Background: Acute hypertension frequently occurs in acute stroke and is associated with unfavorable outcome. However, despite the high prevalence, the pathophysiology remains unclear. Baroreflex dysfunction has repeatedly been reported in stroke patients. We hypothesize that blood pressure (BP) derangements in the acute phase relate to the impairment of baroreflex. Methods: We assessed baroreflex sensitivity (BRS) in 109 acute stroke patients with both ischemic and hemorrhagic stroke using the sequential cross-correlation method. Admission BP and BP values derived from continuous 72-hour monitoring were recorded. Demographic and clinical data including stroke volumes and admission NIHSS scores were included into the analysis. Results: The BRS significantly correlated with admission BP (r = –0.24, p = 0.01), with the occurrence of acute hypertension (≧220mm Hg/≧ 110 mm Hg) on admission (r = –0.37, p < 0.001) and with the number of episodes with ≧220 mm Hg/≧110 mm Hg in the first 72 h after admission (r = –0.44, p < 0.001). Admission NIHSS or lesion volume did not correlate with acute hypertension on admission or hypertensive episodes within the first 72 h. In a multivariable model, BRS remained a significant, independent predictor for both the occurrence of acute hypertension on admission and hypertensive episodes within the first 72 h. Conclusions: In acute stroke, decreased BRS was independently associated with the occurrence of acute hypertension on admission. In addition, BRS seemed to be a valid predictor of the BP course in the first 72 h. As some antihypertensives may ameliorate BRS, therapeutic relevance of this finding warrants further attention.

1.
Wallace JD, Levy LL: Blood pressure after stroke. JAMA 1981;246:2177–2180.
2.
Leonardi-Bee J, Bath PM, Phillips SJ, Sandercock PA: Blood pressure and clinical outcomes in the International Stroke Trial. Stroke 2002;33:1315–1320.
3.
Sare GM, Ali M, Shuaib A, Bath PM: Relationship between hyperacute blood pressure and outcome after ischemic stroke: data from the VISTA collaboration. Stroke 2009;40:2098–2103.
4.
Yong M, Kaste M: Association of characteristics of blood pressure profiles and stroke outcomes in the ECASS-II trial. Stroke 2008;39:366–372.
5.
Willmot M, Leonardi-Bee J, Bath PM: High blood pressure in acute stroke and subsequent outcome: a systematic review. Hypertension 2004;43:18–24.
6.
Ahmed N, Wahlgren N, Brainin M, Castillo J, Ford GA, Kaste M, Lees KR, Toni D: Relationship of blood pressure, antihypertensive therapy, and outcome in ischemic stroke treated with intravenous thrombolysis: retrospective analysis from safe implementation of thrombolysis in Stroke-International Stroke Thrombolysis Register (SITS-ISTR). Stroke 2009;40:2442–2449.
7.
Tissue plasminogen activator for acute ischemic stroke. The National Institute of Neurological Disorders and Stroke rt-PA Stroke Study Group. N Engl J Med 1995;333:1581–1587.
8.
Intracerebral hemorrhage after intravenous t-PA therapy for ischemic stroke. The NINDS t-PA Stroke Study Group. Stroke 1997;28:2109–2118.
9.
Derex L, Nighoghossian N: Intracerebral haemorrhage after thrombolysis for acute ischaemic stroke: an update. J Neurol Neurosurg Psychiatry 2008;79:1093–1099.
10.
Carlberg B, Asplund K, Hagg E: Factors influencing admission blood pressure levels in patients with acute stroke. Stroke 1991;22:527–530.
11.
Orlandi G, Fanucchi S, Strata G, Pataleo L, Landucci Pellegrini L, Prontera C, Martini A, Murri L: Transient autonomic nervous system dysfunction during hyperacute stroke. Acta Neurol Scand 2000;102:317–321.
12.
Robinson TG, Dawson SL, Eames PJ, Panerai RB, Potter JF: Cardiac baroreceptor sensitivity predicts long-term outcome after acute ischemic stroke. Stroke 2003;34:705–712.
13.
