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The transmission of gas pressure to xylem fluid pressure when plants are inside a pressure bomb.

In earlier work tobacco leaves were placed in a Scholander-Hammel pressure bomb and the end of the petiole sealed with a pressure transducer in order to measure pressure transmission from the compressed gas (Pg) in the bomb to the xylem fluid (Px). Pressure bomb theory would predict a 1:1 relationship for Pg:Px when tobacco leaves start at a balance pressure of zero. Failure to observe the expected 1:1 relationship has cast doubt on the pressure-bomb technique in the measurement of the xylem pressure of plants. The experimental and theoretical relationship between Px and Pg was investigated in Tsuga canadensis (L) branches and Nicotiana rustica (L) leaves in this paper. It is concluded that the non 1:1 outcome was due to the compression of air bubbles in embolized xylem vessels, evaporation of water from the tissue, and the expansion of the sealed stem segment (or petiole) protruding beyond the seal of the pressure bomb. The expected 1:1 relationship could be obtained when xylem embolism was eliminated and stem expansion prevented. It is argued that the non 1:1 relationship in the positive pressure range does not invalidate the Scholander pressure bomb method of measuring xylem pressure in plants because Px never reaches positive values during the determination of the balance pressure.

Plant Proteins↗

Genetic variance of SGK-1 is associated with blood pressure, blood pressure change over time and strength of the insulin-diastolic blood pressure relationship.

BACKGROUND: Insulin stimulation of the serum- and glucocorticoid-regulated kinase 1 (SGK-1) prolongs the half-life of the epithelial sodium channel, a protein which is essential for blood pressure regulation. The aim of this study was to investigate if variation in the SGK-1 gene is associated with increased blood pressure and strength of the insulin-blood pressure relationship. METHODS: A promoter C/T, an intron 6 C/T and an exon 8 C/T polymorphism in the SGK-1 gene were genotyped in 4830 subjects from the Malmö Diet and Cancer (MDC) material of whom 4001 were free from antihypertensive medication. Of these, 2171 subjects had also been investigated 11.2 +/- 4.4 years earlier in the Malmö Preventive Project (MPP). RESULTS: In untreated MDC subjects, intron 6 CC genotype carriers had higher diastolic blood pressure than carriers of the T allele (P = 0.02) and exon 8 C allele carriers had higher systolic blood pressure than TT genotype carriers (P = 0.05). Subjects simultaneously carrying the intron 6 CC genotype and the exon 8 CC or CT genotype (SGK-1 risk) had higher systolic blood pressure (P = 0.03) and higher diastolic blood pressure (P = 0.009) than noncarriers. From MPP to MDC, the percent change in blood pressure per year was higher for systolic blood pressure (P = 0.002) and diastolic blood pressure (P = 0.001) in SGK-1 risk carriers than noncarriers. The correlation between fasting plasma insulin concentration and diastolic blood pressure was stronger in SGK-1 risk carriers than in non-carriers (P = 0.04). CONCLUSION: Our data suggest that SGK-1 risk carriers are at increased risk of hypertension and are more sensitive to the blood pressure elevating effects associated with hyperinsulinemia.

Adult↗

[The influence of changes in body position on intraocular pressure, episcleral venous pressure, and blood pressure (author's transl)].

The intraocular pressure, the ophthalmic artery pressure, and the episcleral venous pressure increased after changes from sitting to recumbent body position, whereas the subclavian artery pressure remained unchanged or decreased slightly. Changing from recumbent to sitting position was followed by a decrease in IOP, ophthalmic pressure, and subclavian artery pressure. Comparing the last measurement in the first position to the first value after change, it was found that the IOP alters by about 20%, the ophthalmic artery pressure by 15%, and the episcleral venous pressure by 50%. In all series a decrease in subclavian artery pressure was observed during the first 15 min. The mean pressure in the ophthalmic artery diminished in the series that changed from sitting to recumbent position, whereas it increased in the other series during the first 15 min. The episcleral venous pressure increased more than the corresponding IOP after changing to the recumbent position.

