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July 1, 1986Diabetes Care103 citations

Decreased Exercise Heart Rate and Blood Pressure Response in Diabetic Subjects With Cardiac Autonomic Neuropathy

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JKJoel K. KahnBZBenjamin ZolaJJJack E. Juni

Key Points

  • To evaluate the impact of cardiac autonomic neuropathy on heart rate and blood pressure responses during maximal treadmill exercise in patients with long-term insulin-dependent diabetes.
  • Evaluated 30 patients with long-term insulin-dependent diabetes without clinical heart disease, after excluding 2 patients with occult ischemia identified on stress electrocardiography and myocardial-perfusion scintigraphy.

Structured PICO

Does cardiac autonomic neuropathy alter the hemodynamic response to maximal exercise in patients with insulin-dependent diabetes?

P
Population
30 subjects with long-term insulin-dependent diabetes without clinical evidence of cardiac disease (after excluding 2 with occult ischemic heart disease)
I
Intervention
Presence of cardiac autonomic neuropathy diagnosed by noninvasive maneuvers (n=17)
C
Comparator
Absence of cardiac autonomic neuropathy (n=13)
O
Outcome
Hemodynamic responses to maximal treadmill exercise (increase in heart rate, systolic blood pressure, and pressure-rate product)surrogate

Cardiac autonomic neuropathy in diabetic patients is associated with blunted heart rate and blood pressure responses to maximal exercise, independent of age or microvascular disease.

Abstract

Abnormal hemodynamic responses to exercise have been observed in diabetic subjects, but the pathogenesis and significance remain uncertain. We used maximal treadmill exercise to study 32 subjects with long-term insulin-dependent diabetes without clinical evidence of cardiac disease. Two of the 32 had occult ischemic heart disease revealed by stress electrocardiography and myocardial-perfusion scintigraphy and were excluded from subsequent analysis. In the remaining 30 subjects, we compared the responses to exercise of the 17 subjects with cardiac autonomic neuropathy diagnosed by noninvasive maneuvers (group 1) with the 13 without (group 2). At rest, the pressure-rate product (PRP) was higher in group 1 (114.0 +/- 5.7 vs. 95.9 +/- 5.3, P less than .05). With maximal exercise the increase in heart rate (44.6 +/- 4.8 vs. 79.0 +/- 5.4 beats/min, P less than .001), systolic blood pressure (36.8 +/- 5.9 vs. 55.0 +/- 5.8 mmHg, P = .02), and the PRP (102.0 +/- 7.3 vs. 182.0 +/- 8.2, P less than .001) were all lower in group 1 than in group 2, despite similar total treadmill times (631 +/- 47 vs. 587 +/- 40 s, P greater than .1). At each stage of exercise, the increase in heart rate and systolic blood pressure was lower in group 1 patients. The severity of cardiac autonomic neuropathy correlated inversely with the maximal increase in heart rate (r = -.68, P less than .001) and the PRP (r = -.58, P less than .005). Age, duration of diabetes, and the presence and severity of microvascular disease did not correlate with any of the hemodynamic parameters.(ABSTRACT TRUNCATED AT 250 WORDS)

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Cite This Study

Kahn et al. (1986) studied this question.

synapsesocial.com/papers/6a1d662b1024216094054e63https://doi.org/10.2337/diacare.9.4.389
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Impaired Cardiovascular Responses to Graded Exercise in Diabetic Autonomic Neuropathy1979 · 97 citations
  2. 2Influence of Complications of Diabetes Mellitus on Exercise Tolerance of Patients with Heart Failure: Focusing on autonomic nervous activity and heart rate response during cardiopulmonary exercise tests2019 · 8 citations
  3. 3Impaired Responses of Catecholamines, Growth Hormone, and Cortisol to Graded Exercise in Diabetic Autonomic Neuropathy1980 · 62 citations
  4. 4Haemodynamic and hormonal responses to exercise: Studies in patients with diabetes mellitus and adrenomedullary deficiency1986 · 4 citations
  5. 5Ambulatory Blood Pressure and Heart Rate in Diabetic Patients: an Assessment of Autonomic Function1989 · 73 citations