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Biomedical subjects

P J Blankestijn

Publications and source records attributed to P J Blankestijn.

At least 19 recordsLinked to original sources

A helical PTFE arteriovenous access graft to swirl flow across the distal anastomosis: results of a preliminary clinical study.

Intimal hyperplasia develops preferentially in regions where the blood flow is stagnant and wall shear stress low. The small amplitude helical geometry of the SwirlGraft was designed to ensure physiological-type swirling flow, and thus suppress the triggers. We report the first conceptual testing of the SwirlGraft. Primary, assisted primary and secondary patency rates at 6 months in 20 patients were 57.9+/-11.4%, 84.4+/-8.3% and 100+/-0.0%. There was angiographic evidence of reduction of helical geometry in a proportion of the grafts. The helical graft is associated with high assisted primary and secondary patency. Elaboration of the surgical implantation techniques and an improved SwirlGraft design can be expected to exploit the advantages of the helical concept.

Adult↗

[New study evaluating online haemodiafiltration for the reduction of cardiovascular morbidity and mortality in patients undergoing chronic haemodialysis].

Removal of uraemic toxins can be increased by online haemodiafiltration. At present, it is unclear whether online haemodia-filtration ultimately improves clinical outcomes in chronic haemodialysis patients. The Dutch 'Convective transport study' (CONTRAST) is an ongoing trial comparing standard haemodialysis with online haemodiafiltration. This randomised controlled trial will provide substantial clinical evidence on the effects of haemodiafiltration on fatal and non-fatal cardiovascular events and all-cause mortality, compared with standard haemodialysis.

Cardiovascular Diseases↗

Dialysis access--guidelines for current practice.

Current guidelines promote the use of the native arteriovenous fistula (AVF) as the first choice for access over grafts and central venous catheters. However, the prevalence of AVF use shows enormous differences among national, regional and local practice surveys, even after adjusting for demographics. In this review, we will briefly discuss these differences and present actions potentially improving outcome of vascular access care.

Arteriovenous Shunt, Surgical↗

MRA of hemodialysis access grafts and fistulae using selective contrast injection and flow interruption.

MR is a potentially attractive modality for evaluating hemodialysis access anatomy and function. However, the wide range of flow rates in the hemodialysis access complicates interpretation of phase contrast, time-of-flight, and even contrast-enhanced MR angiograms. At high flow rates, signal voids may easily arise at mild narrowings or sharp-angled anastomoses. A method is proposed which visualizes hemodialysis accesses without flow artifacts. Diluted Gd-DTPA is hand-injected directly into the access, while a cuff is used to reduce and subsequently interrupt access flow. Filling of the access is monitored using a fast projection technique with complex subtraction. When filling is satisfactory, a 3D acquisition is started. The feasibility of this selective contrast-enhanced MR angiography technique is demonstrated in four Cimino-fistulae and four PTFE grafts. Magn Reson Med 45:557-561, 2001.

Arteriovenous Shunt, Surgical↗

Graft surveillance: venous pressure, access flow, or the combination?

BACKGROUND: Increased venous pressure (VP) and decreased access flow (Qa) are predictors of dialysis access graft thrombosis. VP is easily obtainable. Qa assessment requires a special device and takes more time. The aims of our randomized multicenter studies were to compare outcome in patients with grafts monitored by VP or Qa (study A) or monitored by VP or the combination of VP and Qa (study B). METHODS: We performed VP measurements consisting of weekly VP at a pump flow of 200 mL/min (VP200) and the ratio of VP0/MAP. Qa was measured every eight weeks with the Transonic HD01 hemodialysis monitor. Threshold levels for referral for angiography were VP200> 150 mm Hg or VP0/MAP> 0.5 (both at 3 consecutive dialysis sessions) or Qa <600 mL/min. Subsequent therapy consisted of either percutaneous transluminal angioplasty (PTA) or surgery. RESULTS: Total follow-up was 80.5 patient-years for 125 grafts. The vast majority of a total of 131 positive tests was followed by angiography and corrective intervention. In study A, the rate of thromboses not preceded by a positive test was 0.19 and 0.24 per patient-year (P = NS), and in study B, it was 0.32 versus 0.28 per patient-year (P = NS). Survival curves were not significantly different between the subgroups. CONCLUSIONS: These data demonstrate that standardized monitoring of either VP or Qa or the combination of both and subsequent corrective intervention can reduce thrombosis rate in grafts to below the recommended quality of care standard (that is, 0.5 per patient-year, NKF-DOQI). These surveillance strategies are equally effective in reducing thrombosis rates.

