Radiographic grading of acetabular defects in revision hip arthroplasty and the matched reconstruction ladder
- The classification is applied on an AP pelvis and asks one core question: will the remaining rim and columns support a hemispherical cementless cup?
- Four radiographic criteria map to anatomical zones: superior migration equals dome loss, ischial lysis equals posterior column and wall, teardrop lysis equals medial wall and inferior acetabulum, Kohler line violation equals anterior column and medial wall.
- Types I to IIB are reliably managed with a hemispherical cementless cup and multiple screws because host contact exceeds roughly 50 percent and the rim is supportive.
- Porous tantalum (trabecular metal) augments have largely replaced structural allograft for Type IIIA because structural grafts resorb and fail at mid term.
- Type IIIB mandates a search for pelvic discontinuity β obtain Judet views and CT preoperatively and stress the columns intraoperatively.
- Intraoperative validation trumps radiographs: after component removal and debridement, a trial hemispherical shell tests rim support and residual host contact.
- β'Up and out' is IIIA (superolateral, Kohler intact); 'up and in' is IIIB (superomedial, Kohler violated) β a two-second discriminator examiners love.
- βIschial osteolysis greater than about 15 mm below the superior obturator line signals significant posterior column deficiency β the strongest single predictor that a simple hemispherical cup will not work.
- βA cup that has migrated medial to the Kohler line with an intact superior rim is IIC, not IIIB β the rim, not the medial wall, carries the cup.
Treating an unrecognised discontinuity with an isolated hemispherical cup guarantees failure. In every IIIB (and severe IIIA) case, obtain CT, look for a transverse fracture line, asymmetric obturator rings, and medial wall break, and stress the ischium against the ilium intraoperatively.
When the component lies medial to the Kohler line, the external iliac vessels, obturator neurovascular bundle and bladder may be adherent. A CT angiogram and, where indicated, a retroperitoneal (modified Stoppa) vascular-control approach before extraction can be life-saving.
Revision fixation demands multiple screws. The anterosuperior 'zone of death' (Wasielewski) overlies the external iliac vessels β direct screws into the posterosuperior and posteroinferior quadrants (dome of the sciatic buttress and ischium).
Acetabular distraction, ischial cage flanges and posterior column plating all place the sciatic nerve at risk. Identify and protect it; slot ischial flanges within bone rather than on the surface where the nerve lies.
Why the Paprosky Classification Matters
Paprosky described the system in 1994 from a consecutive revision series. Unlike the AAOS (D'Antonio) classification, which describes defect morphology (segmental versus cavitary) without directing treatment, Paprosky's system is built around a single operative question: can the remaining rim and columns support a hemispherical cementless cup with supplemental screws?
- It is applied to a standardised AP pelvis radiograph, is validated against intraoperative findings, and each grade maps to a reconstruction strategy.
- The grade predicts remaining host-bone contact, which drives biological fixation: cementless ingrowth surfaces generally require on the order of 50 percent or more viable host contact and a stable rim.
- It also stratifies the risk of pelvic discontinuity β essentially confined to IIIB and severe IIIA defects.
Radiographic Criteria: How to Read the AP Pelvis
Each landmark on the AP pelvis is a surrogate for a specific anatomical column or wall:
- How to measure
- Vertical distance from the superior obturator line (interteardrop line acceptable) to the centre of rotation, compared with the native or contralateral side
- Anatomical structure deficient
- Superior dome; anterosuperior and posterosuperior rim
- Threshold
- Less than 3 cm equals Type II; greater than 3 cm equals Type III
- How to measure
- Lucency extending inferiorly into the ischium below the superior obturator line
- Anatomical structure deficient
- Posterior column and posterior wall (the inferior posterior column inserts on the ischium)
- Threshold
- Moderate lysis suggests IIIA; severe lysis (roughly greater than 15 mm) suggests IIIB
- How to measure
- Loss or destruction of the radiographic teardrop
- Anatomical structure deficient
- Medial wall and inferior acetabulum
- Threshold
- Partial loss in IIIA; complete obliteration in IIIB
- How to measure
- Component or defect medial to the ilioischial line
- Anatomical structure deficient
- Anterior column and medial wall
- Threshold
- Intact in IIIA; violated in IIC and IIIB
The Classification in Detail
Type I β supportive rim, no migration, no significant lysis of ischium or teardrop, Kohler line intact. Host contact after debridement typically exceeds 80 to 90 percent. Treat with a standard hemispherical cementless cup with screws.
