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R L Goldsmith

Publications and source records attributed to R L Goldsmith.

12 recordsLinked to original sources

Exercise and autonomic function in health and cardiovascular disease.

Autonomic nervous system activity contributes to the regulation of cardiac output during rest, exercise, and cardiovascular disease. Measurement of HRV has been particularly useful in assessing parasympathetic activity, while its utility for assessing sympathetic function and overall sympathovagal balance remains controversial. Studies have revealed that parasympathetic tone dominates the resting state, while exercise is associated with prompt withdrawal of vagal tone and subsequent sympathetic activation. Conversely, recovery is characterized by parasympathetic activation followed by sympathetic withdrawal, although clarification of the normal trajectory and autonomic basis of heart rate decay following exercise is needed. Abnormalities in autonomic physiology--especially increased sympathetic activity, attenuated vagal tone, and delayed heart rate recovery--have been associated with increased mortality. Exercise training is associated with a relative enhancement of vagal tone, improved heart rate recovery after exercise, and reduced morbidity in patients with cardiovascular disease. However, whether exercise training leads to reduced mortality in this population because of its ability to specifically modulate autonomic function is unknown at the present time. Although the results of a recent randomized study in patients with CHF and a meta-analysis in the setting of a recent myocardial infarction determined that exercise training leads to improved outcomes in these populations, neither study measured autonomic function. Improved autonomic function due to exercise training is a promising rationale for explaining improvements in outcome, although more research is needed to confirm this hypothesis.

Autonomic Nervous System↗

Exercise and autonomic function.

The complex interplay between the dichotomous subdivisions of the autonomic nervous system establishes and maintains a delicately tuned homeostasis in spite of an ever-changing environment. Aerobic exercise training can increase activity of the parasympathetic nervous system and decrease sympathetic activity. Conversely, it is well-documented that cardiac disease is often characterized by attenuated parasympathetic activity and heightened sympathetic tone. A correlation between autonomic disequilibrium and disease has led to the hypothesis that exercise training, as a therapy that restores the autonomic nervous system towards normal function, may be associated with, and possibly responsible for, outcome improvements in various populations. This is merely one of the many benefits that is conferred by chronic exercise training and reviewed in this issue.

Autonomic Nervous System↗

Long-term carvedilol therapy increases parasympathetic nervous system activity in chronic congestive heart failure.

To determine the effect of beta blockade on parasympathetic nervous system activity, we assessed RR variability during 24-hour Holter monitoring in 10 patients with congestive heart failure before and after 3 to 4 months of treatment with the beta blocker carvedilol. High-frequency power increased from 26 to 64 ms2, root-mean-square of successive differences in RR interval increased from 14.3 to 23.7 ms2, and percentage of absolute differences >50 ms between successive normal RR intervals increased from 0.8% to 4.7%, all p <0.01, indicating a substantial increase in parasympathetic modulation of RR intervals.

Adrenergic beta-Antagonists↗

Physical fitness as a determinant of vagal modulation.

The association between increasing age and decreasing vagal modulation is well known. However, the importance of fitness as a determinant of the decline in vagal modulation with age is not established. To test the hypothesis that decreasing vagal modulation is largely a function of declining fitness rather than increasing age, we studied a sample of healthy volunteers with a wide range of fitness levels, but a narrow age range. We assessed fitness by measuring the maximal oxygen uptake (VO2max) achieved during incremental bicycle exercise. Vagal modulation was assessed by calculating high frequency power (0.15-0.40 Hz) of the RR variability power spectrum from 24-h ECG recordings. We studied 37 healthy volunteers who were 22-44 yr old. In our sample, VO2max ranged from 25 to 70 mL.min-1.kg-1 (mean of 45 +/- 13). Age was not significantly related to high frequency power, but VO2max was highly correlated with high frequency power (r = 0.74, P = 0.0001), indicating that physical fitness is strongly associated with vagal modulation. Thus, the decline in vagal modulation often attributed to increasing age may, instead, be the result of a decline in fitness.

Adult↗

Early progressive mobilization of patients with left ventricular assist devices is safe and optimizes recovery before heart transplantation.

