Abstract:
케라틴 섬유의 트리트먼트(예, 염색)를 수행하는 신규 시스템 및 방법이 기술된다. 본 방법 및 시스템은 임의로 정제로부터 형성되는 케라틴 섬유의 트리트먼트용 맞춤 조성물(예, 염색 조성물)을 제공하도록 구성된 한 개 이상의 토출 장치; 트리트먼트(예, 염색 트리트먼트)의 결과를 실현가능하게 추정하기에 충분한 케라틴 섬유의 특징을 수득하는 광학 판독기; 임의로 토출 장치와 접속되어 트리트먼트의 결과를 추정하고 맞춤 트리트먼트를 선택하는 컴퓨팅 유닛; 케라틴 섬유의 트리트먼트용 맞춤 조성물을 준비하는데 유용한 정제 제제를 이용한다. 또한, 케라틴 섬유의 트리트먼트용 조성물의 준비에 사용하는 속붕해성 정제가 기술된다.
Abstract:
시료들의 마이크로어레이에서 나노-사이즈 금 및/또는 은 포함 검출 표지들과 연관된 표적 분석물을 검출하는 방법으로서, 표지들은 시료에서 표적 분석물의 존재 또는 부존재를 표시하고, 그 방법은, (i) 적어도 2 개의 상이한 단색광들로 적어도 2 개의 시료 그룹들을 순차적으로 조사하는 단계로서, 그 시료 그룹들은, 표적 분석물을 잠재적으로 포함하는 적어도 하나의 시료를 포함하는 제 1 시료 그룹, 및 (b) 양성 대조군 또는 음성 대조군으로서 기능하는 제 2 시료 그룹을 포함하는, 상기 조사하는 단계, (ii) 단색광들의 각각으로 조사되는 경우에, 그 시료 그룹들의 각각으로부터 반사, 흡수, 또는 방출된 광의 세기를 검출하는 단계, (iii) 시료 그룹들의 각각에 대한 단색광들의 각각과 연관된 값들의 각각의 그룹으로 시료 그룹들로부터 반사, 흡수, 또 는 방출된 광 세기와 연관된 값들의 그룹들을 기록하는 단계, (iv) 그 시료 그룹들 및 그 단색광들의 각각과 연관된 값들의 그룹들을 비교하는 단계, 및 (v) 단계 (iv) 에서의 비교에 기초하여, 표적 분석물의 존재 또는 부존재를 결정하는 단계를 포함하며, 그 단색광들은 적어도 청색 단색광 또는 10 ㎚ 내지 100 ㎚ 의 범위의 주파수를 갖는 단색광을 포함한다. 또한, 그러한 방법을 수행하는 장치가 개시된다.
Abstract:
The invention relates to a device (1) for emitting electromagnetic radiation, in particular UV radiation, comprising at least one radiating means (2) which only emits radiation at visible wavelengths. According to the invention, the device comprises a unit for detecting a functional error of the radiating means. In practice, the radiating means (2) is provided for emitting only UV radiation and/or IR radiation and is formed by a light diode. In an embodiment of the invention, the detection unit (3) is designed to continuously monitor the radiating means (2) for functional errors, and the device (1) comprises an open-loop and/or closed-loop control unit (4) which is provided to automatically switch off the radiating means (2) and/or display the functional error, upon detection of the functional error by the detection unit (3).
Abstract:
Described is a system for inducing and detecting multi-photon processes, in particular multi-photon fluorescence or higher harmonic generation in a sample. The system comprises a dynamically-controllable light source, said dynamically-controllable light source comprising a first sub-light source, said first sub-light source being electrically controllable such as to generate controllable time-dependent intensity patterns of light having a first wavelength, and at least one optical amplifier, thereby allowing for active time-control of creation of multi-photon-excitation. The system further comprises a beam delivery unit for delivering light generated by said dynamically-controllable light source to a sample site, and a detector unit or detector assembly for detecting signals indicative of said multi-photon process, in particular multi-photon fluorescence signals or higher harmonics signals.
Abstract:
A system for inspecting a glass container and methods of inspecting glass containers are provided. The system includes a panel including a plurality of light sources (110, 112, 114, 122, 124, 126) configured to illuminate the glass container. The system includes a camera configured to image the illuminated glass container from each of the light sources (116, 118, 120, 128, 130, 132). The system includes a controller configured to adjust the amount of power applied to each of the light sources individually. The system includes a processor configured to evaluate the image of the illuminated glass container for indications of defects in the container. Methods of calibrating the system are also provided.
Abstract:
Die vorliegende Erfindung betrifft ein Verfahren und ein automatisches Analysegerät zum genaueren Bestimmen der Konzentration von Lipiden und anderen Störsubstanzen in Körperflüssigkeiten, insbesondere von Störsubstanzen wie Bilirubin und Hämoglobin in Blutserum- und Blutplasmaproben.
Abstract:
A gas detector (10) that is arranged to sense the concentration levels of target gases oxygen, methane, carbon monoxide, and hydrogen sulphide, within a gas sample from an environment surrounding the detector. The gas detector (10) comprises laser sources (12a-12d) that are arranged to transmit radiation through the gas sample at four target wavelengths that correspond approximately to the optimum absorption wavelengths of each of the target gases and an optical detector (16) that is arranged to sense the intensity of the radiation transmitted through the gas sample at each of the target wavelengths. A control system (22) generates representative concentration level information for the target gases based on the level of absorption of the radiation transmitted.
Abstract:
The invention relates to a spectrophotometry analysis device (1) comprising a test bench (4) power supply circuit (4). The analysis device comprises two different spectrophotometers (14, 18) disposed opposite the same test bench in order, in particular, to cover separate wavelength spectra included in the visible wavelength range. A first spectrophotometer (14) is used to cover the close and medium infrared spectrum, while a second spectrophotometer (18) is used to cover the ultraviolet and visible spectrum. Said analysis device is particularly suitable for dosing different components contained in fluids to be analysed (2), such as wine, fruit juice or blood-stained fluid.