Type IIA β superomedial migration less than 3 cm with an intact superior rim: a contained, cavitary dome defect (the classic 'ballooned' socket). The rim still captures a hemispherical cup. Fill the cavity with morselised allograft; press-fit cup with screws.
Type IIB β superolateral migration less than 3 cm with a segmental absence of part of the superior dome (less than about one third of the circumference). The defect is uncontained but small; an oversized (jumbo) hemispherical cup or a small superior augment restores coverage.
Type IIC β the cup has migrated medially to or past the Kohler line with teardrop destruction, but the entire rim remains intact. The key insight: the rim, not the medial wall, supports the cup. Treat with the medial protrusio technique (below).
Ask three sequential questions of the AP pelvis: (1) Migration greater than 3 cm? No β Type I or II; yes β Type III. (2) Kohler line violated? Intact β IIIA (up and out); violated β IIIB (up and in). (3) Within Type II: rim intact with medial cavitation is IIA; superior segmental loss is IIB; medial to Kohler with intact rim is IIC.
MITKThe Four Radiographic Pillars
Hook:'My Implant Travelled Kohler-wards' β check Migration, Ischium, Teardrop, Kohler on every revision AP pelvis.
Intraoperative Validation
The radiographic grade is a hypothesis to be confirmed at surgery β plain films underestimate osteolysis, and the final decision is made after component extraction and debridement.
- Sequence: remove the failed component with curved gouges or an explant-type system to minimise iatrogenic bone loss; excise the interface membrane completely; send tissue for culture and histology in every revision; curette lytic cavities to bleeding host bone.
- Rim test: seat a trial hemispherical shell. A trial that is inherently stable against the rim with an interference fit at two thirds or more of the circumference supports hemispherical reconstruction. A trial that 'wobbles' superiorly indicates a IIB or IIIA pattern; one that falls medially indicates a IIC or IIIB pattern.
- Estimate host contact: visually map viable, bleeding host bone against the trial; aim for greater than about 50 percent contact for ingrowth fixation, ideally with contact spanning the anterosuperior and posteroinferior 'support points'.
- Discontinuity stress test: grasp the ischium (or place a Cobb inferiorly) and stress it against the ilium while observing the acetabular fracture line for motion β independent movement of the inferior hemipelvis confirms discontinuity and changes the entire construct.
- Column palpation: finger along the posterior column into the sciatic notch and along the anterior column; defects not visible radiographically are frequently found here.
Reaming should freshen bleeding bone and gently upsize toward rim contact β 'reaming up' aggressively to obtain a jumbo press fit sacrifices the residual columns, can convert a IIIA into a discontinuity, and raises the hip centre. Ream on reverse first to gauge bone quality.
Templating and Preoperative Planning
- Identify the implants in situ from previous operation notes: cup manufacturer and size (dictates liner options and extraction tools), screw number and position, cemented versus cementless.
- Restore the hip centre: template the new cup at the anatomical centre (level of the teardrop) rather than accepting a high hip centre; every centimetre of proximal placement compromises abductor mechanics and increases joint reactive force. A deliberate high hip centre is a fallback, not a plan, and demands a longer femoral neck or lateralised liner to preserve offset.
- Template the defect: on the AP pelvis, superimpose a hemispherical template at the anatomical centre β the uncovered superolateral zone predicts augment size and position; CT-based three-dimensional planning is standard for IIIB and custom implants.
- Plan fixation trajectories: posterosuperior dome screws into the sciatic buttress (longest, safest corridor), posteroinferior screws into the ischium; avoid the anterosuperior quadrant.
- Exclude infection before any revision: inflammatory markers, aspiration with synovial fluid cell count and culture β bone loss reconstruction in an infected bed fails.