BACKGROUND: As early perioperative survival with left ventricular assist device support improves, additional emphasis must be placed on patient rehabilitation. Especially as mean left ventricular assist device support times exceed 100 days, it is essential for health professionals to mobilize patients to prevent the incidence of the deleterious effects of bedrest. The timing of optimal functional performance and the safety of rehabilitation has not been described. METHODS: We retrospectively studied patients surviving left ventricular assist device implantation (34 of 41 patients; 27 men, 7 women; age 51 +/- 11 years). Physical therapy consisted of progressive mobilization leading to treadmill exercise or cycling. All patients exercised in the "pump on full" mode with flows >or= 3.0 L/min. RESULTS: Twenty of thirty-four patients initiated ambulation at 7 to 10 days with independent ambulation by 14 days in 55% of the group. Treadmill exercise was tolerated by 82% of the patients, begun at postoperative day 21 by eighteen patients. The greatest improvement in exercise performance was seen by 6 to 8 weeks (20 to 30 minutes at 3.17 +/- 0.79 metabolic equivalents). Maximal functional capacity achieved was influenced by medical complications. A total of 1878 treatment sessions lasting 1390 hours was performed. Only four minor incidents occurred representing 2.9 incidents/1000 patient hours; all involved a transient decrease in pump flow. None of these events resulted in an increase in morbidity or mortality. CONCLUSIONS: Progressive mobilization in patients with left ventricular assist device is safe. Patients return to independence in activities of daily living and tolerate prolonged workloads of up to 5 metabolic equivalents. There is rapid improvement in functional capacity until 6 weeks after operation. Delay in transplantation until this time may optimize postoperative recovery.

Activities of Daily Living↗

Double-blind, placebo-controlled study of the long-term efficacy of carvedilol in patients with severe chronic heart failure.

BACKGROUND: Clinical trials have shown that beta-adrenergic blocking drugs are effective and well tolerated in patients with mild to moderate heart failure, but the utility and safety of these drugs in patients with advanced disease have not been evaluated. METHODS AND RESULTS: We enrolled 56 patients with severe chronic heart failure into a double-blind, placebo-controlled study of the vasodilating beta-blocker carvedilol. All patients had advanced heart failure, as evidenced by a mean left ventricular ejection fraction of 0.16 +/- 0.01 and a mean maximal oxygen consumption of 13.6 +/- 0.6 mL.kg-1.min-1 despite digitalis, diuretics, and an angiotensin-converting enzyme inhibitor (if tolerated). After a 3-week, open-label, up-titration period, 49 of the 56 patients were assigned (in a double-blind fashion using a 2:1 randomization) to receive either carvedilol (25 mg BID, n = 33) or matching placebo (n = 16) for 14 weeks, while background therapy remained constant. Hemodynamic and functional variables were measured at the start and end of the study. Compared with the placebo group, patients in the carvedilol group showed improved cardiac performance, as reflected by an increase in left ventricular ejection fraction (P = .005) and stroke volume index (P = .010) and a decrease in pulmonary wedge pressure, mean right atrial pressure, and systemic vascular resistance (P = .003, .002, and .017, respectively). In addition, compared with placebo, patients treated with carvedilol benefited clinically, as shown by an improvement in symptom scores (P = .002), functional class (P = .013), and submaximal exercise tolerance (P = .006). The combined risk of death, worsening heart failure, and life-threatening ventricular tachyarrhythmia was lower in the carvedilol group than in the placebo group (P = .028), but carvedilol-treated patients had more dizziness and advanced heart block. CONCLUSIONS: Carvedilol produces clinical and hemodynamic improvement in patients who have severe heart failure despite treatment with angiotensin-converting enzyme inhibitors.

Adrenergic beta-Antagonists↗

Lymphocyte G proteins reflect response to treatment in congestive heart failure.