Adult↗

Observer variations in short period spectral analysis of heart rate variability.

25% of the corresponding mean LF/HF ratio. The smallest interobserver variations were found for the 'fixed frequency' method. The data showed that it is advantageous to select the 3-min ECG periods but not to select the frequency regions. Selection of the latter led to an increase in interobserver variation. The results of this study give a realistic impression of the intrasubject and interobserver variation to be expected when measuring the LF/HF ratio. This variation is considerable.

Analysis of Variance↗

Pharmacokinetics and dosing regimen of meropenem in critically ill patients receiving continuous venovenous hemofiltration.

OBJECTIVE: To study the pharmacokinetics of meropenem in critically ill patients with acute renal failure receiving continuous venovenous hemofiltration (CWHF). DESIGN: Prospective, open-labeled study. SETTING: Medical intensive care unit of the University Medical Center Utrecht. PATIENTS: Five critically ill patients receiving CWHF for acute renal failure treated with meropenem for documented or suspected bacterial infection. INTERVENTION: All patients received meropenem (500 mg) administered intravenously every 12 hrs. Plasma samples and ultrafiltrate aliquots were collected during one dosing interval. MEASUREMENTS AND RESULTS: Mean age and body weight of the patients studied were 46.6 yrs (range, 28-61 yrs) and 85.8 kg (range, 70-100 kg), respectively. The following pharmacokinetic variables for meropenem were obtained: mean peak plasma concentration was 24.5 +/- 7.2 mg/L, mean trough plasma concentration was 3.0 +/- 0.9 mg/L, mean terminal elimination half-life was 6.37 +/- 1.96 hrs, mean total plasma clearance was 4.57 +/- 0.89 L/hr, mean CWHF clearance was 1.03 +/- 0.42 L/hr, mean nonrenal clearance was 3.54 +/- 1.06 L/hr, and mean volume of distribution was 0.37 +/- 0.15 L/kg. CONCLUSION: In critically ill patients with acute renal failure, nonrenal clearance became the main elimination route. CWHF substantially contributed to the clearance of meropenem (23% of mean total plasma clearance). We recommend meropenem to be dosed at 500 mg intravenously every 12 hrs in patients receiving CWHF, according to our operational characteristics. This dosing regimen resulted in adequate trough plasma levels for susceptible microorganisms.

Acute Kidney Injury↗

Reduction of sympathetic hyperactivity by enalapril in patients with chronic renal failure.