Blood Pressure↗

Quantification of pressure relief using interface pressure and tissue perfusion in alternating pressure air mattresses.

OBJECTIVE: To examine whether the interface pressure (IP) relief provided by alternating pressure air mattresses (APAMs) is matched with maintenance of tissue perfusion over the points of contact by measuring transcutaneous oxygen and carbon dioxide (tcPO2, tcPCO2). DESIGN: Comparative analysis of 2 APAMs with a 2-parameter continuous time-based method for quantifying pressure relief (PR) and transcutaneous gas measurement for assessing tissue perfusion. SETTING: Rehabilitation research facility in a university hospital. PARTICIPANTS: Eleven able-bodied adult postgraduate student volunteers. MAIN OUTCOME MEASURES: Two full-replacement APAM systems were used. For each mattress the mean maximum and minimum interface pressures; mean peak air pressures in the mattresses; interface pressure durations below 30, 20, and 10 mmHg over a 60-minute period; mean maximum tcPCO2 and minimum tcPO2; and mean area under the tcPO2 and tcPCO2 curves were measured for each subject. RESULTS: IP on the sacrum was held below thresholds of 30, 20, and 10 mmHg longer on a 2-cell, low pressure system than on a 3-cell, high pressure system (p < .001). Integrated over time, tcPO2 levels also indicated that the 2-cell system retained oxygen levels closer to the unloaded baseline than did the 3-cell system (p < .01). tcPCO2 levels did not rise significantly (p > 0.1) compared with the baseline measurement in both mattresses. CONCLUSIONS: PR was sensitive to the design of the APAM, especially its inflation pressure, cycle time, and inflation sequence. If future trials demonstrate that PR values and transcutaneous blood gas measurements correlate significantly with the clinical incidence of pressure sore formation, then this technique may prove useful in assessing the effectiveness of alternating pressure support surfaces.

Adult↗

[New aspects in evaluating the hypertensive patient: measuring blood pressure in the physician's office--ambulatory blood pressure monitoring--blood pressure self-measurement].

The "average" blood pressure of hypertensives, which is held responsible for the adverse effects of hypertension is poorly reflected by causal readings (CR), which are taken as a surrogate. CR do not only differ from average blood pressures, but also fail to give information on blood pressure variability. According to white coat effect and blood pressure variability a satisfying classification of severity and consecutively of prognosis cannot be done in an individual. Furthermore CR fail to inform us sufficiently about therapeutic effects in single patients. To improve we have to change to blood pressure judgements which are based on many instead of occasional readings. Ambulatory blood pressure monitoring (ABM) is a possibility to overcome this weakness. Compared to casual readings the average of the ambulatory readings is higher reproducible and does not depend on placebo treatment. In spite of this advantage a general substitution of CR by ABM is impossible because the number of equipment available is too small, nobody wants to cover the costs, the procedure is inconvenient, and up till now we miss guidelines how to proceed in the daily routine. Blood pressure self-monitoring is an additional way to improve the weakness of CR. The amount of blood pressure readings needed for a satisfying judgement of blood pressure are taken and registered by the patients. The self recorded data can be used as a valuable data base to calculate average blood pressure and blood pressure variability and drug effects. Mean values of twice daily recordings of a month are highly reproducible and do highly correlate to average ABM recordings of the day.

Antihypertensive Agents↗

[Doctor's-office blood pressure, home blood pressure, ergometry blood pressure and 24-hour blood pressure. The correlations with the echocardiographic parameters of heart muscle mass].