- Prepare a bailout ladder: hemispherical cup, jumbo cup, augments, cup-cage components and allograft should all be available even for an anticipated Type II β intraoperative upgrading of the defect is common.
Reconstruction Ladder Matched to Grade
supportive rim, host contact greater than roughly 50 percent β Types I, IIA, IIB (and IIC after medial grafting).
hemispherical cementless fixation with screws is the workhorse of acetabular revision, with survivorship exceeding 90 percent at 10 to 15 years in Type I and II defects β every more complex construct is judged against it.
- Position: lateral decubitus; posterior approach gives extensile access to the posterior column and ischium.
- Ream concentrically at the anatomical hip centre to bleeding host bone; line-to-line or 1 mm under-ream in weak bone (aggressive press fit can fracture a compromised rim).
- Fill contained cavities with morselised cancellous allograft, reverse-reamed to compact.
- Highly porous (tantalum or titanium) shells improve initial scratch fit and ingrown fixation in compromised bone.
- Supplement with a minimum of two to three screws into the dome and ischium in every revision.
- A jumbo cup (66 mm or larger in men, 62 mm or larger in women, or 10 mm larger than native) maximises host contact in IIB defects, but beware: it raises the hip centre if seated against the superior defect, risks anterior column reaming and psoas impingement anteriorly, and reduces bone for future revision.
- Use a highly cross-linked polyethylene liner; consider a dual mobility or constrained liner only for defined instability risk with a well-fixed, well-oriented shell.
- Host contact (typical)
- Greater than 80 percent
- First-line construct
- Hemispherical cementless cup plus screws
- Alternatives / notes
- Cemented cup in irradiated or very elderly pelvis
- Host contact (typical)
- 60 to 80 percent
- First-line construct
- Hemispherical cup plus screws, morselised graft to cavity
- Alternatives / notes
- Impaction grafting with cemented cup in young patients
- Host contact (typical)
- 50 to 70 percent
- First-line construct
- Hemispherical or jumbo cup plus screws
- Alternatives / notes
- Small superior porous augment; avoid high hip centre
- Host contact (typical)
- Rim intact
- First-line construct
- Medial protrusio technique: medial morselised graft, rim-fit porous cup, screws
- Alternatives / notes
- Check CT angiogram; consider retroperitoneal access for intrapelvic components
- Host contact (typical)
- 40 to 60 percent
- First-line construct
- Porous metal augment plus hemispherical cup, unitised with cement
- Alternatives / notes
- Structural distal femoral allograft (bone-stock restoration in the young or resource-limited settings)
- Host contact (typical)
- Less than 40 percent
- First-line construct
- Cup-cage; distraction technique for chronic discontinuity
- Alternatives / notes
- Custom triflange for massive loss or failed cup-cage; NEVER cup alone or cage alone
CAGEEscalating the Construct
Hook:Climb the CAGE ladder one rung per grade β and never treat a IIIB on the bottom rung.
Trabecular Metal and the Biology of Fixation
- Porous tantalum has porosity around 75 to 80 percent, a modulus of elasticity between cancellous and cortical bone, and a high coefficient of friction against bone β giving superior initial scratch fit and rapid, extensive bone ingrowth compared with older sintered-bead or fibre-metal surfaces.
- These properties allow reliable osseointegration at lower host contact than traditional cementless cups, which is precisely why the reconstruction ladder shifted: defects that once needed structural graft or cages are now managed with tantalum shells and modular augments.
- Augments are effectively 'metallic structural allograft' β immediate mechanical support without resorption, at the cost of not restoring bone stock.
- Highly porous titanium three-dimensional-printed equivalents now offer comparable porosity and are the basis of most custom triflanges.
- Principle for the construct: every interface must be either ingrowing (implant on bleeding host bone) or rigidly unitised (cement between cup and augment or cup and cage); a mobile interface is a failed interface.
Complications: Prevention and Management
- Aseptic loosening and construct failure: commonest cause of re-revision in Type III reconstruction. Prevent with maximal host contact, multiple screws, unitised interfaces, protected weight bearing (typically toe-touch or partial for 6 to 12 weeks in major constructs). Manage failure by re-grading the (now worse) defect and climbing the ladder β often to cup-cage or triflange.
