The objective was to assess the effect of hard martial arts on the physical fitness components such as balance, flexibility, gait, strength, cardiorespiratory function and several mental functions in people over forty. A computerized literature search was carried out. Studies were selected when they had an experimental design, the age of the study population was >40, one of the interventions was a hard martial art, and when at least balance and cardiorespiratory functions were used as an outcome measure. We included four studies, with, in total, 112 participants, aged between 51 and 93 years. The intervention consisted of Taekwondo or Karate. Total training duration varied from 17 to 234 h. All four studies reported beneficial effects, such as improvement in balance, in reaction tests, and in duration of single leg stance. We conclude that because of serious methodological shortcomings in all four studies, currently there is suggestive, but insufficient evidence, that hard martial arts practice improves physical fitness functions in healthy people over 40. However, considering the importance of such effects, and the low costs of the intervention, the potential of beneficial health effects of age-adapted, hard martial arts training, in people over 40, warrants further study.
Enlarged Virchow-Robin spaces (EVRS) are considered to be a sign of cerebral small vessel disease. Hypertension is an important risk factor for cerebral small vessel disease, whereas ambulatory blood pressure (BP) is the strongest predictor of hypertension-related brain damage. However, the association between ambulatory BP levels and EVRS has never been investigated. The aim of this study was to determine the association between ambulatory BP levels and EVRS. In 143 first-ever lacunar stroke patients, we performed 24-h ambulatory BP monitoring after the acute stroke phase. On brain MRI we counted EVRS in the basal ganglia and the centrum semiovale. We graded the number of EVRS at each level into a three-category severity scale. We assessed the association between BP levels and EVRS by ordinal regression analysis. After adjusting for age, sex, extensive white matter lesions, and asymptomatic lacunar infarcts, higher day systolic (OR 1.21; 95 % CI 1.00-1.46 per 10 mmHg), day diastolic (1.18; 95 % CI 1.02-1.37 per 5 mmHg) and 24-h diastolic (OR 1.18; 95 % CI 1.01-1.37 per 5 mmHg) ambulatory BP levels were associated with EVRS at the basal ganglia level. No relation was found between ambulatory BP levels and EVRS in the centrum semiovale. Higher day ambulatory BP levels are associated with EVRS in the basal ganglia. This association was independent of the presence of extensive white matter lesions and asymptomatic lacunar infarcts. Our results imply that basal ganglia EVRS should be regarded as a separate manifestation of BP-related brain damage.
Age-related cognitive decline is associated with increased risk of disability, dementia, and death. Recent studies suggest improvement in cognitive speed, attention, and executive functioning with physical activity. However, whether such improvements are activity specific is unclear. Therefore, we aimed to study the effect of 1 year age-adapted Taekwondo training on several cognitive functions, including reaction/motor time, information processing speed, and working and executive memory, in 24 healthy volunteers over 40. Reaction and motor time decreased with 41.2 and 18.4 s (p = 0.004, p = 0.015), respectively. Digit symbol coding task improved with a mean of 3.7 digits (p = 0.017). Digit span, letter fluency, and trail making test task-completion-time all improved, but not statistically significant. The questionnaire reported "better" reaction time in 10 and "unchanged" in 9 of the 19 study compliers. In conclusion, our data suggest that age-adapted Taekwondo training improves various aspects of cognitive function in people over 40, which may, therefore, offer a cheap, safe, and enjoyable way to mitigate age-related cognitive decline.
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Background and Purpose— Cerebral small vessel disease (CSVD) may be caused by endothelial dysfunction, whereas endothelial progenitor cells (EPC) may attenuate endothelial dysfunction. Their vitality is lower in CSVD. A subset of lymphocytes, angiogenic T-cells, is capable to stimulate EPC function. The purpose of our study was to explore the relation between CSVD manifestations, angiogenic T-cells, and EPC in hypertensive patients with CSVD. Methods— We compared 32 essential hypertensive patients with CSVD (white matter lesions, asymptomatic lacunar infarcts, or microbleeds on 1.5-Tesla MRI) to 29 age-matched and sex-matched hypertensive controls. We counted angiogenic T-cells (CD3 + /CD31 + /CD184 + ) and putative EPC (CD31 + /CD34 + /CD45 - /KDR + ) by flow cytometry and determined EPC vitality by in vitro cluster formation. Results— Putative EPC numbers were lower in hypertensive individuals with CSVD than in those without (10±7 . 10 3 /mL versus 13±6 . 10 3 /mL [median±interquartile range]; P =0.011). Angiogenic T-cell numbers were also lower in hypertensive individuals with CSVD than in those without (0.56±0.25 . 10 9 /mL versus 0.78±0.50 . 10 9 /mL; P =0.008). Higher angiogenic T-cell numbers independently related to absence of CSVD (odds ratio, 0.088; 95% confidence interval, 0.012–0.627). Conclusions— Our data suggest that angiogenic T-cells and putative EPC independently relate to radiological CSVD manifestations in hypertensive patients.
