The Towne’s Projection (AP Axial Skull) is an essential specialized cranial view designed to project the dense anterior facial bones and frontal structures away, providing an unobstructed, symmetrical view of the occipital bone, foramen magnum, petrous pyramids, dorsum sellae, and posterior clinoid processes.

1. Clinical Indications & Contraindications

Detailed Indications:

Contraindications & Limitations:

2. Technical Factors

ParameterRecommended SpecificationRadiographic Rationale
Source-to-Image Distance (SID)100 to 115 cm (40 to 44 inches)Standard distance; account for tube tilt to avoid grid cut-off
Image Receptor (IR)24 × 30 cm (10×12 inches)Longitudinal / Portrait orientation
Grid Ratio8: 1 to 12: 1Esfocused gridEssential to absorb scatter from thick occipital bone
Tube Potential (kVp)75 – 85 kVpHigh penetration needed to pass obliquely through the skull base
mAs Range28 – 40 mAsSlightly higher exposure than 0⁰ AP due to beam angulation path length
Focal SpotSmall (0.6 mm)High spatial resolution for fine margins inside the foramen magnum
BreathingSuspended respirationEliminates respiratory motion blur

3. Step-by-Step Patient & Part Positioning

AP Axial (Towne Method) Skull Positioning Diagram
AP Axial Skull (Towne Method): Patient Positioning
Occipital & Foramen Magnum View
Central Ray: Caudad Tube Angle
30° Caudad (OML ⟂) OR 37° Caudad (IOML ⟂)

Enters 2.5″ (6.5 cm) Superior to Glabella ➔ Exits Foramen Magnum
Orbitomeatal Line (OML) ⟂ IR (90°)
(Standard protocol paired with 30° caudal tilt)
IOML ⟂ IR (90°) [Trauma / Geriatric Alternate]
(Requires 37° caudal tilt to compensate)
Mid-Sagittal Plane (MSP) ⟂ IR (90°)
(Aligned with vertical midline to prevent rotation)
[ Image Receptor Surface ]
Top of cassette placed at the level of the cranial vertex
1

Entry Point (2.5″ Above Glabella)

Directs the angled beam through the hairline/forehead to pass directly through the foramen magnum and base of skull.

2

OML vs. IOML Baseline Selection

Use 30° caudad with OML perpendicular; if the patient cannot tuck the chin sufficiently, align IOML perpendicular and angle 37° caudad.

3

MSP Perpendicular (90°)

Ensures zero cranial rotation so the petrous pyramids and posterior clinoid processes project symmetrically.

4

Foramen Magnum Projection

Proper angle placement projects the dorsum sellae and posterior clinoids directly within the shadow of the foramen magnum.

4. Central Ray (CR) & Collimation

5. Positioning Errors & How to Fix Them

Error TypeRadiographic AppearanceCause & Correction
Under-Angulation (< 30° / Insufficient Chin Tuck)The dorsum sellae is projected superior to the foramen magnum, superimposing over the occipital bone.Increase the caudal tube angle or tuck the chin further to bring OML perpendicular.
Over-Angulation (> 30° / Excessive Chin Tuck)The posterior arch of the atlas (C1) is projected inside the foramen magnum, obscuring the dorsum sellae.Decrease the caudal tube angle or slightly extend the chin.
Rotation (Twisting)Asymmetric distance from the lateral margin of foramen magnum to lateral skull borders; uneven petrous ridges.Ensure the MSP is perfectly perpendicular to the IR midline.
Lateral TiltPetrous ridges and internal acoustic canals are tilted and not on the same horizontal plane.Realign the IPL parallel to the IR surface.

6. Radiographic Anatomy & Quality Evaluation Criteria

AP Axial (Towne Method) Occipital & Petrous Evaluation Card
AP Axial (Towne Method): Occipital & Petrous Evaluation
Posterior Fossa View
Vertex Occipital Bone (Broad Symmetric Area) Petrous Pyramids IAM [·] [·] IAM Dorsum [===] FORAMEN MAGNUM
AP Axial: Dorsum Sellae & IAMs in Posterior Fossa
1

Dorsum Sellae in Foramen Magnum

Dorsum sellae and posterior clinoid processes project cleanly within the radiolucent oval of the foramen magnum.

2

Internal Acoustic Meatuses (IAMs)

Bilateral acoustic canals demonstrated symmetrically within the upper borders of the petrous temporal ridges.

3

Occipital Squama Visualization

Broad area of the occipital bone is projected free of superimposition, showing intact cortical margins.

4

Petrous Ridge Symmetry

Equal distance from the lateral borders of the foramen magnum to the lateral cranial cortex confirms zero rotation.