SU146905A1 - Photoplethysmography method - Google Patents

Photoplethysmography method

Info

Publication number
SU146905A1
SU146905A1 SU739621A SU739621A SU146905A1 SU 146905 A1 SU146905 A1 SU 146905A1 SU 739621 A SU739621 A SU 739621A SU 739621 A SU739621 A SU 739621A SU 146905 A1 SU146905 A1 SU 146905A1
Authority
SU
USSR - Soviet Union
Prior art keywords
photoplethysmography
blood
transducer
recording
light
Prior art date
Application number
SU739621A
Other languages
Russian (ru)
Inventor
В.А. Люхин
В.С. Мошкевич
Original Assignee
В.А. Люхин
В.С. Мошкевич
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by В.А. Люхин, В.С. Мошкевич filed Critical В.А. Люхин
Priority to SU739621K priority Critical patent/SU146906A1/en
Priority to SU739621A priority patent/SU146905A1/en
Application granted granted Critical
Publication of SU146905A1 publication Critical patent/SU146905A1/en

Links

Landscapes

  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)

Description

В известных способах фотоплетизмографни отраженным и рассе нным светом сказываетс  вредное вли ние степени насыщенности крови кислородом, что искажает действительный характер плетизмограм.мы.In the known methods of photoplethysmography with reflected and scattered light, the harmful effect of the degree of blood saturation with oxygen affects, which distorts the actual character of plethysmogram.

В предлагаемом способе дл  устранени  указанного недостатка регистрацию физиологических процессов, происход щих в кровеносных сосудах, ведут в области спектра, близкой к инфракрасной.In the proposed method for eliminating this deficiency, the registration of physiological processes occurring in the blood vessels is carried out in the spectral region close to infrared.

На чертеже покпзана блок-схема плетизмографа дл  иллюстрации предлагаемого способа фотоплетизмографии.The drawing shows a block diagram of a plethysmograph to illustrate the proposed photoplethysmography method.

Блок-схема содержит: регистрирующее устройство /, усилитель и блок питани  2, преобразователь (фотодатчик) 3 светового потока, источник света 4.The block diagram contains: a recording device /, an amplifier and a power supply unit 2, a luminous flux converter (photo sensor) 3, a light source 4.

Источник света 4 и преобразователь 5 светового потока к электрический сигнал располагают р дом или концентрично (на чертеже не показано ) и разделены непрозрачной перегородкой. Изменени  кровенаполнени  исследуемой ткани 5 вли ют на интенсивность отраженного света, поступающего на преобразователь 5 светового потока (например, фотоэлемент). Электрический сигнал с преобразовател  поступает на усилитель, и усиленный сигнал подаетс  на регистрирующее устройство / дл  регистрации, при этом спектральна  характеристика преобразовател  светового потока исключает вли ние колебаний насыщенности крови кислородом на регистрацию полезного сигнала, так как регистраци  физиологических процессов в кровеносных сосудах .ведетс  в области спектра, близкой к нфракрасной. The light source 4 and the transducer 5 of the light flux to the electrical signal are arranged side by side or concentrically (not shown) and separated by an opaque partition. Changes in the volume of blood in the test tissue 5 affect the intensity of the reflected light entering the transducer 5 of the light flux (for example, a photocell). The electrical signal from the transducer is fed to an amplifier, and the amplified signal is fed to a recording device / for recording, while the spectral characteristic of the luminous flux transducer eliminates the effect of fluctuations in blood oxygen saturation on the registration of the useful signal, since recording physiological processes in blood vessels. spectrum close to infrared.

Предложенный способ может быть применен в научно исследовательских институтах физиологического, клинического и гигиенического прсфул , на кафедрах терапии, грудной-хирургии,, невропатологии, отоларингологии , а также в больницах дл . диагностики заболевании сердс ,Нг-:.-сосудистой и нервно системы.-The proposed method can be applied in scientific research institutes of physiological, clinical and hygienic fields, in the departments of therapy, thoracic surgery, neuropathology, otolaryngology, as well as in hospitals for long. diagnosis of heart disease, Ng -: .- vascular and neurological systems.-

Я9 146905Я9 146905

Предмет изобретени Subject invention

Способ фотоплетизмографии отраженным и рассе нным светом,, отличающийс  тем, что, с целью исключени  вредного вли ни  степени насыщенности крови кислородом, искажающим действительный характер илетизмограммы, регистрацию физиологических процессов, происход щих в кровеносных сосудах, ведут в близкой к инфракрасной, области спектра..A method of photoplethysmography with reflected and scattered light, characterized in that, in order to eliminate the harmful effect of the degree of blood saturation with oxygen, distorting the actual character of the itismogram, the recording of physiological processes occurring in blood vessels takes place in the near-infrared spectral region.