BACKGROUND: Inhibition of angiotensin-converting enzyme (ACE) reduces the risk of cardiovascular problems in patients with chronic renal failure. This effect may be due in part to a decrease in sympathetic nervous activity, but no direct evidence of such an action is available. METHODS: We studied muscle sympathetic-nerve activity in 14 patients with hypertension, chronic renal failure, and increased plasma renin activity before, during, and after administration of the ACE inhibitor enalapril. Ten other patients with similar clinical characteristics were studied before and during treatment with the calcium-channel blocker amlodipine. Normal subjects matched for age and weight were included in both studies. RESULTS: At base line, mean (+/-SD) muscle sympathetic-nerve activity was higher in the group of patients who received enalapril than in the control subjects (35+/-17 vs. 19+/-9 bursts per minute, P=0.004). The baroreflex curve, which reflects changes in muscle sympathetic-nerve activity caused by manipulations of blood pressure with sodium nitroprusside and phenylephrine, was shifted to the right in the patients, but baroreflex sensitivity was similar to that in the control subjects (-2.1+/-1.9 and -2.7+/-1.3 bursts per minute per mm Hg, respectively; P=0.36). A single dose of the sympatholytic drug clonidine caused a greater fall in blood pressure in the patients than in the control subjects. Treatment with enalapril normalized blood pressure and muscle sympathetic-nerve activity (at 23+/-10 bursts per minute) in the patients and shifted the baroreflex curve to the left, reflecting normal blood-pressure levels, without significantly changing sensitivity (-2.3+/-1.8 bursts per minute per mm Hg, P=0.96). In the patients who received amlodipine, treatment also lowered blood pressure but increased muscle sympathetic-nerve activity, from 41+/-19 to 56+/-14 bursts per minute (P=0.02). CONCLUSIONS: Increased sympathetic activity contributes to hypertension in patients with chronic renal disease. ACE inhibition controls hypertension and decreases sympathetic hyperactivity.

Amlodipine↗

Vancomycin clearance during continuous venovenous haemofiltration in critically ill patients.

OBJECTIVE: To study the pharmacokinetics of vancoymcin in critically ill patients with acute renal failure treated with continuous venovenous haemofiltration (CVVHF). DESIGN: Open-label study. SETTING: Hospital pharmacy centre and medical intensive care unit of the University Medical Centre Utrecht. MATERIALS AND METHODS: In a laboratory setting, the sieving coefficient (s) of vancomycin by polyacrilonitrile (PAN) haemofilters of different surface areas was studied. In one patient, the pharmacokinetics of vancomycin were studied following a single dose of vancomycin. Another patient was treated with a vancomycin dosing regimen based on data from the literature, but high trough concentrations made dose reduction necessary after 24 h of withholding therapy. After two doses of 250 mg, serum and ultrafiltrate samples were collected for pharmacokinetic evaluation. INTERVENTIONS++: CVVHF with the following operational characteristics: blood flow 200 ml/min, ultrafiltrate flow 25 ml/min, postdilution, PAN 06 hollow fibre haemofilter. MEASUREMENTS AND RESULTS: The average sieving coefficient in vitro was 0.73 +/- 0.06, 0.86 +/- 0.11, and 0.80 +/- 0.06 for the PAN 03, 06, and 10 haemofilters, respectively. Changes in the sieving coefficient by increasing the ultrafiltration rate were not clinically significant. The first patient was given a single dose of vancomycin, 1000 mg by intravenous infusion. The following pharmacokinetic data were obtained: apparent volume of distribution (Vd) 55.8 l, terminal half-life time (t(1/2 term)) 15.4 h, total clearance (Cl(tot)) 2.5 l/h, CVVHF clearance (CL(CVVHF, form 1)) 1.4 l/h, and body clearance (Cl(body)) 1.1 l/h. The average sieving coefficient during the study period was 0.89 +/- 0.03. In the second patient, the pharmacokinetics of vancomycin were studied following dose reduction: Vd 41.7 l, (1/2 term) 20.3 h, Cl(tot) 1.4 l/h, Cl(CVVHF, form 1) 1.4 l/h, and Cl(body) < 0.1 l/h. The average sieving coefficient during the study period was 0.88 +/- 0. 03. The cumulative amount of vancomycin removed by means of CVVHF during the 12-h study period was 245 mg in patient 1 and 228 mg in patient 2. CONCLUSIONS++: CVVHF with a PAN 06 haemofilter effectively removed vancomycin in two critically ill patients. The amount of vancomycin removed with CVVHF was about 250 mg per 12 h. A clear difference in body clearance in the two patients was observed. Our dosage recommendation for vancomycin in critically ill patients receiving CVVHF is a loading dose of 15-20 mg/kg followed after 24 h by 250 to 500 mg twice daily with close monitoring of the serum and ultrafiltrate vancomycin concentration.