OBJECTIVES:New insights in the pathophysiology of lacunar stroke (LS) suggest that it is caused by increased permeability of the blood-brain barrier due to endothelial activation. Because endothelial cells are the major production and storage site of tissue factor pathway inhibitor (TFPI), this protein can be used as marker of endothelial activation. In this observational study we measured the different pools of TFPI, as a marker of endothelial function, in first-ever lacunar stroke patients.METHODS:We determined antigen levels of total and free full-length (FL) TFPI using ELISA in 149 patients and 42 controls. Heparin-releasable free FL TFPI was determined in a random subset of 17 patients and 15 controls. By brain MRI, we classified LS patients as having isolated lacunar infarct (ILA) or silent ischemic lesions (SILs).RESULTS:Plasma levels of total TFPI were highest in patients with SILs compared with those with ILA, but this association disappeared after correction for age and levels of low-density lipoprotein cholesterol. However, levels of heparin-releasable free FL TFPI were higher in patients than in controls.CONCLUSIONS:Although ambient plasma levels of total TFPI were not different in subtypes of LS, the increased levels of heparin-releasable TFPI in patients suggest a role of endothelial activation in the pathogenesis of LS.
Cerebral small vessel disease (CSVD) is considered to be caused by an increased permeability of the blood-brain barrier and results in enlargement of Virchow Robin spaces (VRs), white matter lesions, brain microbleeds, and lacunar infarcts. The increased permeability of the blood-brain barrier may relate to endothelial cell activation and activated monocytes/macrophages. Therefore, we hypothesized that plasma markers of endothelial activation (adhesion molecules) and monocyte/macrophage activation (neopterin) relate to CSVD manifestations. In 163 first-ever lacunar stroke patients and 183 essential hypertensive patients, we assessed CSVD manifestations on brain magnetic resonance imaging (MRI) and levels of C-reactive protein (CRP), neopterin, as well as circulating soluble adhesion molecules (sICAM-1, sVCAM-1, sE-selectin, sP-selectin). Neopterin, sICAM-1 and sVCAM-1 levels were higher in patients with extensive CSVD manifestations than in those without (p < 0.01). Neopterin levels independently related to higher numbers of enlarged Virchow Robin spaces (p < 0.001). An inflammatory process with activated monocytes/macrophages may play a role in the increased permeability of the blood brain barrier in patients with CSVD.
BACKGROUND AND PURPOSE:Results from case-control and case-case studies indicate that a positive family history of stroke (FHstroke) is an independent risk factor for lacunar stroke. Different lacunar stroke phenotypes can be distinguished on the basis of the presence of asymptomatic lacunar infarcts (aLACs), ischemic white-matter lesions, or brain microbleeds. The aim of the present study was to determine whether familial aggregation of stroke was different for lacunar stroke phenotypes.METHODS:In 157 patients with a first-ever lacunar stroke, a complete first-degree FHstroke was obtained by a standardized questionnaire and additional interview. Lacunar stroke patients were categorized successively into groups, depending on the presence of aLACs, ischemic white-matter lesions, and brain microbleeds on magnetic resonance imaging.RESULTS:Fifty-two percent of patients reported a positive FHstroke in at least one of their first-degree relatives. In younger (<65 years) probands, a high frequency of parental FHstroke (59% versus 20%, P<0.01) in those with aLACs compared with probands without aLACs was found. In multivariate analysis, the strongest associations were found for parental FHstroke (odds ratio=6.46; 95% CI=1.96 to 21.33), maternal FHstroke (odds ratio=4.00; 95% CI=1.18 to 13.56), and paternal FHstroke (odds ratio=5.40; 95% CI=1.14 to 25.61).CONCLUSIONS:A family history of stroke might be an independent risk factor for the lacunar stroke phenotype with aLACs at younger ages, suggesting a role for genetic factors in this phenotype caused by diffuse vasculopathy.