Sykora M, Diedler J, Rupp A, Turcani P, Steiner T: Impaired baroreceptor reflex sensitivity in acute stroke is associated with insular involvement, but not with carotid atherosclerosis. Stroke 2009;40:737–742.
14.
Kothari RU, Brott T, Broderick JP, Barsan WG, Sauerbeck LR, Zuccarello M, Khoury J: The ABCs of measuring intracerebral hemorrhage volumes. Stroke 1996;27:1304–1305.
15.
Huttner HB, Steiner T, Hartmann M, Kohrmann M, Juettler E, Mueller S, Wikner J, Meyding-Lamade U, Schramm P, Schwab S, Schellinger PD: Comparison of ABC/2 estimation technique to computer-assisted planimetric analysis in warfarin-related intracerebral parenchymal hemorrhage. Stroke 2006;37:404–408.
16.
Gebel JM, Sila CA, Sloan MA, Granger CB, Weisenberger JP, Green CL, Topol EJ, Mahaffey KW: Comparison of the ABC/2 estimation technique to computer-assisted volumetric analysis of intraparenchymal and subdural hematomas complicating the GUSTO-1 trial. Stroke 1998;29:1799–1801.
17.
Westerhof BE, Gisolf J, Stok WJ, Wesseling KH, Karemaker JM: Time-domain cross-correlation baroreflex sensitivity: performance on the EUROBAVAR data set. J Hypertens 2004;22:1371–1380.
18.
Ketch T, Biaggioni I, Robertson R, Robertson D: Four faces of baroreflex failure: hypertensive crisis, volatile hypertension, orthostatic tachycardia, and malignant vagotonia. Circulation 2002;105:2518–2523.
19.
Robinson TG, James M, Youde J, Panerai R, Potter J: Cardiac baroreceptor sensitivity is impaired after acute stroke. Stroke 1997;28:1671–1676.
20.
Sykora M, Diedler J, Rupp A, Turcani P, Rocco A, Steiner T: Impaired baroreflex sensitivity predicts outcome of acute intracerebral hemorrhage. Crit Care Med 2008;36:3074–3079.
21.
Britton M, Carlsson A, de Faire U: Blood pressure course in patients with acute stroke and matched controls. Stroke 1986;17:861–864.
22.
Vemmos KN, Spengos K, Tsivgoulis G, Zakopoulos N, Manios E, Kotsis V, Daffertshofer M, Vassilopoulos D: Factors influencing acute blood pressure values in stroke subtypes. J Hum Hypertens 2004;18:253–259.
23.
Lip GY, Zarifis J, Farooqi IS, Page A, Sagar G, Beevers DG: Ambulatory blood pressure monitoring in acute stroke. The West Birmingham Stroke Project. Stroke 1997;28:31–35.
24.
Dawson SL, Manktelow BN, Robinson TG, Panerai RB, Potter JF: Which parameters of beat-to-beat blood pressure and variability best predict early outcome after acute ischemic stroke? Stroke 2000;31:463–468.
25.
Huang CC, Sandroni P, Sletten DM, Weigand SD, Low PA: Effect of age on adrenergic and vagal baroreflex sensitivity in normal subjects. Muscle Nerve 2007;36:637–642.
26.
Gribbin B, Pickering TG, Sleight P, Peto R: Effect of age and high blood pressure on baroreflex sensitivity in man. Circ Res 1971;29:424–431.
27.
Ritter MA, Kimmeyer P, Heuschmann PU, Dziewas R, Dittrich R, Nabavi DG, Ringelstein EB: Blood pressure threshold violations in the first 24 hours after admission for acute stroke: frequency, timing, predictors, and impact on clinical outcome. Stroke 2009;40:462–468.
28.
Jorgensen HS, Nakayama H, Christensen HR, Raaschou HO, Kampmann JP, Olsen TS: Blood pressure in acute stroke. The Copenhagen Stroke Study. Cerebrovasc Dis 2002;13:204–209.
29.
Jorgensen HS, Nakayama H, Raaschou HO, Olsen TS: Effect of blood pressure and diabetes on stroke in progression. Lancet 1994;344:156–159.
