BQ42ZZZ
Ultrasonography Hips, Bilateral to None with None, None Approach
Procedural Specifications
| Clinical Axis | Detail Definition |
|---|---|
| Section | B Imaging |
| Body System | Q Non-Axial Lower Bones |
| Operation | 4 Ultrasonography |
| Body Part | 2 Hips, Bilateral |
| Approach | Z None |
| Device | Z None |
| Qualifier | Z 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 non-axial lower bones uses high frequency sound waves to create real-time images of the bones and joints of the pelvis, hip, femur, lower leg, ankle, and foot, apart from the spine and skull. Because sound waves bounce differently off bone, cartilage, fluid, and soft tissue, the resulting images help a clinician see fractures in infants and young children, assess joint effusions, evaluate suspected hip dysplasia in newborns, or check the position of hardware near a bone without exposing the patient to radiation.
This approach is favored in pediatric care because a child's bones are still largely cartilaginous and image well with sound waves, and because avoiding ionizing radiation matters more over a longer remaining lifespan. It is also used at the bedside or in urgent care settings when a quick look at a joint or suspected fracture is needed and an X-ray or MRI is not immediately practical.
The exam is painless and takes only a few minutes. A technologist or physician moves a handheld probe over the skin after applying a gel, and the images appear on a screen instantly, allowing the clinician to compare both sides of the body or watch a joint move in real time.
Anatomy & Axis Detail
Hips, Bilateral
Bilateral hip ultrasonography evaluates both joints in a single encounter, most classically in newborn screening for developmental dysplasia of the hip, where symmetric assessment of acetabular morphology and femoral head position in both hips is standard practice given the condition's frequent bilaterality and the value of side-to-side comparison. In adults, bilateral studies may be requested when symptoms are present on both sides, such as bilateral trochanteric bursitis or gluteal tendinopathy, allowing direct comparison of soft-tissue findings. Because the hip joint itself lies deep to substantial musculature, the sonographic examination in adults concentrates on periarticular structures and effusion rather than intra-articular bone or cartilage detail. Documentation of a bilateral study should reflect findings for each hip individually even though the encounter is coded as a single bilateral procedure.
Coding & Documentation
A coder assigns from this family when the documentation specifies an ultrasound study of a bone or joint outside the axial skeleton, such as the hip, femur, tibia, fibula, or foot bones. The note should name the specific body part imaged, since ICD-10-PCS distinguishes among hip, upper leg, lower leg, and foot as separate qualifiers within this body system.
Supporting documentation typically includes the ordering indication, the specific anatomic site, and whether the study was bilateral or unilateral, since laterality can change the code selected. A common assignment error is coding a general "lower extremity ultrasound" without pinning down the exact bone or joint, which leads to an unspecified or incorrect body part selection. Another frequent mistake is confusing a soft tissue ultrasound of the leg, such as one done to rule out a blood clot, with a bone-focused study; only the latter belongs in this family.
Commonly Confused With
This family is easily confused with fluoroscopy or plain radiography of the same body parts, but those use ionizing radiation and a different root operation and section entirely. It also overlaps conceptually with ultrasonography of the non-axial upper bones, so coders must confirm whether the imaged bone is in the arm or the leg before finalizing the body system. Vascular ultrasound of the lower extremities, which looks at blood flow rather than bone architecture, falls under a different body system and should not be mistaken for this one just because the anatomic region is similar.
