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T G Robinson

Publications and source records attributed to T G Robinson.

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The effect of systemic blood pressure on cardio-vascular reflexes in elderly subjects.

The evidence for impairment of cardiovascular reflexes by hypertension in elderly subjects is mixed. This study tested the hypothesis that baroreceptor- and non-baroreceptor-mediated responses in elderly subjects differed with hypertension. 54 elderly subjects were studied: 16 with combined hypertension (CT) (blood pressure 184 +/- 4/102 +/- 2 mmHg), 16 with isolated systolic hypertension (180 +/- 3/85 +/- 1 mmHg) and 22 normotensives (NT) (138 +/- 2/76 +/- 1 mmHg). All subjects performed isometric exercise with a handgrip dynamometer. Heart rate (HR), blood pressure and forearm vascular resistance (FVR) responses were then studied to 60 degrees head-up tilt and the cold face stimulus. Baseline FVR, and the response to isometric handgrip, were similar in all groups. Subjects with isolated systolic hypertension manifested greater increases in FVR with tilt (P<0.001), whilst the HR increment was greater in the NT group (P<0.001). Blood pressure changes with tilt were similar in the three groups. With the cold face stimulus (CFS) a rise in FVR of approximately 30% was seen in all groups and blood pressure rose modestly, with the largest increases being seen in the combined hypertensives. This study in elderly subjects indicates significant differences with hypertension in the response to tilt, with an impaired baroreceptor-cardiac reflex being compensated by an augmented baroreceptor-vascular response.

Aged↗

Which parameters of beat-to-beat blood pressure and variability best predict early outcome after acute ischemic stroke?

BACKGROUND AND PURPOSE: In hypertensive populations, increasing blood pressure (BP) levels and BP variability (BPV) are associated with a greater incidence of target organ damage. After stroke, elevated 24-hour BP levels predict a poor outcome, although it is uncertain whether shorter-length BP recordings assessing mean BP levels and BPV have a similar predictive role. The objectives of this study were to compare the different measures of beat-to-beat BP and BPV on outcome after acute ischemic stroke and assess whether these parameters were affected by stroke subtype. METHODS: Ninety-two consecutive admissions with a CT-confirmed diagnosis of acute ischemic stroke were recruited, of whom 54 had cortical infarction, 29 subcortical, and 9 posterior circulation infarction. Casual and two 5-minute recordings of beat-to-beat BP (Finapres, Ohmeda) were made under standardized conditions within 72 hours of ictus, with mean BP levels taken as the average of this 10-minute recording and BPV as the standard deviation. Outcome was assessed at 30 days as dead/dependent or independent (Rankin </=2). The effects of BP, BPV, and stroke subtype on outcome were studied with the use of logistic regression. Stroke subjects were subsequently divided by BP quartiles and within each quartile into low- and high-variability groups; the influence of high BPV on outcome was also assessed. RESULTS: The odds ratio for death/dependency was significantly higher in cortical strokes compared with subcortical and posterior circulation strokes even after controlling for differences in BP and BPV (OR 4.19, P=0.002). Beat-to-beat systolic BP (SBP), diastolic BP (DBP), and mean arterial pressure (MAP +/- SD) levels were higher in the dead/dependent group compared with the independent group (MAP 106+/-20.4 mm Hg vs 97+/-19.1 mm Hg, P<0.02), as was MAP variability: 6.1 (interquartile range 4.5 to 7.4 mm Hg) versus 4.9 (3.8 to 6.4 mm Hg, P=0.02). The odds ratio for a poor outcome was 1. 38 (P=0.014) for every 10-mm Hg increase in MAP and 1.32 (P=0.02) for every 1-mm Hg increase in MAP variability. Casual BP measurements had no prognostic significance. For the group as a whole when separated into BP quartiles, those with a high MAP and DBP but not SBP variability within each quartile had a worse prognosis compared with those with a low BPV. CONCLUSIONS: A poor outcome at 30 days after ischemic stroke was dependent on stroke subtype, beat-to-beat DBP, and MAP levels and variability. Important prognostic information can be readily obtained from a short period of noninvasive BP monitoring in the acute stroke patient. These findings have important implications, particularly regarding the use of hypotensive agents in the acute stroke period.

