Renal Pelvis

The renal pelvis is a funnel-shaped structure within the kidney that collects urine and directs it toward the ureter, making it an essential connection between urine-producing tissue and the urinary tract. Urine drains from the renal papillae into the minor and major calyces, which merge into the renal pelvis; smooth muscle contractions and pressure gradients then propel urine through the ureter to the bladder. Studying the renal pelvis helps explain urine transport, kidney drainage, and the effects of urinary obstruction. Its anatomy is also important in biology, medical imaging, and the diagnosis of hydronephrosis, kidney stones, and other urinary tract disorders.

Renal Pelvis - Related Videos

Research

JoVE EoE - Bacterial Pathogenesis and Host Interactions

Intrarenal Injection of E. coli into the Renal Pelvis of a Rat

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2026

Source: Gupta, K., et al. Intrarenal Injection of Escherichia coli in a Rat Model of Pyelonephritis. J. Vis. Exp. (2017).This video demonstrates the intrarenal injection of E. coli into the renal pelvis of an anesthetized rat to induce a localized kidney infection, modeling acute pyelonephritis. It highlights key surgical steps and aseptic techniques necessary for establishing a reproducible in vivo infection model for downstream analysis.

Hydrodynamic Renal Pelvis Injection: A Technique to Directly Deliver DNA into Kidney Cells of Murine Model

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2023

In this video, we present the protocol for hydrodynamic injection of plasmids into the renal pelvis of the mouse kidney for nucleic acid transfection. This technique allows organ-specific delivery of plasmids by utilizing the principle of high hydrostatic pressure, which forcefully drives the plasmids into the specific site without causing tissue injury.

Hydrodynamic Renal Pelvis Injection for Non-viral Expression of Proteins in the Kidney

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Cited by 10 •

2018

This protocol describes a method to inject plasmid DNA into the mouse kidney via the renal pelvis to produce transgene expression specifically in the kidney.

Research

JoVE Journal - Medicine
Free Sample

Early Detection of Drug-Induced Renal Hemodynamic Dysfunction Using Sonographic Technology in Rats

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Cited by 14 •

2016

Early stage hemodynamic dysfunction is critical to the development of kidney disease. Yet, detection methodologies are limited. Recent advances in sonography provide a noninvasive, accurate option for early detection of kidney injury. This study outlines a step-by-step, sonographic methodology for detecting kidney dysfunction using a drug-induced nephrotoxicity rat model.

Research

JoVE Journal - Biology
Free Sample

Isolating and Imaging Live, Intact Pacemaker Regions of Mouse Renal Pelvis by Vibratome Sectioning

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Cited by 1 •

2021

The goal of this protocol is to isolate intact pacemaker regions of the mouse renal pelvis using vibratome sectioning. These sections can then be used for in situ Ca2+ imaging to elucidate Ca2+ transient properties of pacemaker cells and other interstitial cells in vibratome slices.

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