Background: Positive family history of stroke is an independent risk factor for lacunar stroke. However, the magnitude of familial aggregation of a certain disease is better evaluated by the genetic relative risk. This is calculated by dividing the prevalence of specific disease in family members of patients by the prevalence of this disease in the general population. In a cohort of lacunar stroke patients, who were subtyped clinically and radiologically, we determined the genetic relative risk of stroke.Methods: By questionnaire and additional interview, we obtained a complete first-degree family history of stroke. The prevalence of stroke in first-degree relatives of these lacunar stroke patients was compared to the self-reported prevalence of stroke in a Dutch community based cohort of elderly volunteers. Secondly, the influence of proband characteristics and family composition on parental and sibling history of stroke were evaluated.Principal Findings: We collected data of 1066 first-degree relatives of 195 lacunar stroke patients. Strokes occurred in 13.5% of first-degree relatives. The genetic relative risk was 2.94 (95% CI 2.45-3.53) for overall first-degree relatives, 4.52 (95% CI 3.61-5.65) for patients' parents and 2.10 (95% CI 1.63-2.69) for patients' siblings. Age of proband and proband status for hypertension influenced the chance of having a parent with a history of stroke whereas the likelihood of having a concordant sibling increased with sibship size.Conclusions: We found an increased genetic relative risk of stroke in first-degree relatives of patients with lacunar stroke. Our data warrant further genomic research in this well-defined high risk population for stroke.
Cerebral white matter lesions (WMLs), due to small vessel disease, can be regarded as an early "silent" sign of hypertensive cerebral end-organ damage. As haptoglobin (Hp) phenotype has earlier been associated with symptomatic vascular disease, we now examined the relationship between Hp phenotype and asymptomatic cerebral small vessel disease, manifested by deep and periventricular WMLs, in hypertensive patients.We determined Hp phenotype using starch gel electrophoresis in 152 hypertensive patients without symptomatic vascular disease. We found 26 (17.1%) Hp1-1, 89 (58.6%) Hp2-1 and 37 (24.3%) Hp2-2. Volumes of deep and periventricular WMLs were quantitatively measured on brain MR images. Patients were ranked in 5 categories according to ascending WMLs volumes. Compared to Hp2-2, Hp1-1 was associated with larger deep WMLs volumes when adjusted for age, gender, brain volume, 24-hour mean arterial pressure, duration of hypertension and previous antihypertensive treatment (ordinal regression analysis, OR 2.77, 95% CI 1.08-7.11, p=0.034). No association was found between Hp phenotype and periventricular WMLs.Hp1-1 phenotype correlates with the extent of hypertensive deep white matter damage. One of the possibilities is that this is related to lower regenerating power against endothelial injury in Hp1-1 individuals.
BACKGROUND:The aetiology of central nervous system lesions observed in cerebral cyclosporine neurotoxicity remains controversial.CASE PRESENTATION:We report a 48-year-old woman with a non-severe aplastic anaemia who presented with stroke-like episodes while on cyclosporine treatment.Transcranial Doppler ultrasound revealed severely elevated flow velocities in several cerebral vessels, consistent with vasospasm. Immediately after reducing the cyclosporine dose, the stroke-like episodes disappeared. Only after cyclosporine withdrawal the transcranial Doppler ultrasound abnormalities fully resolved.CONCLUSIONS:This case demonstrates a significant role of vasospasm in the pathway of cyclosporine-induced neurotoxicity. Transcranial Doppler ultrasound is an effective tool for the diagnosis and follow-up of cyclosporine-induced vasospasm.
Background and Purpose— Oxidized low-density lipoprotein (oxLDL) induces endothelial dysfunction and antibody formation. Because endothelial dysfunction is involved in cerebral small vessel disease (CSVD) (dilated Virchow Robin spaces, lacunar infarcts, and white matter lesions), oxLDL antibodies could play a role in CSVD pathogenesis. Therefore, we studied oxLDL antibodies in patients with high prevalence of CSVD: lacunar stroke patients and essential hypertensive patients. Methods— A total of 158 lacunar stroke patients, 158 hypertensive patients, and 43 healthy controls were included. We determined levels of IgG and IgM against hypochlorite (HOCl) and malondialdehyde (MDA) oxLDL using ELISA (values in optical density). Results— Patients with CSVD had higher levels of IgG-HOCl-oxLDL (0.77 versus 0.70; P <0.01), as well as lower levels of IgM-MDA-oxLDL (0.55 versus 0.65; P <0.05) than patients without such lesions. Higher IgG-HOCl-oxLDL levels were only independently associated with higher numbers of Virchow Robin spaces at the level of the basal ganglia (β=0.218; P <0.001). Conclusions— An autoinflammatory process with lower levels of IgM antibodies and higher levels of IgG antibodies against oxLDL may be involved in CSVD.
