Abstract:
An imaging apparatus is disclosed that displays an image acquired from an examination object. The apparatus includes an acquisition unit that determines image acquisition parameters and acquires the signal values of the examination object; a conversion unit that uses a transfer function to convert the acquired signal values into brightness values that are displayed in the image; a unit for extracting the image acquisition parameters; and a storage unit that has data records in which at least one transfer function is stored in relation to the image acquisition parameters. The conversion unit compares the image acquisition parameters with the image acquisition parameters stored in the storage unit and selects the transfer function as a function of the comparison.
Abstract:
In a method for optimizing and automating patient clinical workflow where medical personnel oversee a patient from intake to an end of the clinical workflow, at least one patient monitoring unit is provided which monitors clinical activities related to the patient during at least a portion of the clinical workflow. A centralized communication platform is provided which is controlled by, and which provides information output to, at least one of the medical personnel. The communication platform receives different types of information including at least patient monitoring unit information, rules information, structured information, and IT information. With the communication platform, the different information types are processed and management outputs are provided to the at least one medical personnel for decision making and overall management of the clinical workflow.
Abstract:
In a method and apparatus for representation and preparation of at least one examination image of an examination subject that is created with an imaging medical examination apparatus, the examination image is transmitted from the examination apparatus to a computer, and a whole-body coordinate system is specified with regard to the examination subject using at least one item of subject-specific information; and the examination image is spatially arranged in the whole-body coordinate system by the computer by means of the subject-specific information. At least one item of image information of the examination image is compared in the computer with the at least one item of subject-specific information of the whole-body coordinate system to check for consistency. The examination image is updated by the computer dependent on the comparison result and of the updated examination image is represented at an image reproduction device.
Abstract:
In a method for creation of an overview of medical data sets, a plurality of medical data sets exist regarding a patient and the data sets are associated with categories, and an overview image of at least one part of the patient is generated by means of an imaging modality. A localization within the patient is associated with each of the data sets, and the overview image is shown on a display medium. Markings are generated and shown at points of the overview image that correspond to the localizations of the data sets. The categories that exist with regard to at least one of the points are likewise displayed.
Abstract:
In a method and system for providing clinical knowledge from a provider to a medical user based on one or more diagnostic questions submitted by the user to the provider, a clinical knowledge communication server is provided with an associated knowledge database. The at least one or more diagnostic questions are sent by the user to the server. With the server, an initial examination of the at least one or more diagnostic questions is conducted. Examination steps are associated with the at least one or more diagnostic questions and placed in a sequence. The sequence of examination steps are then sent to the medical user. The provider may also request clinical knowledge from the medical user such as, for example, relating to the diagnostic questions submitted by the user.
Abstract:
The invention provides a computer implemented method for calculating a chronic disease risk index for a patient undergoing a first examination, the method comprising providing a first result of the first examination wherein the first examination is selected from a group of medical imaging method; providing a second result of a second examination wherein the second examination being related to the examination of the patient's eye; Processing in combination the first result and the second such as to calculated a combined result wherein the combined result relates the first and the second result; Classifying the combined result; Calculating the risk index for the patient. The risk index is based on the combined result or on the classified combined result.
Abstract:
The present invention relates to a system to control and optimize clinical pathways of a plurality of patients within a medical facility as well as across several medical facilities. The method of controlling and optimizing pathways uses real-time localization devices for patients, resources, such as clinical images and employees of the medical facility (e.g. a service technician, a senior consultant or the like). Based on the local position of patients, staff members and/or resources, the system proposes a medical system that generates clinical pathways for patients, is adapted to change clinical pathways and to provide schedules for patients as well as the use of resources.The invention provides further means of real-time information of patients about changes in their schedule. The method provided enables a medical facility to streamline their processes and to increase patient throughput.
Abstract:
A medical professional registers himself with the trust centre (TC) or trusted registry (TR) acting on behalf of and/or operated by the mobile communication service provider. According to an embodiment of the present invention, the trust centre or trusted registry generates a pair of keys (“private key, public key”) and associates the private key with the mobile-phone identity (IMEI, SIM-chip-number or phone number) in a secret table stored at the TC or TR. The TC or TR also associates the public key with the medical author's name (plus office address) as an entry into a directory.
Abstract:
A method and a system for obtaining measurement data collected from an object by means of a medical measurement device from a plurality of medical measurement devices. The medical measurement device is personalized by transmitting personalization information to the medical measurement device, the personalization information being related to the object from which the measurement data is to be collected.A clean copy of the abstract that incorporates the above amendments is provided herewith on a separate page.
Abstract:
A search system for searching a secured medical server is provided. The system includes a web-portal and a medical server. The web-portal communicates with a processor and a memory. The processor is operable to communicate with the memory, which is operable to store a medical server password and a medical server location. The medical server includes the medical documents and an access portal. The access portal protects the medical documents in the medical server. The access portal is operable to provide access to the medical documents when provided with the medical server password. The processor is operable to generate and transmit a request signal including a request for information and the medical server password to the healthdata server.