Congestive heart failure is associated with chronotropic and inotropic hyporesponsiveness to adrenergic stimulation. A decrease in Gs alpha or an increase in Gi alpha is associated with a decrease in adenylyl cyclase activity. The current study assessed G proteins in response to treatment with direct-acting vasodilators and correlated changes in lymphocyte beta-adrenergic receptor components with changes in hemodynamic variables. Twenty-three patients with severe chronic congestive heart failure (New York Heart Association functional classes III and IV) were studied. Patients were grouped as responders (n = 10) or nonresponders (n = 13) on the basis of clinical assessment of functional status from questionnaires. Therapy was associated with an increase in cardiac index, a decrease in mean arterial pressure, and a decrease in systemic vascular resistance in all patients. Left ventricular filling pressure significantly decreased in responders (26 +/- 2 mm to 13 +/- 3 mm, p < 0.05) but did not change significantly in nonresponders. Similarly, mean right atrial pressure significantly decreased in responders (11 +/- 2 mm Hg to 4 +/- 1 mm Hg, p < 0.05) but did not change in nonresponders. Plasma norepinephrine increased significantly only in nonresponders (679 +/- 100 pg/ml to 1233 +/- 201 pg/ml, p < 0.05). Whereas lymphocyte beta-adrenergic receptor density and Gs did not significantly change, Gi increased after treatment only in the nonresponder group (23 +/- 5 to 51 +/- 11 fmol/mg, p < 0.05). A poor response to direct-acting vasodilators can be distinguished by reactive increases in plasma norepinephrine and lymphocyte Gi in the absence of a decrease in either left- or right-sided filling pressures.

Aged↗

Effect of long-term digoxin therapy on autonomic function in patients with chronic heart failure.

OBJECTIVES: This study was conducted to determine the effect of long-term digoxin therapy on autonomic function in patients with mild to moderate chronic heart failure. BACKGROUND: Chronic heart failure is characterized by increased sympathetic activity and decreased parasympathetic activity. Intravenous digitalis has been found to reduce sympathetic activity immediately in these patients, but whether short-term neurohormonal effects are sustained during long-term oral therapy has not been assessed. METHODS: We determined sympathetic activity in 26 patients with heart failure by measuring plasma norepinephrine levels and parasympathetic activity from variables of heart period variability derived from 24-h ambulatory electrocardiographic Holter recordings obtained before and after 4 to 8 weeks of digoxin therapy. RESULTS: After digoxin therapy, plasma norepinephrine decreased significantly from a mean +/- SEM of 552 +/- 80 to 390 +/- 37 ng/ml. In addition, the RR interval increased significantly from 719 +/- 19 to 771 +/- 20 ms. High frequency power increased from 84 +/- 24 to 212 +/- 72 ms2, and the root mean square of successive differences in RR interval increased from 20.3 +/- 1.8 to 27.0 +/- 3.4 ms, indicating a substantial increase in parasympathetic activity. Low frequency power, an index of baroreflex activity, was also significantly increased (239 +/- 80 to 483 +/- 144 ms2) by digoxin therapy. CONCLUSIONS: These results indicate 1) that long-term therapy with digoxin acts to ameliorate the autonomic dysfunction of patients with heart failure, and 2) that the short-term neurohormonal effects of digoxin are sustained during prolonged treatment with the drug.

Autonomic Nervous System↗

Potential of left ventricular assist devices as outpatient therapy while awaiting transplantation.

Left ventricular assist devices (LVADs) increasingly are being used as a bridge to transplantation. We studied changes in New York Heart Association class, mean arterial pressure, resting cardiac output, end-organ function, exercise oxygen consumption, and exercise cardiac output in 12 LVAD recipients. In addition, resting levels of neurohormonal factors were evaluated 4 to 16 weeks after implantation. Two of the 12 patients died of right heart failure and 1 of aspiration; all deaths occurred in the first 2 weeks after LVAD implantation. Of the other 9 patients, 8 improved to New York Heart Association class I and 1 to class II, all of whom were in class IV preoperatively. The 4 patients who underwent exercise testing achieved an exercise oxygen consumption of 15.0 +/- 2.7 mL.kg-1.min-1, which was paralleled by an increase in resting cardiac output from 3.07 +/- 0.9 L.min-1 preoperatively to 5.66 +/- 1.1 L.min-1 at 2 months, and mean arterial pressure from 60 +/- 8 to 91 +/- 10 mm Hg at 2 months, a benefit that was maintained for up to 10 months. End-organ function revealed comparable improvement at 2 months for both creatinine (1.68 +/- 0.7 to 1.0 +/- 0.19 mg.dL-1) and total bilirubin (1.37 +/- 1.17 to 0.54 +/- 0.26 mg.dL-1) levels. Levels of neurohormones were within normal limits. Adverse clinical events after the perioperative period were minimal, and no thromboembolic complications occurred.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Comparison of 24-hour parasympathetic activity in endurance-trained and untrained young men.