In 62 untreated hypertensives (31 men, 31 women; median age 40 [17-57] years) blood pressures (BP) were measured in the doctor's office, at home (self-measured) and every 15 min during 24-hour monitoring (by portable automated oscillometry), the results being compared with echocardiographic measurements of ventricular septal thickness (VST), left ventricular muscle mass (LVM) and left ventricular mass index (LVMI), in 41 of them also during and 5 min after 100 W bicycle ergometry. In the total cohort, 24-hour values correlated better with diastolic VST (systolic: r = 0.706, P less than 0.00001; diastolic: r = 0.507, P less than 0.0001) than office BP (systolic: r = 0.381, P less than 0.01; diastolic: r = 0.177, not significant) and home BP (systolic: r = 0.477, P less than 0.0001; diastolic: r = 0.371, P less than 0.05). In the 41 exercised hypertensives the correlation with echocardiographic values was less close than with their 24-hour BP, but slightly better than with office and home BP. Systolic BP correlated better than diastolic BP with echocardiographic values. VST generally correlated better with BP than LVM and LVMI. It is concluded that (1) 24-hour BP values correlate more closely with LVM than any other noninvasive BP measurement; (2) VST is affected more by systolic than diastolic BP; and (3) VST more specifically reflects the influence of BP on myocardial structure than does LVM and LVMI.

Adolescent↗

Noninvasive ambulatory 24-hour blood pressure in patients with high normal blood pressure and exaggerated systolic pressure response to exercise.

Few studies have investigated the significance of abnormal increases in systolic pressure during exercise in patients with high normal blood pressure and its correlation with 24-hour ambulatory blood pressure monitoring and left ventricular structure. This study was performed in 30 sedentary subjects (42 +/- 4 years old) with high normal blood pressure. Fifteen subjects presenting < 220 mm Hg systolic pressure during ergometric exercise were compared with 15 others with systolic pressure > or = 220 mm Hg. Average 24-hour (systolic, 127 +/- 5 versus 142 +/- 4 mm Hg, P < .01; diastolic, 82 +/- 4 versus 92 +/- 3 mm Hg, P < .01), daytime (systolic, 130 +/- 6 versus 144 +/- 4 mm Hg, P < .01; diastolic, 84 +/- 4 versus 92 +/- 4 mm Hg, P < .01), and nighttime (systolic, 116 +/- 7 versus 132 +/- 6 mm Hg, P < .01; diastolic, 72 +/- 6 versus 85 +/- 6 mm Hg, P < .01) ambulatory blood pressure monitoring values were significantly higher in subjects with an exaggerated blood pressure response to exercise. No significant differences were observed in left ventricular morphology. These findings indicate that subjects presenting high normal blood pressure and exaggerated systolic pressure during exercise show significantly high ambulatory blood pressure monitoring values that are not associated with left ventricular hypertrophy.

Adult↗

Influences of pressure surrounding the heart and intracardiac pressure on the diastolic coronary pressure-flow relation in excised canine heart.

We investigated the change in the instantaneous diastolic left coronary pressure-flow relation (DPFR) when the pressure surrounding the heart (SHP), right heart pressure (RHP), and left heart pressure (LHP) were systematically varied. Eight excised and maximally vasodilated canine hearts placed in an air-tight chamber were used. To obtain a capacitance-free DPFR, coronary perfusion pressure was slowly decreased (about 2 mm Hg/sec) during a prolonged diastole. The zero-flow pressure (Pf = 0) and the slope of the DPFR were analyzed. The mean values of the slope did not change significantly throughout the interventions. The mean value of Pf = 0 in the control state (SHP = RHP = LHP = 0 mm Hg) was 6.0 +/- 2.0 mm Hg (mean +/- SD, n = 8), significantly higher than the venous outflow pressure, RHP (p less than 0.001), and the other two pressures (p less than 0.001). When SHP was raised to 15 and 30 mm Hg, while the other pressures remained at 0 mm Hg, the mean values of Pf = 0 increased to 20.9 +/- 2.4 and 35.6 +/- 3.1 mm Hg (p less than 0.001 and p less than 0.0005, respectively, vs. control). The mean values of Pf = 0 when only RHP was elevated to 15 and 30 mm Hg were 16.0 +/- 1.5 and 29.3 +/- 1.5 mm Hg (p less than 0.001 and p less than 0.0005 vs. control). On elevation of LHP to 15 and 30 mm Hg, the mean values of Pf = 0 were 12.0 +/- 2.8 and 17.3 +/- 3.6 mm Hg (p less than 0.01 and p less than 0.01 vs. control). When both SHP and LHP were almost evenly elevated to about 15 and 30 mm Hg, the mean values of Pf = 0 were raised to 22.0 +/- 2.9 and 35.3 +/- 3.2 mm Hg, respectively. These mean values were not significantly different from those when only SHP was elevated to the comparable levels. The observation that Pf = 0 exceeded RHP in the control state and that RHP, which was elevated above the preceding Pf = 0, was identical with the present Pf = 0 supports the vascular waterfall mechanism when RHP is low. Furthermore, the evidence that the degree of DPFR shift was almost linearly dependent on the SHP level rather than on the LHP level indicates that the pressure on the epicardial side is one of the factors that determines the pressure at the top of the vascular waterfall.

