ICD-10-PCS Billable Code

BU46ZZZ

Ultrasonography Uterus to None with None, None Approach

Procedural Specifications

Clinical Axis Detail Definition
SectionB Imaging
Body SystemU Female Reproductive System
Operation4 Ultrasonography
Body Part6 Uterus
ApproachZ None
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

Ultrasonography of the female reproductive system uses high frequency sound waves, not radiation, to create real time images of the uterus, ovaries, fallopian tubes, and surrounding pelvic structures. It is one of the most frequently used tools in gynecology and obstetrics because it is quick, does not require ionizing radiation, and can be performed either through the abdomen or with a probe placed in the vagina for a closer, more detailed view.

This type of imaging is ordered to investigate pelvic pain, abnormal bleeding, suspected fibroids or ovarian cysts, infertility evaluations, and to monitor a pregnancy at any stage, including checking fetal growth, position, and heartbeat. Because the images are captured in real time, the study can also assess blood flow through vessels using Doppler technique, which helps evaluate masses or placental function.

Most patients experience it as a routine, low-risk procedure, though a transvaginal exam requires some preparation, such as a full bladder for the abdominal portion or an empty bladder for the internal portion, depending on what the physician needs to see.

Anatomy & Axis Detail

Uterus

Ultrasonography of the uterus is the first-line imaging test for the organ because it is inexpensive, avoids radiation, and, especially via the transvaginal approach, provides excellent resolution of the endometrium and myometrium. It is used to evaluate abnormal uterine bleeding, to measure endometrial thickness, to characterize fibroids by size and location, and to assess for adenomyosis or congenital uterine anomalies, often as the initial study before MRI is considered for indeterminate findings. Sonohysterography, in which saline is instilled into the endometrial cavity, may be performed as part of this study to better outline polyps or submucosal fibroids distorting the cavity. Because uterine position and size vary with parity and menstrual cycle phase, findings are interpreted in that clinical context, and the code applies regardless of transabdominal or transvaginal technique.

Coding & Documentation

A code from this family is assigned when documentation confirms sound wave based imaging, not CT, MRI, or x-ray, was used, and specifies the body part examined, such as uterus, ovary, or pregnant uterus for obstetric studies. The approach, transabdominal versus transvaginal, is not separately coded in ICD-10-PCS the way it might be in CPT, but the body part value must still match what the report describes.

Coders should look for the word ultrasound or sonography explicitly in the imaging report rather than assuming it from the ordering department. A common error is defaulting to a generic pelvic ultrasound code when the documentation actually specifies a more precise structure, such as the ovary alone, or confusing a pregnancy related ultrasound with a routine gynecologic study, since obstetric ultrasounds use distinct body part values under the pregnant uterus.

Another frequent mistake is coding a Doppler ultrasound as if it were a separate root operation; Doppler flow studies still fall under Ultrasonography in this system.

Commonly Confused With

This family is often confused with Fluoroscopy or Plain Radiography of the same region when a report casually says imaging without stating the modality clearly. The deciding factor is always the energy source: ultrasonography uses sound waves, while fluoroscopy and radiography use ionizing radiation, so the coder must verify the modality name in the report before assigning either. It can also be mixed up with CT or MRI studies of the pelvis ordered for similar clinical reasons, such as evaluating a mass; the distinction again rests strictly on which imaging technology generated the images, not on why the study was ordered.