OBJECTIVES: This study compares 24-h parasympathetic activity in aerobically trained and untrained healthy young men. BACKGROUND: Higher values of parasympathetic nervous system activity are associated with a low mortality rate in patients after myocardial infarction, but it remains uncertain what therapeutic interventions can be used to increase parasympathetic activity. Although it is thought that exercise training can increase parasympathetic activity, studies have reported conflicting results, perhaps because this variable was measured for only brief intervals and usually inferred from changes in reflex responses induced by pharmacologic blockade. METHODS: Parasympathetic activity was assessed noninvasively from 24-h ECG recordings by calculating high frequency (0.15 to 0.40 Hz) beat to beat heart period variability in eight endurance-trained men (maximal oxygen consumption greater than or equal to 55 ml/kg per min) and eight age-matched (mean = 29 yr) untrained men (maximal oxygen consumption less than or equal to 40 ml/kg per min). The data were analyzed separately for sleeping hours when parasympathetic activity is dominant and also for waking hours. RESULTS: The geometric mean of high frequency power was greater in the trained than in the untrained men during the day (852 vs. 177 ms2, p less than 0.005), during the night (1,874 vs. 427 ms2, p less than 0.005) and over the entire 24 h (1,165 vs. 276 ms2, p less than 0.001). CONCLUSIONS: Parasympathetic activity is substantially greater in trained than in untrained men, and this effect is present during both waking and sleeping hours. These data suggest that exercise training may increase parasympathetic activity over the entire day and may therefore prove to be a useful adjunct or alternative to drug therapy in lessening the derangements of autonomic balance found in many cardiovascular diseases.

Adult↗

A new personal dosimeter for the monitoring of industrial pollutants.

A new passive sampling device (GASBADGE dosimeter) has been developed for personal/ambient monitoring of industrial air pollutants. Compact and convenient to use (no pump, wet chemicals, or length of stain estimation required, etc.), it may be either worn or used for area monitoring. The operating principle is based upon Fick's first law of diffusion. Analysis of the collection element after exposure yields the time-weighted (TWA) exposure concentration. Promising results have been obtained to date in controlled exposures with sulfur dioxide and nitrogen dioxide. Preliminary data also indicate the applicability of the GASBADGE dosimeter to the monitoring of a wide variety of organic vapors.

Air Pollutants↗

Validating facemask use for gas exchange analysis in patients with congestive heart failure.

PURPOSE: Functional limitation, often associated with congestive heart failure (CHF), is most accurately assessed with measurement of peak VO2 (VO2peak) during exercise testing. VO2peak strongly predicts survival in CHF patients and is used to triage patients for cardiac transplantation. However, the traditional mouthpiece/noseclip equipment used for gas exchange analysis is often cumbersome and uncomfortable. Several alternative facemask designs tested previously in healthy cohorts were inferior to the mouthpiece for measuring VO2peak. In this study, a series of facemasks designed specifically for VO2peak testing (Hans-Rudolph) was employed. Although previously validated in healthy young adults, this apparatus has not been validated in patients with severe CHF. METHODS: The Hans-Rudolph facemasks were compared with the mouthpiece apparatus in 30 patients with severe CHF. Each subject completed a cardiopulmonary exercise test with each device. Twelve subjects were randomized to evaluate a possible training effect. To enhance recruitment, 18 additional subjects were recruited after they had completed a test with the mouthpiece. RESULTS: There was no evidence of a training effect and no differences in gas exchange measurements were found between the two devices. The weight-adjusted VO2peak measurements were 17.1 +/- 5.3 ml O2/kg/min for the mouthpiece group and 17.3 +/- 5.6 ml O2/kg/min for the mask group (P = 0.54). CONCLUSIONS: The facemask was shown to be equivalent to the mouthpiece for measuring VO2peak in CHF patients. Concerns of hypoventilation and decreased VO2peak associated with previous facemask designs were not substantiated. Since successful exercise testing depends on maximal exertion, providing a choice of equipment may facilitate cooperation without sacrificing accuracy.

Adult↗