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Biomedical subjects

W Pitscheider

Publications and source records attributed to W Pitscheider.

29 records · Page 2Linked to original sources

[Role of echo-doppler in programming of sequential pacemakers. Evaluation of optimal atrioventricular delay in patients with normal or hypertrophic left ventricle].

2D-echocardiography, together with simultaneous measurement of systolic blood pressure and pulsed doppler examination of the transmitral flow were used to assess the left ventricular (LV) systolic and diastolic function during sequential pacing at 4 different atrioventricular (AV) intervals (50, 100, 150, 200 msec), and VVI pacing under the same rate of 90 beats/min in 13 patients (pts), mean age 61.25 +/- 8.26 years with DDD pacemakers implanted for complete AV block. The pts were divided into 2 groups: group I was comprised of 7 subjects showing no clinical abnormalities and normal echocardiograms, and group II of 6 hypertensive subjects with LV hypertrophy and normal systolic function on echocardiography. There was no change in LV diastolic dimension, but a depression in LV systolic function and contractility were shown by the conversion from DDD to VVI pacing in all pts, particularly in group II VVI pacing caused mitral regurgitation with LV filling pattern changing from beat to beat. By changing the AV interval during DDD pacing, the LV filling pattern was modified in all pts. Systolic performance showed little change in group I, whereas in group II more evident modifications were seen. An optimal AV delay, defined as the delay with maximal stroke volume, was identified in all subjects as being 100 and 150 ms in group I and group II respectively. Echo-doppler can thus provide useful information in choosing the mode of pacing and in programming optimal AV delay. In contrast to normal ventricles the systolic performance in hypertrophic ventricles is highly influenced by variation in the AV delay.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

[Myocardial involvement in granulomatous vasculitis (Churg-Strauss disease)].

We report the case of a 44-year-old woman affected by Churg-Strauss syndrome (systemic vasculitis with eosinophilia, bronchial asthma and pulmonary infiltrations). Congestive heart failure developed, caused by severe myocardial and pulmonary involvement. Conventional treatment and steroids induced remission of symptoms.

Adult↗

[Quantitative evaluation of left ventricular systolic function using bidimensional echocardiography: comparison with cineangiography].

The aim of the study was to compare the evaluation of the left ventricular systolic function performed both by angiography and 2D-echocardiography on 80 subjects (31 with coronary artery disease, 18 with left ventricular volume overload, 10 with left ventricular pressure overload, 14 with mitral valve disease and 7 normal controls). The 2D-echocardiograms of the left ventricle with simultaneous measurement of the right arm systolic blood pressure was performed within 24 hours of the angiographic examination. The following parameters were obtained using the two methods: end-diastolic volume index, end-systolic volume index, ejection fraction, left ventricular mass index, mass/volume ratio, end-systolic circumferential stress, contractility expressed as end-systolic circumferential stress/end-systolic volume ratio; the end-systolic circumferential stress/ejection fraction ratio was calculated only by 2D-echocardiography. The afterload and contractility were not calculated in subjects with coronary artery disease and left ventricular outflow gradient. No statistically significant differences were shown between the two methods, except a slight under-estimation by echocardiography of the angiographic end-diastolic volume index (93.1 +/- 38.9 ml/m2 vs 115 +/- 39.9 ml/m2; p less than 0.01) and over-estimation of the mass/volume ratio (1.38 +/- 0.33 g/ml vs 1.2 +/- 0.44 g/ml; p less than 0.01) was shown between the two methods for all parameters. A depressed contractile state was also demonstrated by the end-systolic circumferential stress/ejection fraction ratio. The inter and intraobserver variability was 6.6 +/- 4.4% (range 0.16%) and 4.2 +/- 3% (range 1.11%) respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

[Value of the isovolumetric index in the diagnosis of ischemic cardiopathy with normal left ventricular volume and ejection fraction].