Acrylic Resins↗

Haemodialysis access: the case for prospective monitoring.

Thrombosis in haemodialysis accesses remains a major problem. It is associated with stenosis that causes haemodynamic and anatomical changes. By prospective monitoring it is possible to identify patients at risk of thrombosis. Those patients should be referred for corrective intervention. This approach can result in a thrombosis rate below the advised quality of care standard of 0.5 thromboses/patient-year.

Catheters, Indwelling↗

A comparison between PTFE and denatured homologous vein grafts for haemodialysis access: a prospective randomised multicentre trial. The SMASH Study Group. Study of Graft Materials in Access for Haemodialysis.

OBJECTIVES: To compare patency and complication rates of polytetrafluoroethylene (PTFE) grafts and denatured homologous vein (DHV) grafts for long-term haemodialysis. DESIGN: A prospective randomised multicentre trial. MATERIALS: One hundred and thirty-one patients were enrolled between September 1994 and April 1997. Sixty-three DHV grafts and 68 PTFE grafts were implanted in 60 meals and 71 females. Complications and interventions were monitored. Patency rates, complication rates, and intervention rates of PTFE and DHV were compared. RESULTS: The mean follow-up was 313 days for DHV (range 1-771) and 339 (3-909) days for PTFE. The total follow-up was 54.1 patient-years for DHV and 63.1 for PTFE. The 1-year primary patency rates were 30% and 40% for DHV and PTFE respectively. Secondary patency rate was 63% for both DHV and PTFE. Most frequent complication was thrombosis. A total of 75 thrombotic events (1.39 per patient-year) occurred in 35 (56%) DHV grafts and 78 (1.24 per py) in 36 (53%) PTFE grafts. A total of nine infections were seen in nine (14%) DHV grafts, whereas 21 infections in 20 (29%) PTFE grafts were seen (p = 0.08). All but one infected DHV graft could be salvaged with systemic antibiotics. In contrast, surgical intervention was necessary in nine PTFE grafts (p = 0.02). For aneurysms, eight DHV and two PTFE grafts needed revision (p = 0.03). CONCLUSION: Patency rates between DHV and PTFE were not different. More infections were seen in PTFE grafts, and significantly more PTFE grafts needed surgical revision or removal because of infection. Significantly more DHV grafts were surgically revised or removed because of aneurysms.

Aged↗

Graft flow as a predictor of thrombosis in hemodialysis grafts.

BACKGROUND: The effort to reduce the incidence of graft thrombosis is mainly based on predicting venous stenosis by measuring venous drip chamber pressures. In this study we evaluated whether graft flow measurements, using an ultrasound dilution technique, would be of additional value to identify patients at risk for thrombosis. METHODS: In fifty consecutive patients with a bridge graft we measured graft flow and venous drip chamber pressure at a dialyzer blood flow of 200 ml/min. The results of these flow measurements were not used for selection of patients, nor for a diagnostic or therapeutic procedure. All thrombotic events and (radiological or surgical) interventions were registered. RESULTS: A total of 17 patient-years were analyzed. In 17 patients an intervention was done, and in 18 patients thrombosis occurred. The incidence rate of thrombosis was higher in patients with a flow < 600 ml/min (N = 13) compared to patients with a flow > 600 ml/min (N = 37; rate ratio 7. 2; 95% CI, range 2.84 to 18.24, P < 0.001). In 4 patients with a flow < 600 ml/min an intervention was done within the first two months after the flow measurement. In the remaining 9 patients, 6 grafts thrombosed within this period. Five interventions were done in patients with a flow > 600 ml/min. In the remaining 32 patients only two developed spontaneous thrombosis. Remarkably, venous drip chamber pressure measurements did not discriminate between patients with graft flow > or < 600 ml/min, and showed a wide range in patients who developed spontaneous thrombosis within two months. CONCLUSION: We suggest that graft flow measurements are helpful in selecting patients at risk for graft thrombosis.

Catheters, Indwelling↗