Animals↗

Central venous and bladder pressure reflect transdiaphragmatic pressure during pressure support ventilation.

STUDY OBJECTIVES: To determine whether the change in bladder pressure (Pblad) and central venous pressure (Pcvp) may reflect the changes in esophageal pressure (Pes) and gastric pressure (Pgas) when inspiratory pressure support (IPS) is altered. DESIGN: Prospective clinical study. SETTING: The ICUs of a teaching hospital. PATIENTS: Ten patients currently receiving IPS ventilation via a tracheostomy or an endotracheal tube who already had bladder and central venous catheters in situ. MEASUREMENTS AND RESULTS: Airway pressure, Pes, Pgas, Pcvp, Pblad, and flow were measured at the original IPS setting. IPS then was reduced by 5-cm H(2)O increments until IPS was zero or was at the minimum pressure that could be tolerated by each patient. At each level of IPS, pressures and flow were measured at steady-state breathing. The maximum pressure difference for each pressure during inspiration was calculated. We found that the Delta Pblad correlated closely with the Delta Pgas (r = 0.904) and that the Delta Pes correlated with the Delta Pcvp (r = 0.951). When the Delta Pcvp - Delta Pblad was compared with the transdiaphragmatic pressure for each patient as the IPS was altered, the correlation coefficients varied from 0.952 to 0.999. CONCLUSION: Although absolute values for the Delta Pcvp during mechanical ventilation do not always reflect the Delta Pes, useful information can be obtained from this route. In individual patients, the two sites of measurement followed each other when IPS was changed, enabling a bedside assessment of the response to reducing respiratory support.

Adult↗

Interstitial fluid pressure in the facial nerve: relationship between facial nerve pressure and cerebrospinal fluid pressure.

The possibility of measuring interstitial pressure in the facial nerve using a servo-nulling system was investigated. As a pilot study, interstitial fluid pressure in the extirpated medulla oblongata was measured using this system, and was found to be proportional to the pressure applied to the surrounding tissue block. Interstitial fluid pressure of the facial nerve in guinea pigs was also measurable with this system. The pressure in the facial nerve fluctuated with respiration and/or heart beat, as did CSF pressure. Respiratory fluctuations in facial nerve and CSF pressures ceased when the respirator was stopped. Facial nerve pressure appeared to be closely related to CSF pressure; the injection of saline into the CSF space resulted in an increase in facial nerve pressure. Measurement of facial nerve pressure by a servo-nulling system should be useful in evaluating the pathogenesis underlying facial palsy.

Animals↗

Capillary pressure, pulse pressure amplitude, and pressure waveform in healthy volunteers.

The influence of gender, local temperature, and systemic blood pressure on human capillary pressure is unknown. Finger nail fold capillary pressure was therefore directly measured in 74 healthy supine volunteers (40 female) at midaxillary level. Capillary pressure was lower in women than in men (15.9 +/- 3.0 vs. 18.2 +/- 2.3 mmHg; P = 0.001), particularly in premenopausal women, but was not related to systolic, diastolic, or mean blood pressure. Capillary pulse pressure amplitude was related to skin temperature, an effect more marked in women (P = 0.003). There was a significant association between skin temperature and the time taken for the systolic pressure rise to reach the capillary, in women only (r = -0.69, P < 0.001). Increasing age reduced the high-frequency waves in the pressure waveform [2nd harmonic percentage of fundamental: r = -0.52 and P = 0.002 (women), r = -0.52 and P = 0.004 (men)]. Thus mean capillary pressure and the pressure waveform may be influenced by gender, age, and skin temperature, illustrating the necessity to adequately match control groups during assessments of capillary pressure pathophysiology.