Acute Disease↗

Older subjects show no age-related decrease in cardiac baroreceptor sensitivity.

OBJECTIVE: To examine the relationship between age, blood pressure and cardiac baroreceptor sensitivity derived from spectral analysis, the Valsalva manoeuvre and impulse response function. METHODS: We studied 70 healthy normotensive volunteers who were free from disease and not taking medication with cardiovascular or autonomic effects. We measured beat-to-beat arterial blood pressure and used standard surface electrocardiography to record pulse interval under standardized conditions with subjects resting supine as well as during three Valsalva manoeuvres. We performed single, multiple and stepwise regression of patient characteristics against cardiac baroreceptor sensitivity results. RESULTS: There is a non-linear decline in cardiac baroreceptor sensitivity with advancing age, increasing systolic blood pressure and heart rate values (except for the Valsalva-derived result), but little further decline after the fourth decade. Only age significantly influenced values derived using the Valsalva manoeuvre and impulse response analysis. Using spectral analysis, age, systolic and diastolic blood pressure and heart rate influenced cardiac baroreceptor sensitivity, age contributing to 50% of the variability. Age also influenced the relationship between pulse interval and blood pressure, possibly indicating more non-baroreceptor-mediated changes with advancing age. CONCLUSIONS: Although age is the dominant factor influencing cardiac baroreceptor sensitivity in this normotensive population, there is little change in mean values after 40 years of age. The differences in the relationship between pulse interval and blood pressure with advancing age have implications for the calculation of cardiac baroreceptor sensitivity using spectral analysis.

Adult↗

Diurnal blood pressure change varies with stroke subtype in the acute phase.

BACKGROUND AND PURPOSE: It is unclear whether acute stroke is associated with a loss of the normal diurnal blood pressure (BP) change and whether stroke type influences this. Some of this confusion results from the use of fixed time definitions of day and night, which can be overcome by the use of cumulative sums analysis (cusums). METHODS: Ninety-eight stroke patients had 24-hour BP monitoring (Spacelabs 90207) performed within 48 hours of ictus. Three subgroups were identified: cortical infarct, n=50; subcortical infarct, n=29; and primary intracerebral hemorrhage [PICH], n= 19. An age-matched control group of 74 subjects was also studied. Diurnal change was assessed by both day-night differences (absolute and percentage) and cusums (cusums plot height [CPH] and circadian alteration magnitude [CDCAM]); ANCOVA was used to compare groups. RESULTS: Compared with control subjects, cortical infarct and PICH subgroups had significantly reduced mean diurnal systolic changes using day-night differences (absolute, -12 and -17 mm Hg; percentage, -10 and -12, respectively; P < 0.0001) and cusums (CDCAM, -6.96 and -8.6 mm Hg; CPH, -32.05 and -46.04 mm Hg, respectively; P < 0.005), only the subcortical infarct subgroup demonstrated reduced percentage differences (-4.4%, P < 0.02). Mean diastolic differences were significantly reduced in all stroke subgroups(CPH, -24.84, -17.31, and -36.92 mm Hg; absolute, -8.26, -4.04, and -11.44 mm Hg; percentage, -10.65, -5.81, and -15.23%, for cortical infarct, subcortical infarct, and PICH subgroups, respectively; P < 0.05), except for CDCAM, which was not reduced in subcortical infarcts (-4.78 and -7.70 mm Hg for cortical infarct and PICH subgroups, respectively; P < 0.001). CONCLUSIONS: Diurnal BP change was reduced in the 3 stroke subgroups studied, especially in patients with cortical infarcts and PICH. This may reflect damage to the central modulation of autonomic BP control. The implications in terms of prognosis and therapy in the acute period require further study.

Acute Disease↗

The reproducibility of cardiac baroreceptor activity assessed non-invasively by spectral sequence techniques.

