RU98100085A - Источник света с регулируемой длиной волны для оксигемометра - Google Patents
Источник света с регулируемой длиной волны для оксигемометраInfo
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- RU98100085A RU98100085A RU98100085/28A RU98100085A RU98100085A RU 98100085 A RU98100085 A RU 98100085A RU 98100085/28 A RU98100085/28 A RU 98100085/28A RU 98100085 A RU98100085 A RU 98100085A RU 98100085 A RU98100085 A RU 98100085A
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- 230000001105 regulatory Effects 0.000 title 1
- 230000005540 biological transmission Effects 0.000 claims 10
- 230000005284 excitation Effects 0.000 claims 9
- 210000004369 Blood Anatomy 0.000 claims 4
- 239000008280 blood Substances 0.000 claims 4
- 238000001514 detection method Methods 0.000 claims 4
- 230000002238 attenuated Effects 0.000 claims 2
- 238000005259 measurement Methods 0.000 claims 2
- MYMOFIZGZYHOMD-UHFFFAOYSA-N oxygen Chemical compound O=O MYMOFIZGZYHOMD-UHFFFAOYSA-N 0.000 claims 2
- 229910052760 oxygen Inorganic materials 0.000 claims 2
- 239000001301 oxygen Substances 0.000 claims 2
- 108010003320 Carboxyhemoglobin Proteins 0.000 claims 1
- 230000000875 corresponding Effects 0.000 claims 1
- 239000006185 dispersion Substances 0.000 claims 1
- 230000003287 optical Effects 0.000 claims 1
Claims (31)
1. Настроенная сеть передачи света для передачи световой энергии на заранее выбранной длине волны, содержащая: источник тока, сконфигурированный для обеспечения заранее выбранного тока источника; светодиод, подключенный к упомянутому источнику света, при этом упомянутый светодиод такого типа, который проявляет сдвиг в длине волны при сдвиге в выбранном параметре настройки; и элемент настройки, подключенный параллельно упомянутому светодиоду, при этом величина упомянутого элемента настройки имеет величину импеданса, упомянутый элемент настройки выбран для проведения по меньшей мере первой части упомянутого заранее выбранного тока источника так, что вторая часть упомянутого заранее выбранного тока источника проходит через упомянутый светодиод, упомянутая вторая часть упомянутого заранее выбранного тока источника выбирается так, чтобы заставить упомянутый светодиод вырабатывать световую энергию заранее выбранной длины волны.
2. Настроенная сеть передачи света по п. 1, в которой упомянутый элемент настройки содержит резистор.
3. Настроенная сеть передачи света по п. 1, в которой упомянутый параметр настройки является током возбуждения внутри диапазона тока возбуждения.
4. Настроенная сеть передачи света по п. 1, в которой упомянутый параметр настройки является рабочим напряжением в диапазоне напряжения возбуждения.
5. Настроенная сеть передачи света по п. 1, далее содержащая детектор, реагирующий на световую энергию от упомянутого светодиода для выработки выходного сигнала, показывающего интенсивность световой энергии.
6. Способ предварительной калибровки вырабатывающего свет датчика, содержащий операции определение первого уровня требуемого тока, проходящего через источник света для работы упомянутого источника света на заранее выбранной длине волны; определение второго уровня тока, причем упомянутый второй уровень тока выше, чем упомянутый первый уровень тока, упомянутый второй уровень тока определяет ток возбуждения; выбор элемента импеданса, который затем подключается параллельно упомянутому источнику света, формирует настроенную сеть источника света, при этом упомянутый элемент импеданса выбирается для проведения достаточного количества упомянутого тока возбуждения так, что упомянутый первый уровень тока проходит через источник света; и подключение упомянутого импеданса параллельно упомянутому источнику света.
