Clinical and cardiovascular features of Parkinson's disease with Autonomic Failure (orthostatic hypotension)

1993 ◽  
Vol 43 ◽  
pp. 70-71
Author(s):  
M. De Marinis ◽  
K. Bleasdale ◽  
C.J. Mathias
2019 ◽  
pp. 233-236
Author(s):  
Peter Novak

Autonomic failure manifesting as neurogenic orthostatic hypotension and supine hypertension are common manifestations of cardiovascular dysautonomia in Parkinson’s disease. Depending on the cerebral blood flow, neurogenic orthostatic hypotension can be either compensated (with stable orthostatic cerebral blood flow) and noncompensated (with reduced flow).


2011 ◽  
Vol 111 (2) ◽  
pp. 443-448 ◽  
Author(s):  
J. T. Groothuis ◽  
R. A. J. Esselink ◽  
J. P. H. Seeger ◽  
M. J. H. van Aalst ◽  
M. T. E. Hopman ◽  
...  

The pathophysiology of orthostatic hypotension in Parkinson's disease (PD) is incompletely understood. The primary focus has thus far been on failure of the baroreflex, a central mediated vasoconstrictor mechanism. Here, we test the role of two other possible factors: 1) a reduced peripheral vasoconstriction (which may contribute because PD includes a generalized sympathetic denervation); and 2) an inadequate plasma volume (which may explain why plasma volume expansion can manage orthostatic hypotension in PD). We included 11 PD patients with orthostatic hypotension (PD + OH), 14 PD patients without orthostatic hypotension (PD − OH), and 15 age-matched healthy controls. Leg blood flow was examined using duplex ultrasound during 60° head-up tilt. Leg vascular resistance was calculated as the arterial-venous pressure gradient divided by blood flow. In a subset of 9 PD + OH, 9 PD − OH, and 8 controls, plasma volume was determined by indicator dilution method with radiolabeled albumin (125I-HSA). The basal leg vascular resistance was significantly lower in PD + OH (0.7 ± 0.3 mmHg·ml−1·min) compared with PD − OH (1.3 ± 0.6 mmHg·ml−1·min, P < 0.01) and controls (1.3 ± 0.5 mmHg·ml−1·min, P < 0.01). Leg vascular resistance increased significantly during 60° head-up tilt with no significant difference between the groups. Plasma volume was significantly larger in PD + OH (3,869 ± 265 ml) compared with PD − OH (3,123 ± 377 ml, P < 0.01) and controls (3,204 ± 537 ml, P < 0.01). These results indicate that PD + OH have a lower basal leg vascular resistance in combination with a larger plasma volume compared with PD − OH and controls. Despite the increase in leg vascular resistance during 60° head-up tilt, PD + OH are unable to maintain their blood pressure.


2012 ◽  
Vol 18 ◽  
pp. S136
Author(s):  
S. Perez-Lloret ◽  
M.V. Rey ◽  
N. Fabre ◽  
F. Ory ◽  
U. Spampinato, ◽  
...  

2014 ◽  
Vol 72 (3) ◽  
pp. 208-213
Author(s):  
Guillermo Delgado ◽  
Bruno Estañol ◽  
Mayela Rodríguez-Violante ◽  
Jesús Antonio González-Hermosillo ◽  
Óscar Infante-Vázquez

While the circulatory response to orthostatic stress has been already evaluated in Parkinson's disease patients without typical orthostatic hypotension (PD-TOH), there is an initial response to the upright position which is uniquely associated with active standing (AS). We sought to assess this response and to compare it to that seen in young healthy controls (YHC). Method In 10 PD-TOH patients (8 males, 60±7 years, Hoehn and Yahr ≤3) the changes in systolic blood pressure (SBP) and heart rate that occur in the first 30 seconds (sec) of standing were examined. Both parameters were non-invasively and continuously monitored using the volume-clamp method by Peñáz and the Physiocal criteria by Wesseling. The choice of sample points was prompted by the results of previous studies. These sample points were compared to those of 10 YHC (8 males, 32±8 years). Results The main finding of the present investigation was an increased time between the AS onset and SBP overshoot in PD-TOH group (24±4 vs. 19±3 sec; p<0.05). Conclusion This delay might reflect a prolonged latency in the baroreflex-mediated vascular resistance response, but more studies are needed to confirm this preliminary hypothesis.


2011 ◽  
Vol 4 (1) ◽  
pp. 33-37 ◽  
Author(s):  
Hyo-Jin Bae ◽  
Sang-Myung Cheon ◽  
Jae Woo Kim

2021 ◽  
pp. 119-146
Author(s):  
Fabian Leys ◽  
Gregor K. Wenning ◽  
Alessandra Fanciulli

2013 ◽  
pp. 548-562
Author(s):  
Pietro Cortelli ◽  
Christopher J. Mathias

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