Baroreceptor sensitivity (BRS) is increasingly used as a prognostic indicator in cardiovascular disease. Traditionally it has been measured using invasive techniques with pharmacological manipulation of blood pressure (BP). With the advent of newer methods to measure pulse interval and beat-to-beat changes in BP it is now possible, using sophisticated mathematical modelling techniques, to calculate cardiac BRS non-invasively. However, there are virtually no data on the reproducibility of these newer techniques and what factors may affect the repeatability of these measurements. We studied 39 subjects, aged 22-82 years, with a supine systolic BP range 97-160 mmHg and a diastolic BP range 57-94 mmHg on two occasions between 1 week and 6 months apart. Cardiac BRS was measured by power spectral analysis using Fast Fourier Transformation (FFT), sequence analysis (using up, down and combined sequences) and from phase IV of the Valsalva manoeuvre. There was no significant difference between visits for any of the methods for measuring cardiac BRS. Mean BRS values were similar for FFT (16.7 +/- 11.2 ms/mmHg) and sequence analysis (15.8 +/- 11.4 ms/mmHg); however, results using phase IV of the Valsalva manoeuvre were significantly lower (8.1 +/- 2.9 ms/mmHg, p < 0.0001). The coefficient of variation for the five measures of cardiac BRS varied from 16.8% for Valsalva-derived values to 26.1% for 'down' sequence analysis. However, in ten subjects BRS could not be calculated from the Valsalva manoeuvre. None of the independent variables tested (including age, BP levels and time between testing) significantly influenced the degree of repeatability. In summary, there appears to be little difference between these non-invasive methods in their degree of reproducibility. These techniques would seem suitable for longitudinal studies of changes in cardiac BRS and overcome many of the problems associated with the invasive pharmacological methods.

Adult↗

Hypokalemia and potassium excretion in stroke patients.

OBJECTIVES: To determine (1) the prevalence of hypokalemia (plasma potassium < or = 3.4 mmol/L) in a group of stroke patients in comparison with age- and sex-matched groups of patients having sustained a myocardial infarction or having mild hypertension and (2) the association between plasma potassium concentration and stroke outcome. DESIGN: Observational study. PARTICIPANTS: A total of 421 consecutive stroke patients admitted to a teaching hospital, 150 consecutive patients 50 years or older with myocardial infarction admitted to the hospitals Coronary Care Unit, and 161 out-patients 60 years or older with borderline and established hypertension. MEASUREMENTS: All stroke and cardiac patients had plasma urea and electrolytes estimated within 2 hours of hospital admission; in the hypertensive group blood samples were taken in clinic. Stroke patients had blood pressure, stroke severity (Barthel score) and smoking status recorded. A sub-group of 61 stroke patients and all 79 hypertensive patients not taking antihypertensive medication had 24-hour urine electrolyte excretion measured. Outcome (independent, dependent, or dead) at 3 months post-stroke was established in 349 patients. RESULTS: Hypokalemia occurred more frequently in stroke patients than in patients with myocardial infarction (84 (20%) vs 15 (10%), P = .008) or patients with hypertension (84 (20%) vs 13 (8%), P < .001), even when patients taking diuretics were excluded from analysis (56 (19%) vs 12 (9%) of cardiac group, P = .014 and 56 (19%) vs 4 (5%) of hypertensive group, P = .005, respectively). 24-hour urine excretion of potassium and the potassium:creatinine ratio was lower in stroke patients than in hypertensive patients (41 +/- 21 vs 62 +/- 25 mmol/24 hour, P = .001, 5.5 +/- 2.2 vs 7.4 +/- 2.6 mmol/24 hour, P = .001, respectively). On survival analysis, a lower plasma potassium on admission to hospital was associated with an increased chance of death, independent of age, stroke severity, history of hypertension, blood pressure level, or smoking history (hazard ratio 1.73 (95% CI: 1.03-2.9) for a 1 mmol/L lower plasma potassium concentration). CONCLUSIONS: Hypokalemia post stroke is common and may be associated with a poor outcome.

Aged↗

Cardiac baroreceptor sensitivity is impaired after acute stroke.

