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  • Kotanko, Peter  (2)
  • 1
    In: Seminars in Dialysis, Wiley, Vol. 30, No. 6 ( 2017-11), p. 501-508
    Abstract: Abnormal decreases in blood pressure during hemodialysis are frequent in end stage renal disease ( ESRD ) patients treated with hemodialysis, and thought to be largely due to an inadequate cardiovascular response to the rapid blood volume decline. Intradialytic hypotension ( IDH ) and cardiac instability during dialysis can increase risks for negative health consequences and is possibly preventable though several types of interventions. One intervention that holds promise for prevention of IDH in hemodialysis patients is to reduce the temperature of the dialysate to or below the patient's core temperature. A considerable number of randomized studies have demonstrated a short term benefit of using a cooler dialysate temperature for the prevention of IDH and improved cardiac stability. Despite this, a key observational study was not able to show long term improvements with lower dialysate temperatures utilized in routine clinical practice, albeit possibly confounded by indication. It appears that cooling the dialysate may be reasonable to consider on an individual basis for patients who suffer from persistent IDH if they can tolerate the adjustment and it is effective. However, careful assessment of the etiology of IDH should be performed when considering treatment options. In this review, we detail the current body of evidence on the effectiveness of using low dialysate temperatures for prevention of IDH in ESRD patients, and suggest areas where further research is needed.
    Type of Medium: Online Resource
    ISSN: 0894-0959 , 1525-139X
    URL: Issue
    Language: English
    Publisher: Wiley
    Publication Date: 2017
    detail.hit.zdb_id: 2010756-0
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  • 2
    In: Kidney360, Ovid Technologies (Wolters Kluwer Health), Vol. 1, No. 2 ( 2020-02), p. 93-105
    Abstract: All life on earth has adapted to the effects of changing seasons. The general and ESKD populations exhibit seasonal rhythms in physiology and outcomes. The ESKD population also shows secular trends over calendar time that can convolute the influences of seasonal variations. We conducted an analysis that simultaneously considered both seasonality and calendar time to isolate these trends for cardiovascular, nutrition, and inflammation markers. Methods We used data from adult patients on hemodialysis (HD) in the United States from 2010 through 2014. An additive model accounted for variations over both calendar time and time on dialysis. Calendar time trends were decomposed into seasonal and secular trends. Bootstrap procedures and likelihood ratio methods tested if seasonal and secular variations exist. Results We analyzed data from 354,176 patients on HD at 2436 clinics. Patients were 59±15 years old, 57% were men, and 61% had diabetes. Isolated average secular trends showed decreases in pre-HD systolic BP (pre-SBP) of 2.6 mm Hg (95% CI, 2.4 to 2.8) and interdialytic weight gain (IDWG) of 0.35 kg (95% CI, 0.33 to 0.36) yet increases in post-HD weight of 2.76 kg (95% CI, 2.58 to 2.97). We found independent seasonal variations of 3.3 mm Hg (95% CI, 3.1 to 3.5) for pre-SBP, 0.19 kg (95% CI, 0.17 to 0.20) for IDWG, and 0.62 kg (95% CI, 0.46 to 0.79) for post-HD weight as well as 0.12 L (95% CI, 0.11 to 0.14) for ultrafiltration volume, 0.41 ml/kg per hour (95% CI, 0.37 to 0.45) for ultrafiltration rates, and 3.30 (95% CI, 2.90 to 3.77) hospital days per patient year, which were higher in winter versus summer. Conclusions Patients on HD show marked seasonal variability of key indicators. Secular trends indicate decreasing BP and IDWG and increasing post-HD weight. These methods will be of importance for independently determining seasonal and secular trends in future assessments of population health.
    Type of Medium: Online Resource
    ISSN: 2641-7650
    Language: English
    Publisher: Ovid Technologies (Wolters Kluwer Health)
    Publication Date: 2020
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