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A Rynkiewicz

Publications and source records attributed to A Rynkiewicz.

31 records · Page 2Linked to original sources

Systolic and diastolic time intervals in young diabetics.

Systolic and diastolic time intervals were used to examine left ventricular performance in 22 young diabetic men (mean age 25 years) with no apparent clinical heart disease. Pre-ejection period index (PEPI), left ventricular ejection time index (LVETI), electromechanical systole index (QS2I), PEP to LVET ratio, the a wave percentage amplitude of the apexcardiogram (a/H5 ratio), the rapid filling wave (RFW), and the A2O interval were obtained in the conventional manner in 22 diabetics and 22 healthy men. The heart rate, diastolic pressure, PEP/LVET ratio, a/H per cent ratio, and A2O interval were significantly increased and LVET decreased in the diabetic group. QS2I, PEPI, and RFW did not differ from that in the normal group. Twenty-three per cent of patients had an abnormal systolic time interval, 54 percent an abnormal diastolic time interval, and 23 per cent had both abnormal intervals. Though these studies provide no difinite evidence of a cause, the abnormalities found may reflect a subclinical diabetic cardiopathy.

Adult↗

[Evaluation of blood pressure changes and heart rate in young health men based on results of a 24-hour monitoring of pressure].

Systolic and diastolic blood pressures and heart rate were monitored in a group of 20 young healthy men for 24 hours. Period of time between 8 o'clock a.m. and 10 o'clock p.m. was treated as waking state whereas period of time from 12 p.m. to 6 a.m. as sleep phase. Mean value of systolic blood pressure for waking state was 124.6 +/- 7.6 mm Hg, and for sleep phase 110.4 +/- 11.5 mm Hg. (p < .001). Mean diastolic blood pressures were also significantly different (76.5 +/- 5.9 mm Hg and 63.8 +/- 7.7 mm Hg, respectively), the same concerns heart rate (79.6 +/- 6.4 and 63.0-7.2 min-1, respectively). In both cases p < .001. To evaluate dependence of heart rate on systolic blood pressure in waking state the following calculation was made: HR = 0.230 x systolic blood pressure +51.4 (r = 0.24; p < .001) whereas for sleep phase r did not reach a level of statistical significance (HR = 0.074 x systolic blood pressure + 53.9; r = 0.094). Single or even multiple measurements of the arterial blood pressure are not sufficient to evaluate circadian changes.

Adult↗

[Circadian rhythm of blood pressure and pulse rate in young men with diabetes mellitus type I depending on duration of disease].

In order to investigate the blood pressure-heart rate interrelation and their circadian pattern in type I diabetes mellitus, we performed ambulatory blood pressure monitoring in 28 normotensive patients without clinical nephropathy divided in two groups. Group A consisted of 14 males with short-term DM (mean 2 years, mean age 28 +/- 6 years), group B consisted of 14 males with long-term DM (mean 12 years, mean age 31 +/- 7 years). Ambulatory blood pressure monitoring revealed significantly higher night heart rate in B group (74 +/- 13 l/min vs. 62 +/- 11 l/min in A, p < 0.01) and day diastolic blood pressure (83 +/- 9 mm Hg vs. 74 +/- 8 mm Hg in A, p < 0.01) and night diastolic blood pressure (73 +/- 10 mm Hg vs. 62 +/- 8 mm Hg in A, p < 0.01). The linear regression SBP/HR equation were significantly different (p < 0.02) (HR = 0.48 x SBP + 21, r = 0.40 in A vs. HR = 0.29 x SBP + 69, r = 0.28 in B). We concluded that type I diabetes duration has significant influence on diastolic blood pressure and heart rate even in patients without diabetic nephropathy and could be related to changed sensitivity of the baroreceptors.

Adult↗

[Levels of insulin in serum during fasting and circadian blood pressure profile in young health men].

In order to investigate the relation of ambulatory blood pressure values to fasting plasma insulin, non-invasive 24-hour blood pressure monitoring was performed in 32 young normotensive males. Systolic and diastolic blood pressures were averaged for awake and asleep periods. Fasting plasma insulin levels correlated significantly with both asleep (r = 0.61; p < 0.001) and awake systolic blood pressures (r = 0.44; p < 0.02) but not with casual systolic blood pressure (r = 0.27). There were no significant associations of awake, asleep and causal diastolic blood pressures values with fasting plasma insulin levels (r = 0.15, 0.05 and 0.21, respectively). These results support the hypothesis that insulin may be a physiological determinant of blood pressure.

Adult↗

[Indices of left heart ventricle relaxation after 5-months of hypotensive therapy with guanfacine].

The subject of the work is to assess the clinical parameters and diastolic function in patients with mild or moderate essential hypertension after 5-month treatment with guanfacine 0.5-3 mg/day, mean 1.7 mg. In the group there were 8 women and 8 men, mean age 53.7 +/- 7.6. The diastolic function of the left ventricle was assessed from the echocardiographic M-mode paper sweep of the left ventricle by the method of Gibson and Brown. In clinical parameters systolic, diastolic and mean blood pressure was found to decrease significantly, the heart rate was unchanged. Essential improvement of the markers of relaxation was received while amelioration of filling was not significant. The before treatment data were compared with the similar ones of the 60 persons of the control group. The significant differences were found in values of blood pressure, markers of relaxation and indices Iv and Ip.

Diabetes Mellitus, Type 2↗

Plasma insulin and blood pressure response to oral glucose tolerance test in young borderline hypertensives.

In order to evaluate whether borderline hypertension might be associated with hyperinsulinaemia, twenty non-obese borderline hypertensives and twenty matched normotensives underwent a standard oral glucose tolerance test and 24-h ambulatory blood pressure monitoring. Blood pressure, plasma glucose and insulin were measured at fasting and 15, 30, 60, 120 and 180 minutes after glucose load. Fasting plasma insulin was significantly higher in borderline hypertensives in comparison to normotensives (16.6 +/- 6.9 vs 12.4 +/- 4.2 mU/l; P < 0.05). Plasma insulin response estimated by the positive incremental area under the curve did not differ significantly between two groups but borderline hypertensives showed a larger interindividual difference. Decrease of systolic blood pressure after glucose load was significantly greater in borderline hypertensive subjects. Furthermore, blood pressure and plasma insulin relationship was different in borderline hypertensives compared to normotensives.

Adult↗