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1.
Eur J Oncol Nurs ; 65: 102333, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37295278

ABSTRACT

PURPOSE: Timely and effective physical activity (PA) prehabilitation is an evidence-based approach for improving a patient's health status preoperatively. Identifying barriers and facilitators to PA prehabilitation can help inform best practices for exercise prehabilitation program implementation. We explore the barriers and facilitators to PA prehabilitation in patients undergoing nephrectomy. METHODS: A qualitative exploratory study was conducted by interviewing 20 patients scheduled for nephrectomy. Interviewees were selected via convenience sampling strategy. The interviews were semi-structured and discussed experienced and perceived barriers/facilitators to PA prehabilitation. Interview transcripts were imported to Nvivo 12 for coding and semantic content analysis. A codebook was independently created and collectively validated. Themes of barriers and facilitators were identified and summarized in descriptive findings based on frequency of themes. RESULTS: Five relevant themes of barriers to PA prehabilitation emerged: 1) mental factors, 2) personal responsibilities, 3) physical capacity, 4) health conditions, and 5) lack of exercise facilities. Contrarily, facilitators potentially contributing to PA prehabilitation adherence in kidney cancer included 1) holistic health, 2) social and professional support, 3) acknowledgment of health benefits, 4) exercise type and guidance, and 5) Communication channels. CONCLUSION AND KEY FINDINGS: Kidney cancer patient's adherence to physical activity prehabilitation is influenced by multiple biopsychosocial barriers and facilitators. Hence, adherence to physical activity prehabilitation requires timely adaptation of health beliefs and behavior embedded in the reported barriers and facilitators. For this reason, prehabilitation strategies should strive to be patient-centered and include health behavioral change theories as underlying frameworks for sustaining patient engagement and self-efficacy.


Subject(s)
Kidney Neoplasms , Preoperative Exercise , Humans , Exercise , Qualitative Research , Kidney Neoplasms/surgery
2.
J Urol ; 195(6): 1886-90, 2016 06.
Article in English | MEDLINE | ID: mdl-26804752

ABSTRACT

PURPOSE: Ureteral stent placement for decompressing renal units obstructed by calculi is safe and can be potentially lifesaving in the prompt resolution of the sequelae of renal obstruction, infection and an obstructing stone. At many institutions there can be prolonged delay in getting patients to the operating room for stent placement. We hypothesized that it is safe and efficacious to attempt ureteral stent placement using local anesthesia at the bedside without live fluoroscopic guidance. MATERIALS AND METHODS: Patients presenting with symptomatic, obstructing ureteral calculi were given the option of bedside ureteral stent placement. Viscous lidocaine was placed into the urethra before flexible cystoscopic examination. A 260 cm Glidewire® was used as initial access with only 1 attempt at passage. All stent placements were confirmed with immediate post-procedure radiograph. Prospectively collected data were retrospectively analyzed for all patients who underwent attempted bedside ureteral stent placement. RESULTS: A total of 42 patients underwent attempted bedside stent placement under local anesthesia without fluoroscopic guidance. Mean stone size was 8.3 mm and 71% of stones were in the proximal ureter. Ureteral stent placement was pursued in 14% of patients for infection and in 59% for intractable pain. Ureteral stent placement was successful in 30 patients (71%). Statistical analysis did not reveal any significant predictors of successful stent placement in this cohort of patients. CONCLUSIONS: In our cohort bedside ureteral stent placement was well tolerated, safe and efficacious, thus expediting upper tract decompression in the setting of obstructed renal units in more than 70% of patients.


Subject(s)
Anesthesia, Local , Point-of-Care Systems , Stents , Ureteral Calculi/therapy , Ureteral Obstruction/therapy , Adult , Aged , Cystoscopy , Female , Humans , Male , Middle Aged , Retrospective Studies
3.
J Urol ; 174(2): 590-4; quiz 801, 2005 Aug.
Article in English | MEDLINE | ID: mdl-16006907

ABSTRACT

PURPOSE: We evaluated the effect of cranberry juice on urinary stone risk factors. MATERIALS AND METHODS: A total of 12 normal subjects and 12 calcium oxalate stone formers underwent 2, 7-day phases of study in random order while on a controlled metabolic diet. Subjects ingested 1 l of cranberry juice (CBJ) daily in 1 phase and 1 l of deionized water in the other phase. On the last 2 days of each phase 2, 24-hour urine collections and blood samples were obtained for stone risk factors and serum chemistries. RESULTS: No significant differences were found between normal subjects and stone formers in response to CBJ and, therefore, the groups were combined. CBJ significantly increased urinary calcium (from 154 to 177 mg per day, p =0.0008) and urinary oxalate (from 26.4 to 29.2 mg per day, p =0.04), thereby increasing urinary saturation of calcium oxalate by 18%. Urinary citrate was unchanged and urinary magnesium increased slightly. Urinary pH decreased (from 5.97 to 5.67, p =0.0005), and urinary ammonium, titratable acidity and net acid excretion increased during CBJ ingestion. Urinary uric acid decreased (from 544 to 442 mg per day, p <0.0001) as did serum uric acid. Thus, the urinary saturation of brushite and monosodium urate was reduced by CBJ but the amount of undissociated uric acid increased. CONCLUSIONS: CBJ exerts a mixed effect on urinary stone forming propensity. It reduces urinary pH likely by providing an acid load and decreases urinary uric acid perhaps by retarding urate synthesis. Overall CBJ increases the risk of calcium oxalate and uric acid stone formation but decreases the risk of brushite stones.


Subject(s)
Food , Urinary Calculi/prevention & control , Vaccinium macrocarpon , Acid-Base Equilibrium , Adult , Female , Humans , Male , Phosphorus/urine , Risk Factors , Uric Acid/metabolism
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