7. Способ обеспечения двух длин волн от одного светодиода, содержащий операции; выбор светодиода такого типа, который проявляет сдвиг длины волны с изменением в токе возбуждения через светодиод для диапазона тока возбуждения; подключение источника электрической энергии к светодиоду для обеспечения упомянутого тока возбуждения; приведение в действие светодиода первым уровнем тока возбуждения в упомянутом диапазоне тока возбуждения, чтобы заставить упомянутый светодиод стать активным и работать на первой длине волны в ответ на упомянутый первый уровень тока возбуждения; и приведение в действие светодиода вторым уровнем тока возбуждения в диапазоне тока возбуждения, отличающимся от упомянутого первого уровня тока возбуждения, чтобы заставить упомянутый светодиод стать активным и работать на второй длине волны в ответ на упомянутый второй уровень тока возбуждения.
8. Способ по п. 7, в котором упомянутый светодиод сконфигурирован для передачи световой энергии в тестируемую среду, способ далее содержит операции когда упомянутый светодиод работает на упомянутой первой длине волны, передача первой световой энергии на упомянутой первой длине волны через тестируемую среду, упомянутая первая длина волны выбрана для первых заранее заданных характеристик ослабления упомянутой световой энергии, когда она распространяется через упомянутую тестируемую среду, и измерение ослабленной световой энергии от упомянутого светодиода; и когда упомянутый светодиод работает на упомянутой второй длине волны, передача второй световой энергии на упомянутой второй длине волны через тестируемую среду, упомянутая вторая длина волны выбрана для вторых заранее заданных характеристик ослабления упомянутой световой энергии, когда она распространяется через упомянутую тестируемую среду, и измерение ослабленной световой энергии от упомянутого светодиода.
9. Способ по п. 8, в котором упомянутый способ содержит определение насыщения крови кислородом, и упомянутая среда при тестировании содержит часть человеческого тела с циркулирующей кровью, способ далее содержит операции: подключение источника энергии ко второму светодиоду, который работает на третьей длине волны, отличающейся от упомянутых первой и второй длин волн, при этом изменение в длине волны между упомянутыми первой и второй длинами волн имеет заранее выбранную величину; передача третьей световой энергии на упомянутой третьей длине волны через упомянутую тестируемую среду; измерение упомянутой третьей световой энергии после распространения через тестируемую среду; и вычисление насыщения кислородом упомянутой крови.
10. Способ по п. 9, далее содержащий способ вычисления другого параметра, относящегося к упомянутой тестируемой среде, упомянутой первой длины волны известной величины, а упомянутое изменение в длине волны между упомянутыми первой и второй длинами волн имеет заранее выбранную величину, упомянутый способ содержит операции: определение величины упомянутой второй длины волны; и вычисление упомянутого другого параметра упомянутой крови.
11. Способ по п. 10, в котором упомянутый другой параметр содержит насыщение карбоксигемоглобином.
12. Способ по п. 10, в котором упомянутый другой параметр содержит рассеивание.
13. Способ по п. 7, упомянутый способ далее содержит операции: регулировка первого светодиода регулирующим элементом импеданса так, что изменение в длине волны для увеличивающегося изменения в токе совпадает с заранее заданным изменением длины волны.
14. Способ по п. 13, в котором упомянутый регулирующий элемент импеданса содержит резистор.
15. Способ по п. 13, в котором упомянутая операция регулировки содержит операции: помещение регулирующего элемента импеданса параллельно упомянутому первому светодиоду; выбор величины упомянутого регулирующего резистора, чтобы заставить первый светодиод проявлять упомянутое заранее выбранное изменение при упомянутом увеличивающемся изменении в токе.
16. Оксигемометрический датчик, содержащий: первый светоизлучающий прибор, сконфигурированный для выработки света на первой известной длине волны, и который активен на первом уровне напряжения; и элемент информации параллельно первому светоизлучающему прибору.
17. Оксигемометрический датчик по п. 16, в котором упомянутый элемент информации работает на уровне напряжения ниже упомянутого первого уровня напряжения.