- Missed or iatrogenic pelvic discontinuity: prevent by CT in Type III, gentle reaming, and the intraoperative stress test; manage established discontinuity with cup-cage, distraction, or triflange, with posterior column plating reserved for acute healable patterns.
- Dislocation: the leading early complication of complex acetabular revision (abductor deficiency, large exposures, altered centre). Rates after major revision are commonly reported around 5 to 10 percent and higher after triflange. Mitigate with careful restoration of centre and offset, dual mobility bearings, and constrained liners only into rigidly fixed shells.
- Vascular injury: external iliac and obturator vessels during medial dissection and anterosuperior screws. Prevention: CT angiography for intrapelvic components, quadrant system for screws, vascular surgery on standby and a retroperitoneal approach when the component is intrapelvic.
- Sciatic nerve injury: during posterior column work, ischial flange placement and distraction; identify, protect, avoid prolonged retraction, slot ischial flanges.
- Infection: revision arthroplasty carries a substantially higher periprosthetic infection rate than primary surgery; exclude infection preoperatively, take multiple deep samples, and follow a two-stage pathway if infection is confirmed.
- Graft resorption and collapse: the defining failure of structural allograft β anticipate in any hip reconstructed with bulk graft and follow radiographically.
Guidelines, Registries & Global Practice
- Global burden: aseptic loosening and osteolysis remain leading causes of acetabular revision worldwide; as primary hip arthroplasty volumes rise across Asia, Latin America and Africa, complex acetabular revision is an expanding global need.
- Registry evidence: national registries (NJR of England and Wales, AOANJRR, AJRR, Swedish and Norwegian arthroplasty registers, NZJR) consistently show that revision arthroplasty has substantially lower implant survivorship and higher re-revision, dislocation and infection rates than primary surgery, and that cementless hemispherical fixation dominates acetabular revision practice in registry populations. Registries do not currently stratify by Paprosky grade, which limits comparative-effectiveness conclusions for augments versus cages versus triflanges β the evidence for major constructs remains observational case series.
- Society guidance: no society issues a defect-specific guideline, but relevant frameworks include EFORT and AAOS consensus material on periprosthetic joint infection exclusion before revision, the International Consensus Meeting (Philadelphia) infection criteria, and national getting-it-right programmes advocating network-level centralisation of complex (Type III and discontinuity) revisions to high-volume units with multidisciplinary support β a model adopted in several European systems.
- Practice variation by resource setting: custom triflanges and porous tantalum systems are expensive and not universally available; in resource-limited settings, structural and impaction allografting with cemented cups, reinforcement rings (Burch-Schneider, MΓΌller) and jumbo cups remain mainstream and produce acceptable results when principles of host contact and rim support are respected. Bone banking availability similarly shapes the ladder.
- Antibiotic and thromboprophylaxis practice follows local national guidance; the universal constants are preoperative infection exclusion and multiple intraoperative deep cultures.
Controversies & Areas of Uncertainty
- Jumbo cup versus augment in IIB and lesser IIIA: enthusiasts of jumbo cups cite simplicity and excellent survivorship; critics cite hip-centre elevation, anterior column loss and psoas irritation. No randomised comparison exists.
- Cup-cage versus distraction versus triflange for chronic discontinuity: all are supported only by case series from originating centres; selection is driven by defect geometry, bone quality, surgeon experience and cost rather than comparative evidence.
- High hip centre: deliberately accepting a centre up to about 2 cm proximal with a smaller cup on better bone remains defended by some units, though most modern teaching favours anatomical restoration with augments.
- Structural allograft in the young patient: despite mid-term resorption, its unique capacity to restore bone stock keeps it alive as an option for patients facing multiple future revisions.
- Custom triflange timing: whether to go custom first in massive IIIB or reserve it for failed off-the-shelf reconstruction is unresolved; lead time, cost and inflexibility weigh against routine first-line use.
- Inter-observer reliability: studies show only moderate agreement in assigning Paprosky grades from radiographs, particularly between IIIA and IIIB β one argument for routine CT and for treating the classification as a planning framework, not a verdict.