. л. l

SU739621A 1961-07-14 1961-07-14 Photoplethysmography method SU146905A1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
SU739621K SU146906A1 (en) 1961-07-14 1961-07-14 Photoplethysmography device
SU739621A SU146905A1 (en) 1961-07-14 1961-07-14 Photoplethysmography method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU739621A SU146905A1 (en) 1961-07-14 1961-07-14 Photoplethysmography method

Related Child Applications (1)

Application Number Title Priority Date Filing Date
SU782682400A Addition SU860112A2 (en) 1978-11-09 1978-11-09 Device for teaching and checking knowledge of students

Publications (1)

Publication Number Publication Date
SU146905A1 true SU146905A1 (en) 1961-11-30

Family

ID=48302330

Family Applications (2)

Application Number Title Priority Date Filing Date
SU739621K SU146906A1 (en) 1961-07-14 1961-07-14 Photoplethysmography device
SU739621A SU146905A1 (en) 1961-07-14 1961-07-14 Photoplethysmography method

Family Applications Before (1)

Application Number Title Priority Date Filing Date
SU739621K SU146906A1 (en) 1961-07-14 1961-07-14 Photoplethysmography device

Country Status (1)

Country Link
SU (2) SU146906A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4817623A (en) 1983-10-14 1989-04-04 Somanetics Corporation Method and apparatus for interpreting optical response data
US5140989A (en) 1983-10-14 1992-08-25 Somanetics Corporation Examination instrument for optical-response diagnostic apparatus

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA2028261C (en) * 1989-10-28 1995-01-17 Won Suck Yang Non-invasive method and apparatus for measuring blood glucose concentration

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4817623A (en) 1983-10-14 1989-04-04 Somanetics Corporation Method and apparatus for interpreting optical response data
US5140989A (en) 1983-10-14 1992-08-25 Somanetics Corporation Examination instrument for optical-response diagnostic apparatus

Also Published As

Publication number Publication date
SU146906A1 (en) 1961-11-30

Similar Documents

Publication Publication Date Title
US6553242B1 (en) Physiological stress detector device and method
US7171251B2 (en) Physiological stress detector device and system
US5273036A (en) Apparatus and method for monitoring respiration
US6411832B1 (en) Method of improving reproducibility of non-invasive measurements
US20040260186A1 (en) Monitoring physiological parameters based on variations in a photoplethysmographic signal
BR8805227A (en) OXIMETRY SYSTEM TO MEASURE OXYGEN SATURATION IN THE BLOOD
JPH03500614A (en) Equipment and methods used in pulse oximetry
JPH01500493A (en) Multi-pulse oxygen concentration measurement method and device
JP6373511B2 (en) Optical analysis system and method
SU146905A1 (en) Photoplethysmography method
Gupta et al. Design and development of pulse oximeter
WO1999063883A1 (en) Physiological stress detector device and method
Weinman et al. Application of a photoconductive cell to the study of peripheral circulation in limbs of animals and man
Maguire et al. The design and clinical use of a reflective brachial photoplethysmograph
Quaresima et al. Medical near infrared spectroscopy: a prestigious history and a bright future
SU888931A1 (en) Photopletismograph
Latha et al. Development of MSP based Pulse oximeter with LabVIEW
Shriram et al. Effect of change in intensity of infrared led on a photoplethysmogram
SU946503A1 (en) Cardiotachometer
Jayasree et al. Selected cardiovascular studies based on photoplethysmography technique
Lv et al. Design and implementation of a reflection pulse oximeter in tele-monitoring system
Patel et al. Fetal Heart Rate Monitoring Using Photoplethysmography Techniques
Gupta et al. Design and Development of Anti-Spoofing based measurement of Heart Rate, Temperature and Blood Oxygen level using Low Cost Microcontroller
Leibel Peripheral Circulation by Photo-Electric Recording
Shchelkanova Evaluation of Blue Photoplethysmography Using a Novel Color Sensor-Based System