18. Оксигемометрический датчик по п. 16, в котором упомянутый элемент информации содержит резистор.
19. Оксигемометрический датчик по п. 16, в котором упомянутый элемент информации содержит импедансную сеть.
20. Оксигемометрический датчик по п. 16, в котором упомянутый элемент информации содержит устройство памяти.
21. Оксигемометрический датчик по п. 16, в котором светоизлучающий прибор содержит светодиод.
22. Оксигемометрический датчик по п. 16, в котором упомянутый элемент информации содержит кодирующий резистор, величина упомянутого кодирующего резистора индицирует первую известную величину длины волны, и эта величина достаточно велика, чтобы кодирующий резистор эффективно не передавал никакого тока во время активной работы упомянутого первого светоизлучающего прибора.
23. Оксигемометрический датчик по п. 16, в котором упомянутый элемент информации содержит элемент безопасности, при этом элемент безопасности индицирует, что оксигемометрический датчик выбран заранее заданного типа, величина элемента безопасности сконфигурирована так, чтобы он эффективно передавал незначительный ток во время активной работы упомянутого первого светоизлучающего прибора.
24. Оксигемометрический датчик по п. 23, в котором упомянутый элемент безопасности содержит резистор с величиной, которая достаточно велика, так что резистор эффективно передает незначительный ток во время активной работы упомянутого первого светоизлучающего прибора.
25. Способ настройки светодиода для работы на заранее выбранной длине волны в диапазоне длин волн, содержащий операции: выбор светодиода, который проявляет сдвиг длины волны в ответ на изменение в токе возбуждения в диапазоне тока возбуждения; приведение в действие упомянутого светодиода первым током возбуждения; измерение длины волны упомянутого светодиода во время работы на упомянутом первом токе возбуждения; и если упомянутый светодиод не работает на упомянутой заранее выбранной длине волны, регулировка тока возбуждения в упомянутом диапазоне тока возбуждения до второго тока возбуждения так, чтобы упомянутый светодиод работал на упомянутой заранее выбранной длине волны.
26. Датчик, сконфигурированный для передачи и обнаружения света, содержащий: по меньшей мере один светоизлучающий элемент, упомянутый светоизлучающий элемент имеет излучение с центроидной длиной волны передачи; первый и второй фотодетекторы, причем упомянутое излучение лежит внутри отклика упомянутых первого и второго фотодетекторов; направляющий свет элемент, сконфигурированный для направления света от упомянутого по меньшей мере одного светоизлучающего элемента на упомянутый первый и второй фотодетекторы; и фильтр, расположенный между упомянутым вторым фотодетектором и упомянутым по меньшей мере одним светоизлучающим элементом, упомянутый фильтр имеет полосу передачи, выбранную для включения в себя упомянутой центроидной длины волны передачи.
27. Датчик по п.26, содержащий оксигемометрический датчик, упомянутый по меньшей мере один светоизлучающий элемент содержит первый и второй светодиоды, упомянутый первый светодиод имеет центроидную длину волны в красном диапазоне, а упомянутый второй светодиод имеет центроидную длину волны в инфракрасном диапазоне, упомянутый фильтр, имеющий полосу передачи, которая включает в себя центроидную длину волны упомянутого первого светодиода.
28. Датчик по п. 26, упомянутый направляющий свет элемент, содержащий собирающую оптическую сферу, имеющую первый и второй фотодетекторы, расположенные так, чтобы принимать достаточно равные части света от упомянутого по меньшей мере одного светоизлучающего элемента.
29. Датчик по п. 26, упомянутый направляющий свет элемент, содержащий расщепляющий лучи элемент, расположенный для достаточно равного разделения света от упомянутого по меньшей мере одного светоизлучающего элемента и направления достаточно равных частей света на упомянутые первый и второй фотодетекторы.
