• 제목/요약/키워드: pulse profile

검색결과 162건 처리시간 0.019초

에어로빅운동이 비만여대생의 신체조성, 심폐기능, 혈청지질 및 항산화물질에 미치는 영향 (The Effect of Aerobic Exercise on Body Composition, Cardiopulmonary Function, Serum Lipid and Antioxidants of Obese College Female Students)

  • 정은숙;박형숙
    • 기본간호학회지
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    • 제5권1호
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    • pp.125-141
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    • 1998
  • The purpose of this research is to analyze the effects of aerobic exercise on body composition, cardiopulmonary function, serum lipid level and antioxidants of obese and normal college female students. The subject group was made up of 13 normal students (below 30% body fat ratio) and 12 obese students (above 30% body fat ratio). After a pretest, the subjects were given an 8-week aerobic program. Then the subjects were given a posttest and analyzed of body composition, serum lipid level, antioxidants and cardiopulmonary function after the 6th and the 8th week of the program. The program schedule was made up of 4 days per week, 60 minutes per day. Test includes B.W., subscapular and triceps subcutaneous fat thickness, change of respiratory gas, and two blood sampling before treadmill exercise and post all out state, which analyzed serum lipid and antioxidants. The subjects performed treadmill exercise starting with 4km/hr of walking and then gradually increase the speed of 1km/hr per minute until all out state. The obtained data were analyzed using SAS program. The statistical methods employed here were one-way ANOVA with repeated measure, Duncan Multiple range test, paired-t test and t-test. The test results and conclusion of this research were as follows. 1. The effects of aerobic exercise on body composition were as follows ; Percent body fat was significantly reduced 6 weeks after the program and lean body mass was significantly increased 8 weeks after the program in both groups(obese group: F=3.44 P=.044, normal group: F=3.30 P=.048). subscapular skinfold of the obese group showed a remarkable decrease after the 6th week(F=4.33 P=.021) triceps skinfold of the normal group showed a remarkable decrease after the 6th and the 8th week(F=4.55 P=.017) compared with readings before the aerobic program, the aerobic program made a bigger difference concerning body fat, lean body mass, subscapular skinfold in the obese group than in the normal group(t=2.41 P=.024, t=2.40 p=.025, t=2.43 p=.028). 2. The effects of aerobic exercise on cardiopulmonary function were as follows ; Maximal $O_2$ uptake/kg was significantly increased 6 weeks after the program in the obese group(F=3.20 P=.054), but not much difference was observed in the normal group. Maximal pulse rate was significantly reduced in both groups after 6 weeks of the program(obese group: F=2.77 P=.087, normal group: F=7.17 P=.001). 3. The effects of aerobic exercise on serum lipid level were as follows ; In a resting period, total cholesterol, Triglyceride, and LDL-cholesterol were slightly higher in the obese group than in the normal group, but HDL-cholesterol was higher in the normal group. But, with the aerobic program, total-cholesterol, Triglyceride, LDL-cholesterol were reduced gradually and HDL-choleterol got increased in both groups, but not much change was noticed in the normal group. However, in the obese group, serum HDL-cholesterol level got increased significantly(F=5.12 P=.012). 4. The effects of aerobic exercise in serum antioxidants were as follows ; In a resting period, the obese group's serum Free Radical and GSSG content were higher than the normal group's and the normal group's serum GSH content was higher than the obese group's. After 6 weeks of the aerobic program, Free Radical was reduced significantly in both groups(obese group: F=13.87 P=.000, normal group: F=18.60 P=.000) In the obese group, 8 weeks after the program, GSH was increased significantly(F=13.78, P=.000). In the normal group, 6 weeks after the program, GSH was reduced but increased again after 8 weeks(F=6.07 P=.005). Plasma GSSG was significantly increased after 8 weeks of exercise in both groups(obese group: F=19.75 P=.000, normal group: F=22.42 P=.000,) Compared with readings before the aerobic program, the aerobic program made a bigger difference serum GSH in the normal group than in the obese group(t=3.37 p=.003). As this result shows, it is known that the regular aerobic exercise improves cardiopulmonary function, body composition, serum lipid effectively and through the serum Free Radical reduction and antioxidant system activation, oxidant stress was suppressed. This effect was higher in the obese group than in the normal one. At least 6weeks exercise period need for improvement of body composition, cardiopulmonary function and activation of antioxidant system. This result suggest that improvement of serum lipid profile was needed longer than 8weeks exercise period.

