Renal Sonography
DIAGNOSTIC RADIOGRAPHY · NTA LEVEL 4 · SEMESTER TWO Renal Sonography CRT04210 · Ultrasound Imaging START READING NOTES Study Renal Sonography using the sections below. Use the topic navigation to continue through Ultrasound Imaging. Contents of This Topic URINARY SYSTEM -SONOGRAPHY EMBRYOLOGY PHYSIOLOGY Functions of the Urinary System Renal Anatomical Variants 1.Agenesis SONOGRAPHIC FINDINGS Cake kidney Crossed fused ectopia Duplication Horseshoe kidney Pelvic kidney Renal ptosis Sono Abnormal mobility of a kidney Sigmoid kidney Thoracic kidney Retrocaval Ureter SIZE Child Infant TECHNIQUE • Spatial compounding can be used to improve visualization of structures posterior to a highly attenuating structure. Prevoid and postvoid bladder volumes may be included. Simple cyst Sono-findings Parapelvic cyst Peripelvic cyst Adult polycystic kidney disease Multicystic dysplasia Renal abscess Acute tubular necrosis (ATN) Chronic renal failure Glomerulonephritis Pyelonephritis Pyonephrosis Emphysematous Pyelitis Tuberculosis Three parasitic infections of the urinary tract: Schistosomiasis Hydronephrosis(rerfe to previous lectures) Grade 1 Ddx Hydroureter Nephrolithiasis-previous lectures Adenoma Angiomyolipoma Lipoma Medullary sponge kidney Mesoblastic nephroma Nephrocalcinosis Renal sinus lipomatosis Renal cell carcinoma Clinical findings Wilms’ tumor (nephroblastoma) Metastases Infarction Renal artery stenosis Renal artery aneurysm Doubling of the normal artery Arteriovenous fistula sono Renal vein thrombosis Renal vein tumor extension Bladder exstrophy Bladder diverticulum Bladder ureterocele Urachal sinus Bladder calculus Cystitis Bladder sludge Bladder malignancy Bladder polyp Bladder Fistulas URINARY SYSTEM -SONOGRAPHY MDU EMBRYOLOGY Discuss the embryology Development of the Kidneys and Ureter Development of the Bladder Development of the Urethra PHYSIOLOGY The nephron is the basic functional unit of the kidney. Each kidney contains over one million nephrons. Functions of the Urinary System Produces urine and erythropoietin. Influences blood pressure, blood volume, and intake or excretion of salt and water through the renin–angiotensin system. Regulates serum electrolytes. Regulates acid–base balance. RENAL ANATOMY(REFERS TO PREVIOUS LECTURES) Renal Vasculature(REFERS TO PREVIOUS LECTURES) Pause Renal Anatomical Variants Refers to previous lectures Hypertrophied column of Bertin Congenital Anomalies 1.Agenesis Absence of the kidney(s) Unilateral or bilateral Clinical findings Asymptomatic when unilateral Fatal when bilateral Associated with genital anomalies SONOGRAPHIC FINDINGS Empty renal fossa(e) Large, contralateral kidney Ddx Pelvic kidney Surgical removal Crossed fused ectopia Cake kidney Variant of a horseshoe kidney Found in the pelvis Clinical findings Asymptomatic Pelvic mass SONOGRAPHIC FINDINGS Fusion of entire medial aspect of both kidneys Anterior rotation of the renal pelvis Ddx Crossed fused ectopia Renal mass Crossed fused ectopia Both kidneys are fused in the same quadrant Two separate collecting systems Two normally located adrenal glands Clinical findings Asymptomatic Abdominal mass SONOGRAPHIC FINDINGS One single, large kidney Irregular contour Inferior pole is directed medially Ddx Renal mass Cake kidney Sigmoid kidney Duplication Two distinct collecting systems May involve kidney, ureter, and/or renal pelvis May be partial or complete Clinical findings Asymptomatic Flank pain SONOGRAPHIC FINDINGS Increase in renal length Two distinct collecting systems The superior system is most likely to obstruct Ddx Hypertrophied column of Bertin Renal mass Horseshoe kidney Fusion of the kidneys usually at the inferior poles Connected by an isthmus of functioning parenchyma or nonfunctioning fibrotic tissue Anterior rotation of the renal pelves and ureters Separate collecting systems Most common form of renal fusion Clinical findings Asymptomatic Pulsatile abdominal mass SONOGRAPHIC FINDINGS Bilateral low-lying medially placed kidneys with partial or complete fusion of the inferior poles “Dipping effect” of both inferior poles Isthmus of tissue demonstrated anterior to the abdominal aorta Isthmus echo texture is similar to the renal cortex Ddx Renal mass Lymphadenopathy Bowel Retroperitoneal tumor Pelvic kidney Failure to ascend with development Associated with a short ureter Renal artery and vein are located more inferior Renal vein drains directly into the inferior vena cava (IVC) Asymptomatic Pelvic pain SONOGRAPHIC FINDINGS Elongated core of echogenic tissue surrounded by less echogenic parenchyma Located in the lower abdomen or pelvis Empty ipsilateral renal fossa Lies in an oblique plane Ddx Bowel Pelvic mass Renal ptosis Unusual mobile kidney that descends from the normal position toward the pelvis Poor support structures Clinical findings Asymptomatic Sono Abnormal mobility of a kidney Ddx Pelvic kidney Horseshoe kidney note Nephroptosis is a rare condition where a person's kidney drops down into the pelvis when they stand up. Sigmoid kidney Variant of the horseshoe kidney clinical findings Asymptomatic Abdominal mass SONOGRAPHIC FINDINGS Superior pole of one kidney is fused with the inferior pole of the contralateral kidney S-shaped Ddx Bowel Abdominal mass Thoracic kidney migrates into the chest through a herniation in the diaphragm Rare finding Clinical findings Chest mass SONOGRAPHIC FINDINGS Elongated core of echogenic tissue surrounded by less echogenic parenchyma Located in the chest Not easily demonstrated on ultrasound Ddx Chest mass Hypoplasia Ureteropelvic Junction Obstruction Congenital Megacalyces Congenital Megaureter Retrocaval Ureter Circumcaval ureter, also known as retrocaval ureter, is a term used to describe an abnormal course of a ureter that encircles the inferior vena cava. SIZE Adult 9.0 to 12.0 cm in length. 4.0 to 5.0 cm in width. 2.5 to 3.0 cm in height. Minimum of 1 cm in cortical thickness. Child 7.0 to 8.0 cm in length. Formula(expected size) Infant 5.0 to 6.0 cm in length. Formula (expected size) Normal Sonographic Appearance—Adult Kidney Normal Sonographic- Pediatric Kidney TECHNIQUE Examination Technique and Imaging Optimization Use the highest-frequency abdominal transducer possible to obtain optimal resolution for penetration depth. Place gain settings to display the normal adult renal cortex as moderate or low-level echogenicity and the renal sinus as the most echogenic with adjustments to reduce echoes within the vessels. Position the focal zone(s) at or below the region of interest. Sufficient imaging depth to visualize structures posterior to the region of interest. Harmonic imaging and decreasing the compression (dynamic range) can be used to reduce artifactual echoes within anechoic structures and improve prominence of posterior acoustic shadowing. • Spatial compounding can be used to improve visualization of structures posterior to a highly attenuating structure. Evaluation and documentation of the superior, inferior, medial, and lateral aspects of each kidney in the coronal or sagittal plane. Evaluation and documentation of the superior pole, renal hilum, and inferior pole of each kidney