30. Способ определения центроидной длины волны светоизлучающего элемента, содержащий операции: обеспечение набора множества заранее заданных отношений, каждое из упомянутого множества заранее заданных отношений соответствует связанной с ним центроидной длине волны; передача света от упомянутого светоизлучающего элемента на первый элемент обнаружения света для получения первой интенсивности; передача света от упомянутого первого светоизлучающего элемента через фильтр, который ослабляет свет, на второй элемент обнаружения света для получения второй интенсивности; вычисление отношения упомянутой второй интенсивности к упомянутой первой интенсивности; и сравнение упомянутого отношения с упомянутым набором заранее заданных отношений для соотнесения центроидной длины волны упомянутого первого светоизлучающего элемента.
31. Способ по п.30, в котором упомянутые первый и второй элементы обнаружения света содержат один и тот же элемент обнаружения света, а упомянутые операции передачи происходят последовательно.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
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US08/478,493 | 1995-06-07 | ||
US08/478.493 | 1995-06-07 | ||
US08/478,493 US5758644A (en) | 1995-06-07 | 1995-06-07 | Manual and automatic probe calibration |
Publications (2)
Publication Number | Publication Date |
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RU98100085A true RU98100085A (ru) | 1999-10-27 |
RU2199723C2 RU2199723C2 (ru) | 2003-02-27 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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RU98100085/28A RU2199723C2 (ru) | 1995-06-07 | 1996-06-04 | Источник света с регулируемой длиной волны для оксигемометра |
Country Status (14)
Country | Link |
---|---|
US (10) | US5758644A (ru) |
EP (3) | EP1136812A1 (ru) |
JP (2) | JP3837161B2 (ru) |
CN (1) | CN1113225C (ru) |
AT (2) | ATE439081T1 (ru) |
AU (1) | AU704383B2 (ru) |
CA (2) | CA2221446C (ru) |
DE (2) | DE69623285T2 (ru) |
DK (2) | DK0832421T3 (ru) |
ES (2) | ES2330196T3 (ru) |
HK (2) | HK1009848A1 (ru) |
PT (2) | PT832421E (ru) |
RU (1) | RU2199723C2 (ru) |
WO (1) | WO1996041138A1 (ru) |
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- 1996-06-04 DE DE69637999T patent/DE69637999D1/de not_active Expired - Lifetime
- 1996-06-04 AT AT96917089T patent/ATE223035T1/de active
- 1996-11-12 US US08/745,474 patent/US5823950A/en not_active Expired - Lifetime
-
1998
- 1998-02-02 US US09/016,924 patent/US6011986A/en not_active Expired - Lifetime
- 1998-09-10 HK HK98110565A patent/HK1009848A1/xx not_active IP Right Cessation
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1999
- 1999-11-30 US US09/451,151 patent/US6397091B2/en not_active Expired - Lifetime
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2001
- 2001-11-08 US US10/005,711 patent/US6678543B2/en not_active Expired - Fee Related
-
2003
- 2003-03-11 HK HK03101733.7A patent/HK1049779B/zh not_active IP Right Cessation
-
2004
- 2004-01-13 US US10/757,279 patent/US7496391B2/en not_active Expired - Fee Related
-
2005
- 2005-12-07 JP JP2005353967A patent/JP4021916B2/ja not_active Expired - Lifetime
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2006
- 2006-12-15 US US11/640,077 patent/US7526328B2/en not_active Expired - Fee Related
-
2009
- 2009-04-24 US US12/430,049 patent/US8145287B2/en not_active Expired - Fee Related
-
2012
- 2012-03-26 US US13/430,451 patent/US8781543B2/en not_active Expired - Fee Related
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2014
- 2014-06-03 US US14/295,194 patent/US20140288400A1/en not_active Abandoned
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
RU2468472C2 (ru) * | 2006-12-15 | 2012-11-27 | Конинклейке Филипс Электроникс Н.В. | Источник света с регулируемой точкой белого, в котором применяется элемент преобразования длины волны |
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