色婷婷一区久久久久久,成人AO视频,精品九九六,久久99国产乱,97精品国产一区,久在线观看,亚洲大尺度久久久,人妻日韩AV综合网,国产夫妇一区

Home / Product / OxyLite? Pro
Cancer / Tissue Oxygen Partial Pressure

OxyLite? Pro

Oxford Optronix
OxyLite? Pro
● Oxygen (pO2) & temperature monitor
● In vivo & in vitro applications
● Fully ‘plug and play’; no calibration procedures
● 2 or 4-channel monitors
● Enhanced productivity & features

Description

Overview

The survival of tissues and organs relies on an adequate supply of oxygen. The measurement of tissue oxygen tension (ptiO2) provides a direct measurement of the balance between oxygen supply (by the blood) and metabolic oxygen consumption (by the tissue), i.e. a readout of oxygen availability at the cellular level. This is in contrasts to spectroscopy (NIRS) techniques, which merely describe haemoglobin oxygenation status. 

Our OxyLite? oxygen monitors will be of interest therefore to life scientists wishing to directly and continuously measure dissolved oxygen in the normal physiological as well as hypoxic ranges, both in experimental in vivo models, or in any number of in vitro applications.

Since 1998, when Oxford Optronix pioneered the commercialization of fibre-optic oxygen micro-sensor technology, the OxyLite? brand has become established the world over in biomedical, boasting in excess of 500 peer-reviewed journal citations and hundreds of units sold worldwide.

2013 saw the culmination of a decade and half of continuous R&D with the launch of our third-generation of tissue oxygen monitors. Blending contemporary design, true plug and play convenience and the very latest in opto-electronic technology, our OxyLite? Pro systems provide what is simply the most advanced, accurate and reliable tissue oxygen monitoring platform on the market.

Our oxygen sensors leverage state-of-the-art optical fluorescence technology intended for the quantitative measurement of oxygen partial pressure (pO2) and temperature in tissues, physiological fluids, cell cultures and other in vitro applications.  This technology offers key advantages over devices based on polarographic technology, making our oxygen monitors much easier to use and ideally suited to oxygen measurements in the typical physiological range, as well as incredibly sensitive under conditions of hypoxia.

Applications for OxyLite and OxyLite Pro include:

Tumour angiogenesis and oxygenation

Vital organ oxygenation during transplantation and shock monitoring

Cerebral oxygen during stroke

Brain and spinal cord injury

Tissue flap and wound oxygenation

pO2 monitoring in the eye

Dissolved oxygen measurement in hypoxic cell culture, bioreactors etc.

Statement of intended use:

OxyLite? and OxyLite? Pro are intended for laboratory, industrial and research use only.

OxyLite? and OxyLite? Pro are NOT intended for use in human subjects/patients.

Features

  • The easiest-to-use dissolved oxygen monitors in the world!

  • Absolute units of dissolved oxygen

  • Sensitivity and accuracy

  • No oxygen consumption

  • Microchip sensors

  • Touch-screen display and interface

  • Built-in temperature compensation

  • Versatility

  • Minimally invasive for in vivo applications

  • MRI compatibility

  • Multi-channel productivity

  • Upgradeable

  • Single-sensor multi-parameter monitoring

  • USB digital output

  • Analogue outputs

Journal Citations

武城县| 盐亭县| 民勤县| 泰来县| 扶沟县| 万山特区| 光山县| 塘沽区| 丁青县| 丹东市| 盈江县| 中牟县| 前郭尔| 新乡县| 衡阳市| 浦北县| 裕民县| 同德县| 汉沽区| 搜索| 洮南市| 上虞市| 金寨县| 天门市| 沂南县| 滦平县| 沙田区| 连平县| 富阳市| 宣化县| 本溪| 资源县| 临沭县| 临海市| 沾益县| 舒城县| 吉木萨尔县| 邹城市| 额尔古纳市| 南城县| 琼海市|