AIMSDespite the known increased stroke risk associated with AF and the benefit of oral anticoagulation (OAC) in high-risk patients, still approximately 20% of all ischaemic strokes are atrial fibrillation (AF) related. We aimed to evaluate the frequency of inappropriate anticoagulation in all patients admitted with AF associated ischaemic stroke and calculate the theoretical number of preventable strokes in case of proper guideline adherence and assess secondary stroke prevention at discharge.METHODS AND RESULTSIn this cross-sectional study, all patients with ischaemic strokes admitted to our hospital during May 2003-August 2006 in whom the diagnosis AF was either known or established during hospital stay were identified. We studied if their admission and discharge antithrombotic therapy was in accordance with the published guidelines. Subsequently, we calculated the number of preventable strokes in case AF patients would have received adequate antithrombotic treatment on admission. On admission, in 51% of the OAC eligible known AF patients the drug was withheld. Improved antithrombotic guideline adherence potentially would have prevented 20 out of the 89 (22%) ischaemic strokes. At discharge at least 10% of the patients were still insufficiently protected against recurrent stroke.CONCLUSIONMany known AF patients admitted with ischaemic stroke lack adequate antithrombotic treatment on admission. Antithrombotic guideline adherence in these patients has the potential to prevent a substantial number strokes. Secondary stroke prevention at discharge is also suboptimal.
We report a case of a 93-year-old man, who presented with limb-shaking transient ischemic attacks (TIAs) after orthostatic position change or turning his head to the left. The limb-shaking TIAs resulted from external compression of the carotid artery. Contrast-enhanced magnetic resonance angiography of the head and neck and Doppler ultrasound examination of the thyroid gland revealed a large cystic nodule in the right thyroid lobe, resulting in compression and posterior displacement of the right common carotid artery. Clinicians should be aware that limb-shaking TIAs can not only result from obstructive extracerebral or intracerebral artery disease, but also from external compression of the carotid artery.
Background: Metabolic syndrome (MetS) is a cluster of three or more of the following risk factors: obesity, elevated blood pressure, elevated triglyceride level, elevated glucose level, and low high-density lipoprotein level. Lacunar infarcts (LS) account for 25% of all ischemic strokes and are small, deeply located brain infarcts. Two different subtypes exist, which are distinguished by the presence of concomitant white matter lesions (WML) on brain imaging. We determined the prevalence of MetS in LS and the association between MetS with LS subtypes in a series of first-ever LS patients. Methods: We included 92 patients with a first-ever LS, and 92 patients with a first-ever atheroslerotic cortical stroke (CS) matched for age and sex. LS subtypes were defined according to presence of concomitant WML. We defined MetS retrospectively according to previously defined standards. Results: 35.9% of LS patients and 45.7% of CS patients had MetS (OR 0.67; 95% CI 0.37–1.20). MetS was more prevalent in LS without WML than in LS with WML (44.4 and 23.7%, respectively; OR 2.98; 95% CI 1.04–8.47). Similarly, MetS related more to CS compared to LS with WML (OR 2.56; 95% CI 1.03–6.37). Conclusion: MetS relates more strongly to LS without WML and to CS, than to LS with WML. Our results suggest a different underlying mechanism between LS without WML and CS, and lacunar stroke with WML.
Objective We aimed to investigate whether subjective sleep disturbance during overnight blood pressure (BP) monitoring results in higher night-time BP levels, and whether this affects the correlation between nocturnal BP and hypertensive target-organ damage. Methods In 203 untreated hypertensive patients (104 men) without a history of cardiovascular disease, with a mean age of 52.1 ± 12.5 years, and with office BP levels of 170 ± 23/104 ± 12 mmHg, we performed duplicate ambulatory BP monitoring (ABPM), assessed subjective sleep quality using the Groningen Sleep Quality Scale, and obtained information on hypertension-related cardiac damage by echocardiography. Results Overnight BP monitoring disturbed sleep significantly, but habituation to nocturnal measurements occurred on the second ABPM. Participants whose subjective sleep quality was less than usual on either ABPM did not have higher nocturnal BP levels than those who slept similar to usual (P > 0.05). When comparing the nocturnal BP levels between the first and second ABPM, we found that participants whose subjective sleep quality was less on the second ABPM had significantly higher pressure levels and a smaller BP dip than participants with a similar sleep quality for both ABPMs (P < 0.05). Accordingly, the correlations between the nocturnal BP and cardiac damage tended to be weaker based on the ABPM with the lowest sleep quality. Conclusions Subjectively assessed sleep disturbance during overnight BP monitoring increases the nocturnal BP level and potentially attenuates the correlation with hypertension-related cardiac damage, even though habituation to overnight BP monitoring occurs.