30.
Pettersen JA, Pexman JH, Barber PA, Demchuk AM, Buchan AM, Hill MD: Insular cortical ischaemia does not independently predict acute hypertension or hyperglycaemia within 3 h of onset. J Neurol Neurosurg Psychiatry 2006;77:885–887.
31.
Meyer S, Strittmatter M, Fischer C, Georg T, Schmitz B: Lateralization in autonomic dysfunction in ischemic stroke involving the insular cortex. Neuroreport 2004;15:357–361.
32.
Phillips AM, Jardine DL, Parkin PJ, Hughes T, Ikram H: Brain stem stroke causing baroreflex failure and paroxysmal hypertension. Stroke 2000;31:1997–2001.
33.
Castillo J, Leira R, Garcia MM, Serena J, Blanco M, Davalos A: Blood pressure decrease during the acute phase of ischemic stroke is associated with brain injury and poor stroke outcome. Stroke 2004;35:520–526.
34.
Ohwaki K, Yano E, Nagashima H, Hirata M, Nakagomi T, Tamura A: Blood pressure management in acute intracerebral hemorrhage: relationship between elevated blood pressure and hematoma enlargement. Stroke 2004;35:1364–1367.
35.
Broderick JP, Diringer MN, Hill MD, Brun NC, Mayer SA, Steiner T, Skolnick BE, Davis SM: Determinants of intracerebral hemorrhage growth: an exploratory analysis. Stroke 2007;38:1072–1075.
36.
Jauch EC, Lindsell CJ, Adeoye O, Khoury J, Barsan W, Broderick J, Pancioli A, Brott T: Lack of evidence for an association between hemodynamic variables and hematoma growth in spontaneous intracerebral hemorrhage. Stroke 2006;37:2061–2065.
37.
Leira R, Davalos A, Silva Y, Gil-Peralta A, Tejada J, Garcia M, Castillo J: Early neurologic deterioration in intracerebral hemorrhage: predictors and associated factors. Neurology 2004;63:461–467.
38.
Sykora M, Diedler J, Turcani P, Rupp A, Steiner T: Subacute perihematomal edema in intracerebral hemorrhage is associated with impaired blood pressure regulation. J Neurol Sci 2009;284:108–112.
39.
Liu AJ, Ling G, Wu J, Shen FM, Wang DS, Lin LL, Liu JG, Su DF: Arterial baroreflex function is an important determinant of acute cerebral ischemia in rats with middle cerebral artery occlusion. Life Sci 2008;83:388–393.
40.
Ay H, Arsava EM, Koroshetz WJ, Sorensen AG: Middle cerebral artery infarcts encompassing the insula are more prone to growth. Stroke 2008;39:373–378.
41.
Kobrin I, Pegram BL, Frohlich ED: Baroreflex control of heart rate after immediate and prolonged pressure reduction with urapidil in conscious normotensive and spontaneously hypertensive rats. Isr J Med Sci 1986;22:438–441.
42.
Grassi G, Parati G, Pomidossi G, Giannattasio G, Casadei R, Groppelli A, Zanchetti A, Mancia G: Neural control of circulation before and after intravenous urapidil in essential hypertension. Drugs 1988;35(suppl 6): 104–110.
43.
Mortara A, La Rovere MT, Pinna GD, Maestri R, Capomolla S, Cobelli F: Nonselective beta-adrenergic blocking agent, carvedilol, improves arterial baroflex gain and heart rate variability in patients with stable chronic heart failure. J Am Coll Cardiol 2000;36:1612–1618.
44.
Toader E, Cividjian A, Quintin L: Recruitment of cardiac parasympathetic activity: effects of clonidine on cardiac vagal motoneurones, pressure lability, and cardiac baroreflex slope in rats. Br J Anaesth 2009;102:322–330.
45.
Liu AJ, Ma XJ, Shen FM, Liu JG, Chen H, Su DF: Arterial baroreflex: a novel target for preventing stroke in rat hypertension. Stroke 2007;38:1916–1923.
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