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Портативный многоканальный транскутанный оксиметр
专利权人:
发明人:
Бондарик Александр Николаевич (RU),Давыдов Дмитрий Владимирович (RU),Егоров Алексей Игоревич (RU),Терещенко Виктор Владимирович (RU),Кадников Андрей Федорович (RU),Козырев Андрей Сергеевич (RU)
申请号:
RU2016127404
公开号:
RU0000168139U1
申请日:
2016.07.07
申请国别(地区):
RU
年份:
2017
代理人:
摘要:
The present invention relates to medical engineering, in particular, to a device for measuring biomedical diagnostic purposes, allowing to perform percutaneous (transcutaneous) non-invasive measurement of oxygen tension (tcpO2) Simultaneously in several points of the human body in real time. The technical result is to increase the information content of transcutaneous monitoring and increase the degree of reliability of the results that are needed in clinical practice to make informed medical, including collective decisions on the outcome of the forecast precision patient treatment. This technical result is achieved due to the fact that in the known portable multi transcutaneous oximetry containing six transcutaneous oxygen electrodes, each of which is in the form of electrode Clark cell, multi-module measurements of oxygen tension in human tissues, a multi-channel microprocessor unit and the touch display color, introduced pulse oximeter module and two additional transcutaneous oxygen electrode in a Clark electrode cell. This multi-channel measurement module oxygen tension is made with two extra inputs, and multi-channel microprocessor unit is designed as a programmable general purpose microprocessor with the ARM architecture with two additional inputs and two additional outputs, the first auxiliary input is connected to the pulse oximeter module, and the second auxiliary input It adapted to a keyboard, with additional outputs of programmable general purpose microprocessor provided with connection possibilities respectively to Ethernet network and a WiFi network. 2 ill.Настоящая полезная модель относится к медицинской технике, а именно, к устройствам для биомедицинских измерений в диагностических целях, позволяющим проводить чрескожное (транскутанное) неинвазивное измерение напряжения кислорода (tcpO2) одновременно в нескольких точках тела человека в режиме реального времени. Техническим результатом является повышение информативности транскутанного мониторирования
来源网站:
中国工程科技知识中心
来源网址:
http://www.ckcest.cn/home/

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