ICD-10-PCS Billable Code

B246YZZ

Ultrasonography Heart, Right and Left to None with None, Other Contrast Approach

Procedural Specifications

Clinical Axis Detail Definition
SectionB Imaging
Body System2 Heart
Operation4 Ultrasonography
Body Part6 Heart, Right and Left
ApproachY Other Contrast
DeviceZ None
QualifierZ None

Operation Definition

Real time display of images of anatomy or flow information developed from the capture of reflected and attenuated high frequency sound waves

Procedure Overview

Cardiac ultrasonography, commonly called echocardiography, sends high-frequency sound waves into the chest and reads the echoes bouncing off the heart's structures to build a live picture of it beating. Because the images update in real time, it shows the valves opening and closing, the walls thickening and thinning, and blood moving through the chambers, all without radiation or injected dye in its basic form. It is one of the most frequently ordered heart tests because it can be done quickly at the bedside and repeated often to track a patient's condition.

Clinicians use it to measure how forcefully the heart squeezes, to look for leaking or narrowed valves, to check for fluid around the heart, and to spot clots or masses inside the chambers. The probe may be placed on the chest wall for a standard exam or passed down the esophagus for a closer view when the chest approach is limited by body habitus, lung tissue, or the need for finer valve detail before surgery.

Anatomy & Axis Detail

Heart, Right and Left

Combined right and left heart ultrasonography images all four chambers and both atrioventricular and semilunar valves in a single study, giving a complete picture of biventricular size, function, and interaction. This comprehensive approach is used when the clinical question spans both sides of the heart, such as suspected pulmonary hypertension affecting right ventricular pressure and secondarily altering left ventricular geometry, congenital shunt lesions, or global cardiomyopathy where right ventricular function carries independent prognostic weight. Documentation typically captures right ventricular size and systolic function alongside standard left-sided measurements, interventricular septal motion, and any interchamber flow abnormality, since assessing the chambers together allows detection of interdependence that isolated single-sided imaging would miss, such as septal shift from right heart volume or pressure overload.

Contrast: Other Contrast

Other Contrast captures imaging studies using a contrast medium that is neither high- nor low-osmolar iodinated agent, such as barium sulfate for gastrointestinal studies or gadolinium-based agents for certain applications outside standard MRI classification within this axis. It is used when the contrast administered does not fit the osmolarity-based iodinated categories, distinguishing it from those specific classes and from studies performed with no contrast.

Coding & Documentation

The coder needs the report to specify that the heart itself was the target, and to identify whether the exam was transthoracic or transesophageal, since ICD-10-PCS distinguishes the approach through the body part or qualifier value used. Documentation should also make clear whether contrast microbubbles were administered, since intravenous echo contrast changes the qualifier assigned. A frequent mistake is coding a stress echocardiogram using only the resting ultrasound code without capturing that exercise or pharmacologic stress was involved, or conflating a transesophageal study with a transthoracic one when the approach is not stated explicitly in the note.

Commonly Confused With

Echocardiography is often confused with cardiac MRI and CT, both of which also image heart structure and function but through entirely different physical mechanisms and are billed under different modality tables; the report's stated technique resolves the distinction. It is also confused with vascular ultrasonography of the aorta or peripheral arteries, which examines flow in vessels rather than the heart chambers themselves, and with nuclear stress testing, which evaluates perfusion using radiotracers rather than reflected sound waves.