A61B3/18

Ophthalmic examination and disease management with multiple illumination modalities
11766172 · 2023-09-26 · ·

Imaging various regions of the eye is important for both clinical diagnostic and treatment purposes as well as for scientific research. Diagnosis of a number of clinical conditions relies on imaging of the various tissues of the eye. The subject technology describes a method and apparatus for imaging of the back and/or front of the eye using multiple illumination modalities, which permits the collection of one or more of reflectance, spectroscopic, fluorescence, and laser speckle contrast images.

Ophthalmic examination and disease management with multiple illumination modalities
11766172 · 2023-09-26 · ·

Imaging various regions of the eye is important for both clinical diagnostic and treatment purposes as well as for scientific research. Diagnosis of a number of clinical conditions relies on imaging of the various tissues of the eye. The subject technology describes a method and apparatus for imaging of the back and/or front of the eye using multiple illumination modalities, which permits the collection of one or more of reflectance, spectroscopic, fluorescence, and laser speckle contrast images.

Remote comprehensive eye examination system

An ophthalmic technician is present with a patient in an exam room to operate eye examination equipment and transmit patient information to remote location. At that remote location, a skilled technician is present to provide the necessary optical care, and may operate the phoropter from the remote location. Using video and/or teleconferencing equipment and a phoropter located in the patient examination room along with management software, the system works to determine the final optical prescription for the patient. That information, coupled with findings from other devices which are integrated with the management software, and that the patient uses locally, are reviewed by a remote-based optometrist or ophthalmologist.

Remote comprehensive eye examination system

An ophthalmic technician is present with a patient in an exam room to operate eye examination equipment and transmit patient information to remote location. At that remote location, a skilled technician is present to provide the necessary optical care, and may operate the phoropter from the remote location. Using video and/or teleconferencing equipment and a phoropter located in the patient examination room along with management software, the system works to determine the final optical prescription for the patient. That information, coupled with findings from other devices which are integrated with the management software, and that the patient uses locally, are reviewed by a remote-based optometrist or ophthalmologist.

Method for automating collection, association, and coordination of multiple medical data sources

A method of automating the collection, association, and coordination of multiple medical data sources using a coordinating service application, computer, database, and/or server system to manage devices, examinations, and people involved in the medical examination and treatment process. In an embodiment, the method comprises authenticating a user for a premises, a device, or a device group, validating particular use of the device based on user credentials or type of device or device group, associating a medical examination with a patient or a medical examination schedule, associating medical examination data from a device or device group with a related medical examination session, routing medical examination data to a computer, database, or server, and pairing medical examination session data with a medical interpretation, clinical testing results, diagnoses, and/or other recorded information.

PORTABLE DEVICE FOR VISUAL FUNCTION TESTING

The present invention relates to a device and method for vision screening, impairment and concussion detection. The device for visual function testing comprises optic components, projection optics and an image capture component.

OPHTHALMIC EXAMINATION SUPPORT SYSTEM
20210366612 · 2021-11-25 · ·

A method used for supporting ophthalmic examinations includes the step of preparing association information between medical information items and ophthalmic examination conditions. Patient information of a patient is transmitted from a client to a server configured to store and manage medical information. The server retrieves medical information of the patient based on the transmitted patient information, acquires a condition corresponding to the retrieved medical information from the association information, and transmits the acquired condition to the client. The client acquires examination data from the patient's eye based on the transmitted condition, and transmits the examination data together with the patient's patient information to the server. The server stores the transmitted examination data and/or an analysis result thereof. The server updates the association information by executing statistical processing on a medical information collection including examination data and/or analysis results of a plurality of patients.

Intelligent patient interface for ophthalmic instruments
RE048822 · 2021-11-23 · ·

An ophthalmic examination system comprising a headrest with a detection element, and an ophthalmic instrument (OI) having a microprocessor and a sensor in communication with the microprocessor. The sensor is configured to detect the presence of the detection element, and the headrest is configured for coupling to the OI.

Intelligent patient interface for ophthalmic instruments
RE048822 · 2021-11-23 · ·

An ophthalmic examination system comprising a headrest with a detection element, and an ophthalmic instrument (OI) having a microprocessor and a sensor in communication with the microprocessor. The sensor is configured to detect the presence of the detection element, and the headrest is configured for coupling to the OI.

APPARATUS AND METHOD FOR DETERMINING AN EYE PROPERTY
20220007939 · 2022-01-13 ·

An apparatus, and corresponding method, for determining a property of an eye includes a housing with a proximal port that receives an eye and also light from the eye. The housing further includes a distal port, and the two ports together form a visual channel providing an open view to enable the eye to see target indicia external to and spaced away from the housing. A wavefront sensor within the housing is configured to receive the light from the eye via the optical path and to measure a wavefront of the light. A determination module determines an objective refractive correction based on the wavefront and predicts a subjective refractive preference of a person having the eye based on the objective refractive correction. Embodiments can be handheld, and binocular, and predict subjective refraction based on demographic and other information.