Purpose of this study was to assess if the isovolumic index (IVI%) was able to detect the presence of critical coronary artery disease (CAD) in a group of 43 patients with anginal chest pain and normal left ventricular volumes and ejection fraction. The left ventricular function was before evaluated with invasive method and then the IVI% was allowed in every patient. The IVI% was able to recognize early abnormalities of isovolumetric phases of the left ventricle and differentiated normal subjects (IVI% = 40.07 +/- 2.82) from patients with CAD (IVI% = 60.87 +/- 12.49; p less than 0.01). The only parameter of left ventricular function invasively calculated able to separate normal patients from patients with significant CAD were the muscular stiffness of the left ventricle (p less than 0.01).

Coronary Disease↗

[The isovolumetric index: a new index of left ventricular function].

The isovolumic index (IVI%), a new parameter of left ventricular function defined as (isovolumic contraction + isovolumic relaxation time)/left ventricular ejection time, is easily obtained from a routine echocardiogram. By simultaneous recordings of an electrocardiogram, a carotid arterial pulse tracing and the mitral valve echocardiogram, we calculated the IVI% as (time from R wave to MV opening-LVET)/LVET %. 90 normal subjects, mean age 38.32 +/- 11.8 years (range 20-60), underwent an echocardiographic study in order to calculate this index. The value of the IV% was 39.75% +/- 6.82 (range 21.4%-52.3%). The index was heart rate independent and showed a weak positive correlation with age (y = 32.4 + 0.19x; r = 0.33; p less than 0.01). The intraobserver and interobserver variability were 2.6% and 3.6%. The methodologic aspects of the calculation of the IVI% are discussed.

Adult↗

[A contribution to the electrogenetic interpretation of left ventricular hypertrophy caused by volume overload].

The purpose of the present study is to make a contribution to the understanding of the electrogenetic interpretation of left ventricular hypertrophy caused by volume overload. Thirty-two cases of isolated aortic valve regurgitation with electrocardiographic evidence of left ventricular hypertrophy were studied by vectorcardiography in order to measure the 20 msec vector both in the spatial and horizontal plane, and by M-Mode echocardiography to obtain the interventricular septal and posterior wall thickness and the end diastolic dimension of the left ventricle. The following relations were analyzed: a) between the interventricular septal thickness and the amplitude of the 20 msec vector in the spatial and horizontal plane; b) between the end diastolic dimension of the left ventricle and the amplitude of the 20 msec vector. We also explored the possibility to distinguish by means of the 20 msec vector amplitude between patients with and without disproportionate septal thickening. We found no correlation either between interventricular septal thickness and amplitude of the 20 msec vector, or between left ventricular end diastolic dimension and amplitude of the 20 msec vector. It was not possible to distinguish by means of the amplitude of the 20 msec vector between the cases of left ventricular hypertrophy with disproportional septal thickening and those without it.

Adolescent↗

[Preclinical changes in left ventricular function in myotonic muscular dystrophy. Value of the isovolumetric index].

Nine patients, 7 males, 2 females, mean age 36 years, with myotonic muscular dystrophy who had no cardiac symptoms underwent M-mode echocardiography (e.), systolic time intervals (STI) measurement by simultaneous recordings of the electrocardiogram, phonocardiogram and carotid arterial pulse, and single-pass radionuclide angiocardiography (RNA) in order to assess the left ventricular function. The ejecting phase indexes measured by echocardiography (fractional shortening, mean velocity of circumferential fiber shortening) were slightly depressed in 1 case and an abnormal PEP/LVET ratio was found in 3 cases. The ejection fraction measured by radionuclide angiocardiography was abnormal in 1 case who showed a diffuse hypokinesia. The IVI%, a new isovolumic phase index obtained by echocardiography, was abnormal in all patients. It is concluded that the IVI% seems more sensitive than the ejecting phase indexes calculated by echocardiography or radionuclide angiocardiography and the PEP/LVET ratio in detecting abnormalities of left ventricular function in patients with myotonic muscular dystrophy and no clinical signs of heart disease.

Adolescent↗

Cardiovascular effects of high-dose growth hormone treatment in growth hormone-deficient children.