Adult↗

Effect of gammahydroxybutyrate on intracranial pressure, mean systemic arterial pressure and cerebral perfusion pressure in experimentally induced brain oedema of the rat.

The effect of gammahydroxybutyrate (GHB) on ICP, systemic arterial pressure and cerebral perfusion pressure in the experimentally induced brain oedema of the rat was examined. 400 mg/kg GHB reduced significantly ICP (11.74 +/- 1.20 mm Hg; control: 16.20 +/- 8.89 mm Hg; p less than 0.01) while increasing mean systemic arterial pressure (109.89 +/- 6.35 mm Hg; control: 89.65 +/- 4.22 mm Hg; p less than 0.05) and cerebral perfusion pressure (98.11 +/- 6.79 mm Hg; control: 73.84 +/- 5.25 mm Hg; p less than 0.02). In the dose-effect curve 200 mg/kg GHB show an increase in mean systemic arterial pressure from 89.60 +/- 9.35 mm Hg to 97.60 +/- 3.48 mm Hg (p less than 0.02) and 400 mg/kg GHB to 108.00 +/- 5.20 mm Hg (p less than 0.001) mean systemic arterial pressure. Thus, the decrease in intracranial pressure is not due to a reduction in the mean systemic arterial pressure, but GHB does reduce the ICP while increasing mean systemic arterial pressure and cerebral perfusion pressure. GHB may be a useful adjunct to neurosurgical therapy in controlling elevated ICP.

Animals↗

Positive end-expiratory pressure increases capillary pressure relative to wedge pressure in the closed and open chest.

The pulmonary arterial wedge pressure is used as a measure of left atrial pressure and frequently as an estimate of pulmonary capillary pressure. The arterial occlusion concept has recently been used to derive a pressure that is thought to be more representative of capillary pressure (Pcap) than wedge pressure (Pw). The object of this study was to measure the arterial occlusion Pcap at different positive end-expiratory pressure (PEEP) levels and to compare it with Pw. Anesthetized, paralyzed, supine, and mechanically ventilated dogs were instrumented with a Swan-Ganz balloon tip catheter (7F) for monitoring pulmonary arterial pressure (Pa), for measuring cardiac output (CO; thermodilution technique), and for performing the arterial occlusions. The postocclusion tracings were analyzed for Pcap in a conventional manner: exponential fitting of the data during the 2 seconds immediately postocclusion and back extrapolating to the instant of occlusion. Instant of occlusion was defined as the time when the Pa tracing began to deviate from the normal tracing. Pw was averaged from the data between 8 to 10 seconds after the occlusion. Increasing PEEP between 0 to 15 mm Hg caused a gradual decline in cardiac output in the closed and open chest conditions. Despite this decline, all three pressures (Pa, Pcap, and Pw) rose gradually in the closed chest. However, in the open chest, increasing PEEP from 0 to 4.7 mm Hg had no effect on the pressures, but between 4.7 and 13.4 mm Hg of PEEP, Pa and Pcap increased markedly with minimal change in Pw.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Pulse pressure is more susceptible to the white coat effect than is systolic blood pressure: observations from real-life ambulatory blood pressure monitoring.