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자발적 호흡정지 및 재개시 동맥혈 산소포화도와 심박수의 변동양상과 이에 영향을 미치는 인자 (The Patterns of Change in Arterial Oxygen Saturation and Heart Rate and Their Related Factors during Voluntary Breath holding and Rebreathing)

  • 임채만;김우성;최강현;고윤석;김동순;김원동
    • Tuberculosis and Respiratory Diseases
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    • 제41권4호
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    • pp.379-388
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    • 1994
  • 연구배경 : 수면 무호흡증후군은 수면시 반복적인 무호흡이 발생하여 일련의 심폐계통의 변화가 초래되는 질환으로 이중 동맥혈 산소포화도(arterial oxygen saturation, 이하 $SaO_2$)의 감소와 심부정맥의 발생이 임상적으로 중요한 소견이다. 무호흡시 $SaO_2$의 감소양상은 환자마다 다양하며 이는 호흡정지 기간, 호흡정지시의 산소공급원인 폐용량 및 개체의 산소소모율에 따라 결정될 것으로 예상된다. 방법 : 호흡정지와 재개시에 수반되는 $SaO_2$ 및 심박수(heart rate, 이하 HR)의 변동양상을 관찰하고, 그 변동에 관련되는 생리학적 인자들을 알아보고자 정상 남자 8명 및 정상 여자 9명 등 총 17명을 대상을 폐용량 측정, 동맥혈 가스분석을 시행하고 Harris-Benedict 식에 의거한 기초대사율을 산출한 뒤 총폐용량(total lung capacity, 이하 TLC), 기능적 잔기량(functional residual capacity, 이하 FRC) 및 잔기량(residual volume, 이하 RV) 상태에서 호흡정지를 시킨 후, $SaO_2$의 변동과 심전도를 측정기록하였다. 결과 : 호흡정지시 $SaO_2$가 기저치로부터 2% 감소하는데 걸린 시간(T2%)은 TLC, FRC 및 RV 에서 각각 $70.1{\pm}14.2$$44.0{\pm}11.6$초 및 $33.2{\pm}11.1$초로 TLC보다는 FRC 에서(p<0.05), FRC보다는 RV에서(p<0.05) 유의하게 단축되었다. T2%까지 호흡정지한 뒤 호흡재개시 $SaO_2$의 추가 감소는 RV에서 $4.3{\pm}2.1%$로서, TLC의 $1.4{\pm}1.0%$나 FRC의 $1.9{\pm}1.4%$ 보다 감소량이 컸고(각각 p<0.05), 최저 $SaO_2$치에서 기저치로의 회복에 걸린 시간은 TLC, FRC 및 RV에서 유의한 차이가 없었다. T2%는 각각의 폐용량 혹은 기초대사율과 유의한 상관관계는 없었으나, TLC/BMR(r=0.693, p<0.001) 및 FRC/BMR(r=0.615, p<0.025)과는 각각 유의한 상관관계를 보였고, RV/BMR(r=0.027, p>0.05)과는 유의한 상관관계가 없었다. 호흡정지와 재개의 전 과정에서 생긴 최대심박수와 최초심박수의 차이는 TLC에서 $27.5{\pm}9.2$회/분, FRC 에서 $19.1{\pm}6.0$회/분, RV에서 $26.4{\pm}14.0$회/분으로 FRC에서의 심박수 변화량이 TLC나 RV에서의 변화량보다 유의하게 적었고(각각 p<0.05), 기록상 호흡재개 시점을 전후한 5개씩의 p-p간격의 평균치는 TLC에서 $0.84{\pm}0.10$초와 $0.72{\pm}0.09$초(p<0.025), FRC에서 $0.82{\pm}0.11$초와 $0.73{\pm}0.09$초(p<0.025), RV에서 $0.77{\pm}0.09$초와 $0.72{\pm}0.09$초(p<0.05)로 모두 유의한 차이가 있었다. 결론 : 정상인에서 FRC이상에서 호흡정지시 $SaO_2$의 감소속도는 폐용량/기초대사율과 밀접한 상관관계를 보이고, 호흡정지-재개의 과정에서 생기는 동성부정맥은 FRC상태가 제일 작고 미주신경활성도의 변화가 관여하는 것으로 추정되며, RV에서의 실험결과로 미루어 수면 무호흡증후군 환자들에서 체위, 혹은 복부비만에 기인하는 기능적 잔기량의 감소가 저산소혈증의 정도나 심부정맥의 발생에 미치는 영향에 대한 연구가 필요하고, 수면시의 기능적잔기량을 증가시키는 것이 치료적 유용성이 있는지에 대한 검증도 필요하리라고 사료된다.

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