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Autonomic dysfunction in Parkinson's disease, tested with a computerized method using a Finapres device.

Abstract

An automated program using a Finapres device and a personal computer, using a battery of five cardiovascular reflex tests has been developed. This has been used to study cardiovascular autonomic dysfunction in 23 ambulant patients with Parkinson's disease, without disabling fluctuations, and 23 age-matched healthy controls, as a screening method to detect autonomic dysfunction. In one patient only a Finapres signal of insufficient quality due to the tremor excluded subsequent analysis. Heart rate response to forced breathing was abnormal (below the fifth percentile of 124 normals) in six (26.1%) of parkinsonian patients and in one (4.3%) healthy age- and sex-matched control, to standing up four (17.4%) versus none, and to the Valsalva manoeuvre seven (30.4%) versus two (8.7%) respectively. The blood pressure response to standing up was abnormal in two (8.7%) parkinsonian patients and in none of the controls, while the response to sustained handgrip was abnormal in five (21.7%) patients versus one (4.3%) control. Autonomic dysfunction is commonly defined as an abnormal score on two or more of the five tests. Using this arbitrary definition, five patients with Parkinson's disease (= 23%) had cardiovascular autonomic dysfunction, and none of the controls were abnormal.

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BibTeXRIS

P M Netten, K de Vos, M W Horstink, W H Hoefnagels. 1995. Autonomic dysfunction in Parkinson's disease, tested with a computerized method using a Finapres device.. https://doi.org/10.1007/bf01827468

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Cardiovascular and cerebrovascular responses to lower body negative pressure in type 2 diabetic patients.

In diabetic patients, vascular disease and autonomic dysfunction might compromise cerebral autoregulation and contribute to orthostatic intolerance. The aim of our study was to determine whether impaired cerebral autoregulation contributes to orthostatic intolerance during lower body negative pressure in diabetic patients. Thirteen patients with early-stage type 2 diabetes were studied. We continuously recorded RR-interval, mean blood pressure and mean middle cerebral artery blood flow velocity at rest and during lower body negative pressure applied at -20 and -40 mm Hg. Spectral powers of RR-interval, blood pressure and cerebral blood flow velocity were analyzed in the sympathetically mediated low (LF: 0.04-0.15 Hz) and the high (HF: 0.15-0.5 Hz) frequency ranges. Cerebral autoregulation was assessed from the transfer function gain and phase shift between LF oscillations of blood pressure and cerebral blood flow velocity. In the diabetic patients, lower body negative pressure decreased the RR-interval, i.e. increased heart rate, while blood pressure and cerebral blood flow velocity decreased. Transfer function gain and phase shift remained stable. Lower body negative pressure did not induce the normal increase in sympathetically mediated LF-powers of blood pressure and cerebral blood flow velocity in our patients indicating sympathetic dysfunction. The stable phase shift, however, suggests intact cerebral autoregulation. The dying back pathology in diabetic neuropathy may explain an earlier and greater impairment of peripheral vasomotor than cerebrovascular control, thus maintaining cerebral blood flow constant and protecting patients from symptoms of presyncope.

Autonomic Nervous System Diseases↗