Growth hormone (GH) hypersecretion is associated with an increased incidence of cardiac hypertrophy and subclinical abnormalities of left ventricular (LV) function. The unlimited availability of biosynthetic GH has led to progressively increased dosage when treating GH-deficient children, raising the question of its cardiovascular effects during long-term therapy. We compared 22 children (8 girls, 14 boys), mean age 12.1 years (range 3-17 years) with GH deficiency who were receiving chronic GH treatment (GH group) with 22 normal controls matched for sex and body size in order to evaluate: (1) LV volume, mass, and systolic function by two-dimensional guided M-mode echocardiography; (2) LV diastolic function by pulsed-wave Doppler sampling of the transmitral flow; and (3) cardiac output and systemic vascular resistance by Doppler echocardiography. All patients had been on chronic GH therapy for 13.8 +/- 7.6 months (range 5-30 months) with an average dose of 0.95 +/- 0.12 IU/kg per week (range 0.69-1.17 IU/kg per week). Blood pressure did not differ between the two groups. LV volume, mass, ejection fraction, and mean velocity of circumferential shortening did not differ significantly between the GH group and controls; nor did the peak- and end-systolic meridional stress. All patients had a normal contractile state as estimated by the relation between mean velocity of circumferential shortening and end-systolic meridional stress. The LV filling parameters did not differ between the two groups, and there was no difference in cardiac index and systemic vascular resistance.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Age-related variation in left ventricular myocardial contractile state expressed by the stress velocity relation.

The assessment of ventricular function plays an important role in the pre- and postoperative management of many congenital heart abnormalities. Normal ranges in left ventricular systolic function indices have been defined during childhood and age-related alterations in left ventricular myocardial contractile state have recently been reported. This study was carried out to investigate the developmental changes in left ventricular contractile state expressed by the endsystolic meridional stress (ESS)/rate-corrected velocity of circumferential fiber shortening (VCFc) relation, calculated by echo in normal children and young adults. We examined 146 healthy subjects (80 males and 66 females), mean age 70.85 +/- 63.89 months (range 0.5-228) and body surface area (BSA) 0.807 +/- 0. 47 (range 0.18-2.01) with no clinical and echocardiographic evidence of cardiac disease and with normal blood pressure. The subjects were divided into three groups according to age: <6 months (group 1, n = 32), 6-36 months (group 2, n = 34), and >36 months (group 3, n = 80). Enddiastolic volume and mass (M) of the left ventricle were measured by M-mode Echo. ESS was considered as an index of afterload and the VCFc as an index of systolic ventricular function. The left ventricular ejection time used for the calculation of VCFc was measured from aortic flow obtained by PW-Doppler. The ESS/VCFc relation was used to assess left ventricular contractility. Systolic blood pressure, volume, and mass of the left ventricle increase with age. The gradual increase in pressure despite a stable mass/volume ratio [M/V = 0.900 + (0.0007 x age); r = 0.27, p < 0.005] resulted in a substantial increase of afterload [ESS = 29.78 + (0.116 x age); r = 0.58, p < 0.0001]. VCFc showed an inverse hyperbolic regression with afterload [VCFc = 1.01 + (7.598/ESS); r = 0.59, p < 0.0001]. The regression lines (best linear fit) between VCFc and ESS are significantly different in the three groups. The Y intercept was higher and the slope steeper in group 1 [VCFc = 1.74 - (0.017 x ESS); r = 0.65, p < 0.0005] vs group 2 [VCFc = 1.54 - (0.008 x ESS); r = 0.58, p < 0.001] and group 3 [VCFc = 1.52 - (0.007 x ESS); r = 0.57, p < 0.0001]. These data indicate that, in children, the volume and mass of the left ventricle increase, whereas the M/V ratio remains relatively constant; the progressive increase in arterial blood pressure explains the increase of afterload. The VCFc is higher in the first few years of life compared to that seen in older children due to reduced afterload and increased contractile state. Left ventricular contractility, expressed as ESS/VCFc relation, is thus inversely proportional to age. In the first months of life the left ventricular myocardium exhibits a higher basal contractile state and a greater sensitivity to changes in afterload. For obtaining an accurate assessment of left ventricular function, the ESS/VCFc relation in different age groups should be measured.

Adolescent↗