TL;DR: A new extraction technique has been devised whereby the stones can be removed through a percutaneous nephrostomy under radiological control.
Abstract: Recurrent renal calculous disease is often troublesome to treat because of technical difficulties associated with reoperation. Attempts to dissolve the stones by irrigation with various solutions has not had much success. A new extraction technique has therefore been devised whereby the stones can be removed through a percutaneous nephrostomy umder radiological control. Three cases are described.
TL;DR: Based upon a series of studies involving urinary infection, this article postulated that most cases of urinary tract infection are due to some underlying structural or functional abnormality of the urogenital tract which leads to decreased resistance of tissue and to bacterial invasion.
TL;DR: Tubeless percutaneous renal surgery is a safe procedure and offers numerous advantages over routine placement of a nephrostomy tube and the hospitalization, analgesia requirements, return to normal activities as well as cost are significantly less with this new technique.
TL;DR: The access sheath is potentially protective against pyelovenous and pyelolymphatic backflow, with clinical implications for the ureteroscopic management of upper-tract transitional cell carcinoma, struvite stones, or calculi associated with urinary tract infection.
Abstract: Background and Purpose: New-generation flexible ureteroscopes allow the management of proximal ureteral and intrarenal pathology with high success rates, including complete removal of ureteral and renal calculi. One problem is that the irrigation pressures generated within the collecting system can be significantly elevated, as evidenced by pyelovenous and pyelolymphatic backflow seen during retrograde pyelography. We sought to determine if the ureteral access sheath (UAS) can offer protection from high intrarenal pressures attained during routine ureteroscopic stone surgery. Patients and Methods: Five patients (average age 72.6 years) evaluated in the emergency department for obstructing calculi underwent percutaneous nephrostomy (PCN) tube placement to decompress their collecting systems. The indications for PCN tube placement were obstructive renal failure (N = 1), urosepsis (N = 2), and obstruction with uncontrolled pain and elevated white blood cell counts (N = 2). Flexible ureteroscopy was subsequen...
TL;DR: To report the experience with over 300 patients treated with percutaneous nephrolithotomy (PNL), for although PNL was established as a treatment in the 1970s, its use diminished with the introduction of extracorporeal shockwave lithotripsy (ESWL); clinical experience with ESWL showed its limitations.
Abstract: OBJECTIVE To report our experience with over 300 patients treated with percutaneous nephrolithotomy (PNL), for although PNL was established as a treatment in the 1970s, its use diminished with the introduction of extracorporeal shockwave lithotripsy (ESWL); clinical experience with ESWL showed its limitations, and the role of PNL for treating urolithiasis was redefined, which with improvements in instruments and lithotripsy technology has expanded the capability of percutaneous stone disintegration. PATIENTS AND METHODS The study included 315 patients (156 males, 159 females, aged 13-85 years) treated with PNL in our department between 1987 and 2002. The mean (range) stone diameter was 27 (7-52) mm. The kidney was punctured under ultrasonography guidance via a lower-pole calyx whenever possible. The working channel was dilated using an Alken dilator under X-ray control. If necessary, a flexible renoscope was used. Ultrasonic, pneumatic and laser probes were used for lithotripsy. RESULTS Four weeks after treatment the total stone-free rate was 96.5%; 45.7% of all patients were primarily stone-free, 21.3% had clinically insignificant residual stones that passed spontaneously within 4 weeks after PNL, and 33% of the patients needed auxiliary measures (a second PNL, ESWL, ureterorenoscopy). Overall, the early complication rate was 50.8%, the most common complications being transient fever (27.6%), clinically insignificant bleeding (7.6%) or both (3.2%); 3.5% of the patients developed urinary tract infections (with no signs of urosepsis), 3.2% had renal colic and 2.9% upper urinary tract obstruction. One patient (0.3%) developed acute pancreatitis after PNL; one died from urosepsis and one needed selective angiographic embolization of the punctured kidney due to bleeding. No patient required transfusions and there were no injuries to neighbouring organs. CONCLUSIONS These results show that PNL causes no significant blood loss or major complications in almost all patients. Two aspects may especially reduce the potential complications: ultrasonography-guided renal puncture and using PNL in an experienced centre. PNL is a highly efficient procedure that provides fast and safe stone removal.