on user interaction(s) with computerized tasks and/or interference and at least one physiological measure of the individual, where the performance metric provides an indication of the cognitive abilities of the individual. The apparatus can be coupled to at least one physiological component to perform the physiological measurement of the individual. The apparatus also can be configured to adapt the tasks and/or interferences to enhance the individual's cognitive abilities.
Abstract:
Adaptive modification and presentment of user interface elements in a computerized therapeutic treatment regimen. Embodiments of the present disclosure provide for non-linear computational analysis of cData and nData derived from user interactions with a mobile electronic device executing an instance of a computerized therapeutic treatment regimen. The cData and nData may be computed according to one or more artificial neural network or deep learning technique to derive patterns between computerized stimuli or interactions and sensor data. Patterns derived from analysis of the cData and nData may be used to define an effort metric associated with user input patterns in response to the computerized stimuli or interactions being indicative of a measure of user engagement or effort. A computational model or rules engine may be applied to adapt, modify, configure or present one or more graphical user interface elements in a subsequent instance of the computerized therapeutic treatment regimen.
Abstract:
Apparatus, systems, and methods are provided for generating a quantified indicator of cognitive skills in an individual. In certain configurations, the apparatus, systems, and methods can be implemented for enhancing cognitive skills in an individual.
Abstract:
Apparatus, systems and methods are provided for quantifying aspects of cognition (including cognitive abilities) under emotional load. In certain configurations, the apparatus, systems and methods can be implemented for enhancing certain cognitive abilities.
Abstract:
Apparatus, systems and methods for generating an assessment of one or more cognitive abilities in an individual by analyzing measurement data collected from measurements of the physical actions of the individual in interacting with computerized tasks involving spatial navigation including one or more of way-finding, path-plotting, route-learning, or path integration. The analysis is used to provide a performance metric indicative of the cognitive ability of the individual, and optionally to generate an indication of a neurodegenerative condition of the individual.
Abstract:
Example systems, methods, and apparatus are provided for using data collected from the responses of an individual with the computerized tasks of a cognitive platform to derive performance metrics as an indicator of cognitive abilities, and applying predictive models to the performance metrics and data indicative of one or both of the individual's age and gender to generate an indication of neurodegenerative condition. The example systems, methods, and apparatus also can be configured to adapt the computerized tasks to enhance the individual's cognitive abilities, and for using data collected from the responses of the individual with the adapted computerized tasks to derive performance metrics and applying predictive models to the performance metrics and data indicative of one or both of the individual's age and gender to generate the indication of neurodegenerative condition.
Abstract:
Systems and methods for distributed scientific evaluation of software product comprising a digital health intervention or software as a medical device product. In certain embodiments, a scientific evaluation system is operably configured to analyze one or more safety, efficacy, performance, and/or quality assurance aspects for program code outputs of the software product. In further embodiments, a scientific evaluation system is operably configured to configure and administer a distributed scientific evaluation, research study and/or clinical trial for the software product. In certain embodiments, a scientific evaluation system is configured to enable scientific evaluation of one or more program code outputs of a software product for one or more indication or intended use.
Abstract:
A cognitive platform is disclosed that is configured for either or both of assessing or enhancing the cognitive abilities of an individual based on implementing one or more navigation task(s) in an environment. A first task is rendered that requires the individual to rely on allocentric navigation capabilities to navigate in the environment based on a first set of views of portions of the environment rendered at the user interface. A second task is rendered that requires the individual to rely on egocentric navigation capabilities to navigate in the environment. An indication of a cognitive ability in the individual can be generated based on the difference in the individual's performance at the first task as compared to the second task.
Abstract:
Example systems, methods, and apparatus are provided for using data collected from the responses of an individual with the computerized tasks of a cognitive platform to derive performance metrics as an indicator of cognitive abilities, and applying predictive models to generate an indication of neurodegenerative condition. The example systems, methods, and apparatus also can be configured to adapt the computerized tasks to enhance the individual's cognitive abilities, and for using data collected from the responses of an individual with the adapted computerized tasks to derive performance metrics and applying predictive models to generate the indication of neurodegenerative condition.
Abstract:
An apparatus for generating a quantifier of cognitive skills in an individual includes a user interface, a memory to store processor-executable instructions, and a processing unit communicatively coupled to the user interface and the memory. Upon execution of the processor-executable instructions by the processing unit, the processing unit is configured to: render a first instance of a task with an interference at the user interface, requiring a first response from the individual to the first instance of the task in the presence of the interference and a response from the individual to at least one evocative element. One or more of the first instance of the task and the interference comprises the at least one evocative element. The user interface is configured to measure data indicative of the response of the individual to the at least one evocative element, the data comprising at least one measure of emotional processing capabilities of the individual under emotional load. The apparatus is configured to measure substantially simultaneously the first response from the individual to the first instance of the task and the response from the individual to the at least one evocative element. The processing unit is further configured to receive data indicative of the first response and the response of the individual to the at least one evocative element. The processing unit is further configured to analyze the data indicative of the first response and the response of the individual to the at least one evocative element to compute at least one performance metric comprising at least one quantified indicator of cognitive abilities of the individual under emotional load.