The Rhese view Method (Parieto-Orbital Oblique Projection) is the primary radiographic view specifically engineered to project the optic canal (optic foramen) end-on, demonstrating its cross-sectional circular profile, bony margins, and surrounding sphenoid structures in the lower outer quadrant of the orbit.

Both the Right and Left orbits are routinely imaged for bilateral comparative analysis.

1. Clinical Indications & Contraindications

Detailed Indications:

Contraindications & Limitations:

2. Technical Factors & Exposure Physics

ParameterRecommended SpecificationRadiographic Rationale
Patient PostureErect (Seated) or Semi-ProneErect seated provides superior control over subtle angle adjustments
Image Receptor (IR)18 × 24 cm (Portrait)Tight format centered on the affected orbit and optic apex
SID100 to 115 cm ( 40 to 44 inches)Standard focal distance balances spatial resolution and beam divergence
Grid Ratio8 : 1 to 12: 1 focused gridEssential to absorb scatter from dense cranial structures
Tube Potential (kVp)70 – 75 kVpHigh-contrast resolution to define thin cortical margins of the foramen
mAs Range20 – 30 mAsCalibrated for bony orbit and sphenoid strut (AEC center cell active)
Focal SpotSmall (0.6 mm)High spatial sharpness required to visualize the tiny (4 to 5 mm) optic ring
BreathingSuspended respirationEliminates respiratory motion and ocular movement blur

3. Step-by-Step Patient & Part Positioning

Rhese Method Positioning Diagram
Rhese Method (Parieto-Orbital Oblique)
Optic Foramen
║ Vertical Bucky Surface ║
◄── 3-Point Touch: Chin, Cheek & Nose
AML ⟂ Image Receptor (90°)
MSP 53° to IR (Rotated 37°)
[ Central Ray: 0° Perpendicular ]
Enters Parieto-Occiput ➔ Exits at Affected Downside Orbit
1
3-Point Contact Rule
Chin, cheek (zygomatic prominence), and tip of the nose of the affected side touch the Bucky simultaneously.
2
AML Perpendicular (90°)
Acanthiomeatal Line (AML) is aligned strictly perpendicular to the plane of the image receptor.
3
37° Rotation / 53° Angle
Head rotated 37° toward affected side, forming a 53° angle between the Mid-Sagittal Plane (MSP) and the IR.
4
Perpendicular Beam Exit
Central Ray is directed at 0° to exit through the center of the downside orbit (lower-outer quadrant projection).

The “3-Point Touch” (Malar, Nose, Chin) Rule

  1. Starting Posture: Patient sits or stands erect facing the vertical Bucky (or lies semi-prone on the radiographic table). Place the orbit of interest closest to the image receptor.
  2. Reference Point Contact: Adjust the head so that the chin, cheek (malar prominence/zygoma), and tip of the nose rest firmly against the center of the vertical Bucky surface.
  3. Reference Line Alignment (AML):
  4. Plane Rotation (MSP):

4. Central Ray (CR), Centering & Collimation

5. Positioning Errors & Diagnostic Corrective Actions

Positioning ErrorMorphological Appearance of Optic ForamenCause & Corrective Action
Over-Rotation of Head (37° /MSP < 53°)Optic foramen projects into the lateral orbital margin or outside the orbit.Head turned too far toward lateral; rotate head back toward the PA stance.
Under-Rotation of Head ( 37° /MSP > 53°)Optic foramen projects into the medial orbital wall or ethmoidal sinus.Head kept too close to PA; rotate head further toward the affected side.
Over-Extension of Neck (AML not 90°)Optic foramen projects into the upper half/superior quadrant of the orbit.Chin tilted too far up; flex neck slightly to restore AML perpendicularity.
Over-Flexion of Neck (Chin tucked too much)Optic foramen projects inferior to the orbital floor into the maxillary antrum.Chin tucked too low; extend head upward until AML is perpendicular.

6. Radiographic Anatomy & Quality Evaluation Criteria

Rhese View Optic Foramen Quadrant Anatomy
Rhese Method: Optic Canal Quadrant Alignment
Parieto-Orbital Oblique
SUPERIOR ORBITAL RIM INFERIOR ORBITAL RIM Upper-Inner (Nasal / Ethmoid) Upper-Outer Lower-Inner [Lower-Outer] Sphenoid Strut OPTIC FORAMEN (o)
Lower-Outer Quadrant Target Benchmark
Diagnostic Quality Criteria
Optic Ring
Lower-Outer Quadrant Location
Optic foramen must project strictly end-on in the inferolateral (lower-outer) quadrant at the 5 o’clock (right) or 7 o’clock (left) position.
Strut
Sphenoid Strut Delineation
Clear cortical margin of the inferior root of the lesser wing of the sphenoid forming the inferolateral border of the canal.
Margin
Orbital Boundary Clearance
Optic canal must remain inside the orbital circumference without superimposing on the dense lateral orbital rim.
Errors
Rotational Error Detection
Over-rotation (>37°) throws the foramen laterally; under-rotation (<37°) throws it medially into the ethmoid shadow.

7. Comparison: PA Oblique (Rhese) vs. AP Oblique (Reverse Rhese)

FeaturePA Oblique (Standard Rhese)AP Oblique (Reverse Rhese)
Patient StancePA (Cheek, nose, chin touch IR)AP (Back of head on IR, orbit away)
Lens Radiation DoseLow (Ocular lens on exit side)High (Ocular lens directly in entrance beam)
Geometric MagnificationMinimal (Low OID)Increased (Higher OID of the orbit)
Primary UtilityRoutine elective & diagnostic imagingTrauma patients with immobilized C-spine