CNIPA.AI
검색으로 돌아가기
기록

METHODS AND SYSTEMS FOR APPLYING BRAIN ACTIVITY FEEDBACK IN VISION TESTS IN VIRTUAL ENVIRONMENTS

발명심사 중
20청구항 · 3 독립항
§ Ⅰ

개요

발명자

Steven LEE; Julia ZHEN; ChyrSong TING; Sophia MOH; Matthew James GOLINO; Justin Paul DEMPSEY; Jeffrey Joseph FILLINGHAM

IPC 분류

A61B 3/32A61B 3/G6F 1/16G6T 19/20

CPC 분류

A61B3/32A61B3/5G6F1/163G6T19/20G6T2200/24G6T2219/2012

Brain activity can be monitored to facilitate a vision test in a virtual reality (VR) environment using an electronic device that includes a head-mounted display (HMD) and a plurality of electrodes. The electronic device can execute a user application configured to enable a virtual vision test, and generates a VR user interface corresponding to a three-dimensional (3D) virtual environment. The electronic device renders, on the HMD, a user interface including a first visual stimulus corresponding to the virtual vision test. While displaying the visual stimulus, in real time, the electronic device collects a plurality of electrical signals by the plurality of electrodes that contact a head of a user, and determines information of at least one of a second visual stimulus following the first visual stimulus and a user response to the first visual stimulus based on the plurality of electrical signals.

원문 (중국어)

Brain activity can be monitored to facilitate a vision test in a virtual reality (VR) environment using an electronic device that includes a head-mounted display (HMD) and a plurality of electrodes. The electronic device can execute a user application configured to enable a virtual vision test, and generates a VR user interface corresponding to a three-dimensional (3D) virtual environment. The electronic device renders, on the HMD, a user interface including a first visual stimulus corresponding to the virtual vision test. While displaying the visual stimulus, in real time, the electronic device collects a plurality of electrical signals by the plurality of electrodes that contact a head of a user, and determines information of at least one of a second visual stimulus following the first visual stimulus and a user response to the first visual stimulus based on the plurality of electrical signals.