BACKGROUND: Pulse pressure is a derivative of arterial stiffness. We have previously demonstrated ambulatory pulse pressure to be relatively independent from the blood pressure (BP) lowering during sleep, and thus of a neurogenic effect. On the other hand, white coat BP effects are thought to involve neurogenic activation. The aim of this work was to analyze white coat induced variability in pulse pressure. METHODS: Percent clinic-awake differences in systolic BP (SBP) and pulse pressure (white coat effects) were calculated for 688 consecutive subjects (mean age 60 +/- 16 years, 58% female). Of the subjects, 23% had controlled hypertension, 45% uncontrolled hypertension, 8% normotension, and 4% isolated office hypertension; all were referred to our unit for 24 h ambulatory BP monitoring. RESULTS: Pulse pressure highly correlated with SBP (r = 0.82, P <.00001). We found a larger white coat effect on pulse pressure than on SBP (8.3% and 5.2%, respectively, P < or =.0001). This was true in all subgroups except in normotensive subjects. Specifically, the magnitude of the white coat effect on pulse pressure was greater than on SBP in subjects with treated hypertension, untreated hypertension, and isolated office hypertension, and in young hypertensive subjects, older subjects, and those with diabetes. CONCLUSIONS: Although pulse pressure is related to the mechanical properties of large arteries, it is also influenced by the white coat effect, a neurogenic process. Furthermore, in hypertensive but not in normotensive subjects, the white coat effect on pulse pressure is significantly more pronounced than on SBP.

Adult↗

Skin perfusion pressure measured by isotope washout in legs with arterial occlusive disease. Evaluation of different tracers, comparison to segmental systolic pressure, angiography and transcutaneous oxygen tension and variations during changes in systemic blood pressure.

The skin perfusion pressure (SPP) measured as the isotope washout cessation external pressure is valuable in selection of major amputation level. Five methodological investigations important to clinical use were carried out: (1) In five normal legs and 10 legs with arterial occlusive disease (AOD), 131I- -antipyrine (131I- -a.p.) was compared to Na(131I-) and 99Tcm-pertechnetate (99Tcm). The average SPP by 131I- -a.p. and by 131I- were approximately equal, 57.0 mmHg (range 18-93) compared to 56.3 mmHg (range 13-88) (P greater than 0.1). The average SPP by 99Tcm was just slightly higher, 60.3 mmHg (range 18-98) (P less than 0.02). The average washout constant for the three different tracers were approximately equal and correlated statistically significant with the SPP; (2) In 59 legs with AOD, segmental SPP was compared to segmental systolic blood pressures on the thigh, calf, ankle and first digit (strain gauge technique). The two different methods correlated statistically significant at all four levels, but the systolic blood pressures were higher than the SPP in particular in diabetic legs; (3) Angiograms in 35 legs with AOD showed that the SPP on the ankle was only consistently decreased in legs with arterial occlusions at two levels or more; (4) In 47 legs with AOD, the SPP on the calf or on the thigh was compared with transcutaneously measured pO2. The two different methods correlated statistically significant, but the scatter was great; (5) During induced variations in systemic blood pressure in seven patients (12 legs with AOD), the segmental SPP and the segmental systolic blood pressure were found on average to vary in proportion with intra-arterial mean and systolic pressure respectively; however, this proportional relationship was not valid for the individual leg. It is concluded that 99Tcm is as suitable as the 131I- -labelled tracers in estimating the SPP. The SPP is significantly correlated to skin blood flow, to systolic blood pressure, to tc pO2 and to angiographic findings. Correction of SPP for systemic blood pressure changes can be made in proportion with the measured variations in systemic mean blood pressure, but only for groups of patients.

Angiography↗

Blood pressure in the neonate: three non-invasive oscillometric pressure monitors compared with invasively measured blood pressure.

AIM: To compare blood pressure in neonates obtained from three different oscillometer blood pressure monitors (Dinamap, Criticare, Hewlett-Packard) with arterial blood pressure (Hewlett-Packard' invasive unit). STUDY DESIGN: A total of 32 randomized, non-invasive blood pressure series, each consisting of three measurements from each monitor, were obtained from 20 neonates (birthweight 531-4660 g). Each measurement was compared with the invasive pressure. RESULTS: Two factors appear to have a systematic effect on the difference between oscillometric and invasive pressure (the measurement deviance): the size of the infant, e.g., the arm circumference, and the monitor system. For small infants, the non-invasively measured value tends to be too high. The deviance is partly reversed for larger infants (dependency on size significant for mean and diastolic pressure, p < 0.001). The difference between monitor systems is clearly significant (p < 0.001). Hewlett-Packard gives the lowest pressure values for all pressures. Thus, Criticare and Dinamap tended to show values too high in the smallest infants, while Hewlett-Packard tended to give values too low in larger infants. Birthweight, present weight and arm circumference affected measurement deviance approximately equally strongly, while factors such as the infant's sex, need of breath support and umbilical or radial arterial line were non-significant. CONCLUSIONS: Blood pressure should preferably be measured invasively in severely ill neonates and preterm infants, being aware of pitfalls with measurements using different oscillometer monitors and the size/arm circumference of the infant.

