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KARL STORZ nephroscope mip m system
Nephroscope Mip M System, supplied by KARL STORZ, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/nephroscope/nephroscope+mip+m+system/pmc12166822-27-2-7
Average 90 stars, based on 1 article reviews
nephroscope mip m system - by Bioz Stars, 2026-09
90/100 stars

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Article Title: The Vortex Effect in Minimally Invasive Percutaneous Nephrolithotomy.
Article Snippet: OBJECTIVE To describe the physical principles of the vortex effect to better understand its applicability in minimally invasive percutaneous nephrolithotomy (MIP) procedures.. METHODS Two acrylic phantom models were built based on the cross-sectional area (CSA) ratio of a MIP nephroscope and access sheaths (15/16F and 21/22F MIP-M, Karl Storz).. The nephroscope phantom was 10 mm in diameter.

Article Title: "Trilogy™ vs. 100W Ho: YAG Laser for Lithotripsy in Mini-PCNL: Superior Stone-Free Rates in a Randomized Controlled Trial".
Article Snippet: Urologists performing Mini-PCNL typically rely on the Holmium laser as the primary lithotripsy method.15-16 In addition to the Holmium laser, newer lithotripsy options include the Thulium fiber laser (TFL), pulsed Thulium:YAG lasers, and the recently introduced dual single-probe lithotripters, such as TrilogyTM and ShockpulseTM.17 After lithotripsy, stone fragments in Mini-PCNL are removed using the Venturi effect of the MIP-M nephroscope (Karl Storz Medical).

Article Title: Mini-percutaneous nephrolithotomy: Is smaller better for kidney stones in patients with neurogenic bladder?
Article Snippet: Introduction: Patients with neurologic bladder are at an increased risk for urolithiasis, and currently, data on minipercutaneous nephrolithotomy in this population are limited.. Our objective was to compare mini (15F)percutaneous nephrolithotomy, standard (24F)-PCNL and flexible ureteroscopy in terms of efficacy and safety in treatment of kidney stones in patients with neurogenic lower urinary tract dysfunction (NLUTD).. Methods: We conducted a retrospective monocentric study in our neuro-urological referral centre.

Article Title: Safety and Effectiveness of Large-Bore Percutaneous Cholangioscopy-Assisted Gallstone Retrieval for Inoperable Calculous Cholecystitis: A Multi-Institutional Retrospective Study.
Article Snippet: Materials and Methods: A retrospective analysis was conducted on patients who underwent percutaneous cholangioscopy for gallstone extraction using large-bore access (24 or 30 F) at 2 large academic centers from September 2020 and August 2022.. Technical success, procedure duration, fluoroscopy time, immediate postprocedural symptom reduction, 3-month symptom-free outcomes, and adverse events (AEs) were assessed.

Article Title: Tubeless mini-percutaneous nephrolithotomy to remove a staghorn stone concurrent with proximal ureteral calculus in an elderly patient: A case report
Article Snippet: The stone fragments were retrieved with grasper forceps or Venturi effect through a 12 Fr nephroscope MIP-M system (Karl Storz, City, Germany).

Article Title: Vacuum-assisted mini-ECIRS for calyceal diverticular stones in a recipient of a kidney transplant: A case report
Article Snippet: A 12 Fr nephroscope (MIP M system; Karl Storz, Tuttlingen, Germany) ( A) was introduced, and laser lithotripsy was performed using a 60 W thulium fiber laser system (SOLTIVETM; Olympus, MA, USA) with a 550-μm laser fiber, set at 1.5 J and 20 Hz.

Article Title: Simultaneously combining a thulium fiber laser and holmium:YAG laser in vacuum-assisted mini-endoscopic combined intrarenal surgery on a complex renal calculus: A case report
Article Snippet: Laser lithotripsy was performed using the fragmentation technique through a 12 Fr nephroscope MIP-M system (Karl Storz, Tuttlingen, Germany) with a 120 W Ho:YAG laser (Lumenis, San Jose, CA, USA) and a 550 μm core laser fiber with an energy of 1.5 J and a rate of 30 Hz ( ).



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(A) Fluoroscopic imaging showing insertion of a 6 Fr ureteral catheter into the renal collecting system. (B) Retrograde pyelography performed by injecting an iodine-based contrast medium under fluoroscopic guidance. (C) Patient positioned in the prone position, compatible with the C-arm fluoroscopy setup. (D) Chiba needle inserted into the calyx using the “eye-of-the-needle” technique, with confirmation of calyceal access by observing urine flow through the needle. (E) Fluoroscopic imaging of tract dilatation and Amplatz sheath placement into the calyx. The guidewire is correctly positioned, extending into the ureter. (F) Endoscopic view of renal calculi within the calyx using the <t>nephroscope,</t> prior to fragmentation and removal. PCNL: percutaneous nephrolithotomy
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(A) Fluoroscopic imaging showing insertion of a 6 Fr ureteral catheter into the renal collecting system. (B) Retrograde pyelography performed by injecting an iodine-based contrast medium under fluoroscopic guidance. (C) Patient positioned in the prone position, compatible with the C-arm fluoroscopy setup. (D) Chiba needle inserted into the calyx using the “eye-of-the-needle” technique, with confirmation of calyceal access by observing urine flow through the needle. (E) Fluoroscopic imaging of tract dilatation and Amplatz sheath placement into the calyx. The guidewire is correctly positioned, extending into the ureter. (F) Endoscopic view of renal calculi within the calyx using the nephroscope, prior to fragmentation and removal. PCNL: percutaneous nephrolithotomy

Journal: Cureus

Article Title: Percutaneous Nephrolithotomy Safety, Efficacy, and Outcomes: A 10-Year Experience of a Tertiary Care Center in South Lebanon

doi: 10.7759/cureus.84097

Figure Lengend Snippet: (A) Fluoroscopic imaging showing insertion of a 6 Fr ureteral catheter into the renal collecting system. (B) Retrograde pyelography performed by injecting an iodine-based contrast medium under fluoroscopic guidance. (C) Patient positioned in the prone position, compatible with the C-arm fluoroscopy setup. (D) Chiba needle inserted into the calyx using the “eye-of-the-needle” technique, with confirmation of calyceal access by observing urine flow through the needle. (E) Fluoroscopic imaging of tract dilatation and Amplatz sheath placement into the calyx. The guidewire is correctly positioned, extending into the ureter. (F) Endoscopic view of renal calculi within the calyx using the nephroscope, prior to fragmentation and removal. PCNL: percutaneous nephrolithotomy

Article Snippet: Throughout the last dilator, the working sheath of the nephroscope is placed, through which a 24 Fr rigid nephroscope (Karl Storz Endoskope, Tuttlingen, Germany) is used (Figure ).

Techniques: Imaging