Abstract:
A user interface for an instrument that processes samples from sample containers supported on a presentation unit. The user interface includes a presentation unit display that includes a graphical representation of the presentation unit. The presentation unit display receives inputs therein to define instructions for the processing of the samples by the instrument. The presentation unit display also displays a status while the samples are being processed.
Abstract:
본 발명에서 제안하고 있는 소변 내의 나트륨과 칼륨을 원스톱으로 스마트하게 측정이 가능한 휴대형 디지털 측정 장치 및 방법에 따르면, 환자의 소변 내에 포함된 나트륨(Na)과 칼륨(K) 함유량을 각각의 독립된 전극 센서를 통해 이온 농도에 따른 전기적 신호를 직접 측정하고 측정부를 통해 분석 처리하도록 구성함으로써, 해석의 어려움 없이 환자가 자신의 소변에 포함된 나트륨과 칼륨의 수치, 나트륨/칼륨의 비의 수치, 및 정상 유무를 디스플레이를 통해 쉽게 확인할 수 있도록 할 수 있다.
Abstract:
An apparatus for treatment of diagnostic information relating to samples of microbiological material, in which the apparatus comprises at least: a first processor; a first viewing device operatively connected to the first processor; a first software program operating on the first processor and configured for defining at least a first user interface on the first viewing device and for retrieving and visualising, in the first user interface, at least a first datum, or a first plurality of data, relative to a same first examination site; and for retrieving at least a first image of a first support, of a first type, for microbiological culture, relative to a first microbiological sample coming from the first examination site and for enabling selective viewing of at least the first image in the first user interface; and for retrieving at least a second image of a second support of a second and different type, for microbiological samples, relative to a second microbiological sample coming from the first examination site and for enabling selective viewing at least of the second image, in order to enable the user, by means of the first user interface, to make a combined use and evaluation, of the data relating to the first examination site and of the images.
Abstract:
An automation system for an in vitro diagnostics environment includes a plurality of intelligent carriers that include onboard processing and navigation capabilities. To aid in operator handling of payloads and carriers, carriers include an electronically rewritable display on a surface visible to an operator. The display can include an LCD, E- ink, or other rewritable display and can utilize color, pattern, or text to convey status information of the payloads to the operator.