BACKGROUND AND PURPOSE: The blood pressure (BP) fall and increased BP variability after acute stroke have been previously described. The underlying pathophysiological mechanisms producing these findings are unclear but may include abnormalities of cardiac baroreceptor reflex arc and/or changes in sympathetic nervous system activity. To date, evidence of impaired cardiac baroreceptor sensitivity (BRS) after stroke is limited to patients with chronic disease as determined by invasive methodology. Therefore, it was proposed to assess cardiac BRS and sympathovagal balance with the use of novel noninvasive techniques after acute stroke. METHODS: Thirty-seven acute stroke patients underwent simultaneous surface electrocardiographic and noninvasive beat-to-beat BP recording. Cardiac BRS was assessed by power spectral analysis techniques, and sympathovagal balance was determined from the ratio of the low- to high-frequency powers for pulse interval variability. The responses were compared with a control group matched for age, sex, and BP. RESULTS: Median cardiac BRS was significantly lower in stroke patients than in control subjects (high-frequency alpha-index, 4.89 versus 6.50 ms/mm Hg; P = .007; combined alpha-index, 4.65 versus 5.46 ms/mm Hg; P = .02). Median normalized high- but not low-frequency power of systolic BP variability was significantly greater in stroke patients (11.0 versus 6.7 normalized units; P < .001), probably reflecting differences in the mechanical effects of respiration on BP in stroke patients. No significant differences were observed in the power spectrum of pulse interval variability between stroke patients and control subjects. Patients with tight hemisphere strokes, however, had a significant reduction in median high-frequency pulse interval power compared with patients with left hemisphere strokes (8 versus 20 normalized units; P = .03), which may reflect a change in sympathovagal balance in favor of increased sympathetic tone in this group. CONCLUSIONS: The impairment of cardiac BRS may be important in explaining the increased BP variability after stroke. There was no significant difference in surrogate measures of sympathovagal activity between acute stroke patients and control subjects, but right hemisphere stroke patients had a significant alteration in the sympathovagal balance of pulse interval variability compared with left hemisphere stroke patients. This sympathetic predominance in right hemisphere strokes may be important in the development of cardiac arrhythmias after stroke. The prognostic implications of these findings need to be further explored.

Acute Disease↗

Arterial baroreceptor-cardiac reflex sensitivity in the elderly.

Uncertainty still remains regarding the differing effects of blood pressure and age on baroreceptor-cardiac reflex sensitivity in elderly individuals; these differences are at least partly due to the differing methods and subject groups used in previous studies. We sought to resolve these issues by examining baroreflex sensitivity in 54 subjects aged 70 +/- 1 years (mean +/- SE; range, 60 to 81) divided into groups with combined systolic-diastolic hypertension (CH group, n = 16), isolated systolic hypertension (ISH group, n = 16), or normotension (NT group, n = 22). Baroreflex sensitivity was quantified from the pulse interval and blood pressure responses to the Valsalva maneuver and pressor (phenylephrine) and depressor (sodium nitroprusside) stimuli. Baroreflex sensitivity was significantly reduced in the two hypertensive groups but did not differ between them (Valsalva maneuver: CH group, 1.9 +/- 0.3 ms/mm Hg; ISH group, 2.8 +/- 0.5; NT group, 4.4 +/- 0.4; phenylephrine: CH group, 3.1 +/- 0.6; ISH group, 3.5 +/- 0.7; NT group, 7.7 +/- 1.0; sodium nitroprusside CH group, 2.1 +/- 0.3; ISH group, 3.6 +/- 0.8; NT group, 5.4 +/- 0.3; all P < .05 for comparison with the NT group). Thus, this study demonstrated reductions in baroreflex sensitivity with hypertension in elderly subjects consistent across all methods but with no difference between subjects with combined hypertension and isolated systolic hypertension matched for similar systolic pressure. Baroreflex sensitivity was related only to the level of systolic pressure independent of diastolic pressure or age. If elderly subjects with isolated systolic hypertension have a greater reduction in large-artery compliance than combined hypertensive subjects with similar systolic pressure, this does not appear to lead to further reductions in baroreflex sensitivity in these individuals.

Aged↗

Comparison of diurnal systolic blood pressure change as defined by wrist actigraphy, fixed time periods and cusum.

