• Title/Summary/Keyword: cardiorespiratory system

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Detection of Heartbeat and Respiration Signal Using the Aircushion and the Frequency Domain Filter (에어쿠션 및 주파수 영역 필터를 이용한 호흡 및 심박 신호 검출)

  • Kim, Joo-Han;Cho, Sung-Pil;Shin, Jae-Yeon;Lee, Jeon;Lee, Kyoung-Joung
    • Journal of the Institute of Electronics Engineers of Korea SC
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    • v.47 no.5
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    • pp.33-42
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    • 2010
  • In this study, we have proposed a simple cardiorespiratory monitoring method based on displacements of human body which occurs due to periodic heartbeat and breathing. The proposed system consists of an aircushion, pressure sensing hardware and heartbeat and respiration signals extraction algorithm. The aircushion was used for unconstrained measurement of the respiration and heartbeats without a sensor attached on the subject's skin surface. The displacements of subject sitting on the aircushion cause small pressure variations. These variations are amplified and filtered with the pressure sensing hardware. Finally, heart rate and respiration rate are extracted by signal processing algorithm based on frequency domain filter. To evaluate the performance, extracted respiration and heart rate from proposed system were compared with conventional methods. The average sensitivity of respiration and heart rate are 98.67% and 99.24%, respectively. These results show the proposed method has advantages of installing and processing simplicity so as to be used easily in unconstrained respiration and heart rate monitoring in daily life.

The Study about Pulmonary Function in the last period Pregnancy (임신 말기 임산부의 호흡패턴에 관한 연구)

  • Chae, Jung-Byung;Park, Rae-Joon;Bae, Ji-Hye;Kim, Gwang-Ho;Shin, Sung-Hee;Lee, Hwa-Jin;Lee, Hee-Jeung;Lim, Mi-Jung;Jang, Eun-Jung
    • The Journal of Korean Physical Therapy
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    • v.17 no.4
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    • pp.613-620
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    • 2005
  • Tests of ventilatory function including pulmonary diffusing capacity were made in 18, the last period pregnant women and 20 non pregnant women. During the study was from May 22 to June 4, the subject of study refered 38 women (20 student and the staff of Physical Therapy at Masan college and 18 women who were examined at Masan OO obstetrics Hospital). All the studied subjects had no clinical abnormalities of the cardiorespiratory system. Mean FVC and FEV1.0 were significantly decreased in the last pregnant women compare with that of non pregnant women. All the Other Measurements were not differ from those of non pregnant women. The results of this study were as follows. l. Pregnancy was associated with decrease in mean FVC and FEVl.0, Which at the last period pregnant women were $2.70{\pm}0.58{\iota},\;2.31{\pm}0.53{\iota}$ below the non pregnant women mean $3.03{\pm}0.33,\;2.64{\pm}0.44{\iota}$ : Both changes were statistically significant.(P<0.05) 2. The mean VC, which at the last period pregnant women was $3.15{\pm}0.45{\iota}$ below the non pregnant women mean $3.28{\pm}0.33{\iota}$ and the mean IC $2.21{\pm}0.53{\iota}$ below the non pregnant women mean $2.22{\pm}0.54{\iota}$, but the difference were not statistically significant. 3. The mean ERV, IRV were not statistically significant between non pregnant women and pregnant women. 4. The mean TV were not statistically significant between non pregnant women and pregnant women. 5. The mean FEVl.0(G) were not statistically significant between non pregnant women and pregnant women.

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Respiratory Assist by Use of Electrical Diaphragmatic Pacing (전기자극에 의한 횡격막 조율을 이용한 호흡보조장치)

  • 오중환;김은기;서재정;박일환;김부연;이상헌;이종국;이영희
    • Journal of Chest Surgery
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    • v.34 no.6
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    • pp.441-446
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    • 2001
  • Background: Electrical breathing pacing has many advantages over mechanical ventilation. However, clinically permanent diaphragmatic pacing has been applied to limited patients and few temporary pacing has been reported. Our purpose is to investigate the feasibility of temporary electrical diaphragm pacing in explothoracotomy canine cases. Methods: Five dogs were studied under the general anesthesia. Left 5th intercostal space was opened. Self designed temporary pacing leads were placed around the left phrenic nerve and connected to the myostimulator. Chest wall was closed after tube insertion with underwater drainage. Millar catheter was introduced to the aorta and right atrium. Swan-Ganz catheter was introduced to the pulmonary artery. When the self respiration was shallow with deep anesthesia, hemodynamic and tidal volume were measured with the stimulator on. Results: Tidal volume increased from 143.3$\pm$51.3 ml to 272.3$\pm$87.4 ml(p=0.004). Right atrial diastolic pressure decreased from 0.7$\pm$4.0 mmHg to -10.5$\pm$4.7 mmHg(p=0.005). Pulmonary arterial diastolic pressure decreased from 6.1+2.5 mmHg to 1.2$\pm$4.8 mmHg(p<0.001). The height of water level in chest tube to show intrathoracic pressure change was from 10.3$\pm$6.7cmH$_{2}$O to 20.0$\pm$5.3 cmH$_{2}$O. Conclusion: Temporary electrical diaphragmatic pacing is a simple method to assist respiration in explothoracotomy canine cases. Self designed pacing lead is implantable and removable. Negative pressure ventilation has favorable effects on the circulatory system. Therefore, clinical application of temporary breathing pacing is feasible in thoracotomy patients to assist cardiorespiratory function.

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