Blood Pressure↗

Blood pressure reactivity does not correlate with baseline blood pressure or blood pressure change over time in preschool children.

Few studies have examined the relation of blood pressure reactivity to subsequent change in blood pressure of preschool children. The authors investigated relations between measurement-induced reactivity, exercise reactivity, and change in blood pressure over 16 months among 140 preschool children (46-67 months of age at baseline, 50.7% female, 92.9% Hispanic). Within-session measurement-induced reactivity was defined as the change in blood pressure between the first and the mean of the fourth and fifth readings obtained at each of 11 sessions. Between-session measurement-induced reactivity was defined as the change between mean blood pressure at session 1 and the mean of sessions 2 and 3. Both indices of measurement reactivity displayed poor reproducibility. Exercise reactivity was measured using a treadmill on two occasions and was moderately reproducible. There was no association between measurement and exercise reactivity. The change in systolic blood pressure over time was not associated with any measure of reactivity. The mean diastolic blood pressure did not change over the study period. Neither blood pressure reactivity to measurement nor blood pressure reactivity to exercise appeared to be a useful predictor of change in blood pressure in preschool children during a 16-month period.

Blood Pressure↗

Effect of right ventricular pressure on the end-diastolic left ventricular pressure-volume relationship before and after chronic right ventricular pressure overload in dogs without pericardia.

We studied the effect of chronic right ventricular pressure overload on diastolic ventricular interdependence in dogs without pericardia, instrumented to measure left ventricular pressure, right ventricular pressure, and 3 left ventricular dimensions. We studied 12 dogs before (control) and nine dogs after 6 weeks of pulmonary artery constriction producing systolic right ventricular pressure greater than or equal to 70 mm Hg. Compared to control, following pulmonary artery band there was greater (P less than 0.01) interventricular septal mass (53 +/- 15 vs. 35 +/- 7 mg, mean +/- SD), thickness (15 +/- 2 vs. 10 +/- 1 mm), and ratio of the surface area of the interventricular septal to total left ventricular surface area (0.38 +/- 0.03 vs. 0.33 +/- 0.02), but unchanged left ventricular free wall mass (81 +/- 12 vs. 84 +/- 14 mg) and thickness (11 +/- 2 vs. 11 +/- 2 mm). End-diastolic right and left ventricular pressures and left ventricular volume were varied by vena cava and pulmonary artery occlusions and releases. Volume was calculated as an ellipsoid and the data in each dog fit to: left ventricular pressure = a0 + a1V + a2V2 + a3V3 + a4V4 + bPRV, r greater than or equal to 0.91 in each dog. During control, b was similar, whether calculated from both pulmonary artery and vena cava occlusions (0.47 +/- 0.09) or from vena cava occlusions alone (0.43 +/- 0.11), and was greater than the ratio of the interventricular septal surface area to left ventricular surface area (0.33 +/- 0.02, P less than 0.05). Following the pulmonary artery band, b decreased to 0.21 +/- 0.10 (P less than 0.05) and was less than the ratio of interventricular septal surface area to the left ventricular surface area which increased to 0.38 +/- 0.03 (P less than 0.05). We conclude that the effect of alterations in right ventricular pressure on the end-diastolic left ventricular pressure volume relationship, independent of the pericardium, is reduced following the pulmonary artery band that produces interventricular septal hypertrophy. These results are consistent with the hypothesis that the effect of alterations of right ventricular pressure on the diastolic left ventricular pressure-volume relationship depends on the relative elastance of the interventricular septum and left ventricular free wall, and not simply on the ratio of the interventricular septal surface area to the left ventricular surface area.

Animals↗