AIMS: To assess whether differences exist in nocturnal blood pressure (BP) levels and the diurnal BP change when using fixed time and wrist actigraphy methods to define the night-time period. METHODS: Untreated hypertensive (n = 48) and normotensive (n = 33) subjects (mean age 67 years: range 29-90) underwent simultaneous 24-h ambulatory BP monitoring and wrist actigraph monitoring. The diurnal BP change and nocturnal BP levels were assessed using two fixed night-time definitions-a reference period of 22.00-06.59 and also 00.00-05.59, as well as unedited and edited actigraph values and cumulative sums (cusums) analysis. RESULTS: The reference definition of night-time 22.00-06.59 resulted in the highest values for night-time BP compared to other definitions (p < 0.05), although actigraph defined night-time BP values were not significantly different from the more restrictive definition of night-time (00.00-05.59). Restrictive night-time, edited and unedited actigraph and cusums values for the day-night difference were all significantly greater than the value calculated using the reference night-time period. Dipping status changed significantly depending on which definition of night-time was used. CONCLUSIONS: Significant differences exist in nocturnal BP levels and circadian change between the various methods for defining night-time. The routine use of wrist actigraphy does not however appear to alter the value of night-time BP levels when compared to a more restrictive fixed-time definition of night-time.

Adult↗

Postprandial and orthostatic cardiovascular changes after acute stroke.

BACKGROUND AND PURPOSE: Large falls in blood pressure after meals have been demonstrated in fit and frail elderly subjects; these changes may be associated with an increased incidence of stroke. Postprandial falls in BP may be particularly deleterious after acute stroke, when normal baroreflex mechanisms and cerebral autoregulation are already impaired, resulting in stroke progression. Therefore, the postprandial hemodynamic responses to orthostasis were examined in nine acute stroke subjects and eight age-, sex-, and blood pressure-matched control subjects after an oral energy load. METHODS: All subjects were studied on two occasions in a randomized, double-blind, crossover trial after administration of either oral glucose (1 g/kg body wt) or equivalent isovolumic, isosmotic xylose (0.83 g/kg). Measurements of blood pressure, pulse rate, and forearm blood flow were recorded for 30 minutes preprandially and 90 minutes postprandially. Hemodynamic responses to 60 degrees tilt, along with plasma glucose and insulin changes, were measured at baseline and at 30-minute intervals postprandially. RESULTS: Supine mean arterial and diastolic blood pressures fell significantly after glucose but not xylose ingestion in control subjects (P < .03) but not stroke subjects, whereas supine pulse rate increased in stroke subjects (P < .04) only. No significant changes in forearm vascular resistance were recorded in either control or stroke subjects. After tilt, stroke subjects showed a fall in mean arterial pressure compared with control subjects preprandially (P = .03) and at 30 (P < .005) and 90 (P < .03) minutes postprandially, although no differences were observed between the xylose and glucose phases. Orthostatic tolerance was maintained in control subjects throughout both phases of the study. Pulse rate increased significantly to tilt at all time intervals in both groups, although there were no significant changes in forearm vascular resistance. CONCLUSIONS: Acute stroke subjects are not at significantly greater risk of blood pressure falls in response to an oral energy load than age-, sex-, and blood pressure-matched control subjects. Unlike control subjects, the stroke group had an increased pulse-rate postprandially, which could result in a compensatory rise in cardiac output as a result of increased sympathetic nervous system activity in the poststroke period. Although orthostatic blood pressure control is impaired after acute stroke, these changes are unaffected by meals.

Acute Disease↗

Clinic and 24h blood pressure in elderly treated hypertensives with postural hypotension.

The objectives of this study were to determine the prevalence of, and factors associated with, postural hypotension (PH) in elderly treated hypertensive subjects, to examine the 24h BP profile in those subjects with and without PH and to determine the effects of antihypertensive treatment withdrawal on the prevalence and symptoms of PH. Eighty-six subjects (mean age +/- standard deviation 76 +/- 6 years) on antihypertensive drug therapy for > 6 months had three clinic BP measurements taken in supine and standing positions followed by 24h ambulatory BP monitoring. Forty-seven subjects underwent repeat BP measurement five weeks after withdrawal of antihypertensive medication and institution of standard nonpharmacological methods. Twenty-six (30%) of the 86 subjects exhibited PH (defined as SBP fall on standing > or = 20 mmHg) within three minutes of standing. Supine clinic and 24h SBP and DBP, age and presence of previous cardiovascular events were similar in the groups with and without PH. There was a significant correlation between the orthostatic BP fall for all subjects and day-night SBP difference (r = -0.30, P = 0.01) and urinary sodium:creatinine ratio (r = -0.33, P = 0.04). Multiple regression analysis revealed only the day-night SBP difference was a significant predictor of orthostatic BP change. In the PH group, 19 subjects had treatment withdrawn resulting in a reduction of 58% (P > 0.001) in those continuing to demonstrate PH. If indicated a trial of antihypertensive drug treatment withdrawal could reduce the risk of PH; the additional benefit of instituting nonpharmacological therapy in reducing BP and orthostatic hypotension warrants further assessment.

Aged↗

Excitotoxin-induced lesions of the central but not basolateral nucleus of the amygdala modulate the baroreceptor heart rate reflex in conscious rats.

The present study has examined the influence of the central nucleus of the amygdala (Ce) and the basolateral nucleus of the amygdala (BL) on the baroreceptor heart rate (HR) reflex in conscious, unrestrained rats. Baroreceptor HR reflex activity was examined in rats with bilateral excitotoxin (N-methyl-D-aspartate; 40 nmol/side)-induced lesions of the Ce or the BL and in control rats (artificial cerebrospinal fluid). After lesioning, the reflex HR responses were recorded following intravenous bolus doses of the pressor agent phenylephrine and the depressor agent sodium nitroprusside. Baroreceptor reflex parameters were determined by sigmoidal computerized curve-fitting. Lesions of either the Ce or the BL failed to affect resting mean arterial pressure (MAP) or HR. However, the Ce lesion reduced the maximum and average gain (sensitivity) of the baroreceptor reflex, and diminished the range of the reflex by altering the minimum, but not the maximum HR plateau. The upper and lower reflex thresholds and the MAP value corresponding to the midpoint of the HR range were not affected. Bilateral lesions of the BL failed to modify any baroreceptor reflex parameters. These results suggest that despite previous evidence for the involvement of the BL in cardiovascular regulation this nucleus does not exert a tonic influence on vasomotor neurons nor does it influence the baroreceptor HR reflex. In contrast, neurons projecting from the Ce appear to provide excitatory input to medullary neurons involved in baroreceptor reflex are regulation.

Amygdala↗

Excitant amino acid projections from rat amygdala and thalamus to nucleus accumbens.

High affinity uptake of D-[3H]aspartate, [3H]choline and [3H]GABA was examined in synaptosomal-containing preparations of rat nucleus accumbens septi 7 to 10 days after unilateral or bilateral N-methyl-D-aspartate lesions confined to the parataenial nucleus of the thalamus or the basolateral nucleus of the amygdala. Uptake of both D-[3H]aspartate and [3H]choline was significantly reduced (11% and 14% less than control, respectively) by unilateral lesion of the thalamus, whereas [3H]GABA uptake was unaffected. Bilateral thalamic lesions significantly reduced D-[3H]aspartate uptake (11% less than control) into homogenates of the nucleus accumbens, whilst [3H]GABA uptake was unaltered. D-[3H]aspartate uptake was significantly reduced (26% less than control) following unilateral lesion of the amygdala, whereas both [3H]GABA and [3H]choline uptake were unaffected. Bilateral amygdaloid lesions significantly increased D-[3H]aspartate uptake (39% greater than control), whilst uptake of [3H]GABA was not affected. The results implicate glutamate and/or aspartate as putative neurotransmitters in afferent projections from the basolateral amygdala and the parataenial thalamus to the nucleus accumbens. Thalamic afferents to the nucleus accumbens may also utilize acetylcholine as their transmitter.

Amygdala↗

A prospective study of primary and secondary risk factor management in stroke patients.

Stroke is a common event which often results in death or major loss of independence with immense human and financial costs, so identification of patients at risk, and prevention of stroke at the individual and population levels, is a high clinical and health priority. From August 1993 to July 1994, 468 stroke patients admitted to our hospital were assessed for the presence of stroke risk factors. All patients were followed up in hospital, and on discharge or death all hospital records were reviewed. We show that many risk factors remain uncorrected in stroke patients and that preventive measures are less than ideal at the community and hospital levels alike.

Adult↗