When the alveolus can no longer hold an implant
There is a category of maxilla in which conventional implant dentistry simply runs out of bone. The alveolar ridge has resorbed to a knife-edge, the maxillary sinuses have pneumatized down to a paper-thin floor, and the patient either cannot face — or has already failed — the years of grafting that would be needed to rebuild a foundation. For these patients, the answer is to stop trying to anchor in alveolus that no longer exists and instead borrow the dense, reliable bone that sits behind and above it: the body of the zygoma and the pterygoid plates. This is the domain of extra-maxillary anchorage, and it is, without qualification, specialist, referral-level surgery.2
The zygomatic implant — first described by Brånemark for the rehabilitation of the cancer-resected and severely atrophic maxilla — is an unusually long fixture (typically 30–52.5 mm) that traverses from the residual alveolar crest, past or through the maxillary sinus, to engage the thick cortical bone of the malar body.2 The pterygoid implant takes a different route, angling distally from the posterior maxilla to lock into the pterygomaxillary junction and the pterygoid plates, supplying posterior support without a graft and eliminating the distal cantilever that plagues short posterior arches.4 Both techniques share a defining feature that the rest of this chapter turns on: the working bone lies a long way from the operative field, in intimate relationship with the orbit, the infratemporal fossa, and the maxillary sinus, so a small angular error at the crest becomes a large, sometimes catastrophic, error at the target.
Zygomatic and pterygoid implants are advanced, anatomically hazardous procedures whose complication profile includes sinusitis, orbital and infratemporal injury, and oroantral communication that can be very difficult to salvage. The purpose of this module is to help the referring clinician recognize the severely atrophic maxilla, understand the graftless options, and counsel the patient — not to serve as an operative manual. Placement should be planned and performed by surgeons with specific zygomatic/pterygoid training and adequate case volume.3
Who is a candidate
The classic indication is the severely atrophic edentulous maxilla — Cawood–Howell Class V–VI — where residual alveolar volume is insufficient for conventional fixtures even after sinus elevation, or where the patient has failed previous grafting or declines it on the grounds of morbidity, cost, or treatment time.1 A second, distinct indication is the post-maxillectomy or oncologic defect, the very problem for which the zygoma fixture was originally conceived: when tumour resection removes the alveolus and part of the sinus floor, the zygoma may be the only remaining anchorage for an obturator-retaining or fixed reconstruction.2 Across all of these, the appeal is the same — a graftless, frequently immediately loaded, fixed result delivered in a single surgical episode.
The ZAGA concept and types 0–4
The single most important conceptual advance in zygomatic implantology was the recognition that the implant trajectory should follow the patient's anatomy rather than a fixed surgical recipe. Aparicio's Zygoma Anatomy-Guided Approach (ZAGA) replaced the rigid "one technique fits all" placement — in which every fixture ran through the sinus along the same path — with a CBCT-based classification of the concavity of the lateral maxillary wall at each implant site, from which the appropriate trajectory (more intra-sinus or more extra-sinus) is derived.1 The clinical pay-off is direct: matching the path to the wall shape keeps the fixture body in supportive bone, reduces unsupported intra-antral spans, and is associated with lower rates of late sinusitis than rigid placement.1
The classification grades the lateral sinus wall from a flat, convex profile (where the implant naturally runs largely through the sinus) to a deeply concave one (where the implant runs largely outside the sinus along the malar surface), with intermediate forms in between. Five types — ZAGA 0 through ZAGA 4 — span this continuum, as set out below. The type is read from the CBCT before surgery and dictates the osteotomy, the soft-tissue management, and the prosthetic emergence.
| ZAGA type | Lateral sinus-wall profile | Implant trajectory | Practical note |
|---|---|---|---|
| Type 0 | Flat / convex wall; crest broad | Fully intra-sinus — fixture body within the antrum | Closest to classic Brånemark path; needs intact crestal bone window |
| Type 1 | Slightly concave wall | Mostly intra-sinus, body grazing the wall | Minor wall contact; standard antrostomy management |
| Type 2 | Moderately concave wall | Body engages and runs along the wall | Wall-supported; intermediate sinus exposure |
| Type 3 | Markedly concave wall | Mostly extra-sinus along the malar surface | Limited antral involvement; favours sinus health |
| Type 4 | Deeply concave wall; severe palatal crest resorption | Fully extra-sinus on the malar surface | Soft-tissue coverage of the externalized body is critical |
The hazards that define the technique
What separates extra-maxillary anchorage from routine implant surgery is the company the working bone keeps. The zygomatic trajectory passes within millimetres of the orbital floor superiorly and traverses the maxillary sinus along much of its length; the pterygoid trajectory drives toward the infratemporal fossa and the maxillary artery's terminal branches. Each carries a signature complication.3
Sinusitis is the most common late complication of zygomatic implants. Across the largest systematic review — 68 studies, 4,556 zygomatic implants in 2,161 patients — the pooled sinusitis prevalence was roughly 2.4% (95% CI 1.8–3.0%), although individual series report a much wider range and the authors caution the true figure may be underestimated; it often appears years after surgery and usually responds to antibiotics, though some cases require revision.3 It is precisely this complication that the ZAGA concept is designed to reduce, by minimizing unsupported intra-antral fixture spans and respecting sinus drainage. Orbital injury — penetration of the floor or, rarely, the globe — is the feared catastrophic event of a trajectory drifting too superiorly, while oroantral communication at the crest and infratemporal / neurovascular injury (especially for pterygoid placement near the maxillary artery) round out the profile.3 A failed zygomatic implant is also far harder to salvage than a failed conventional fixture, because there is no alternative anchorage in the same region.
- Despite its reputation, the zygomatic implant is highly durable when well placed: the updated systematic review reports a ~95% 12-year cumulative survival, with most failures occurring within the first 6 months.3
- Pre-treat sinus disease. Address pre-existing sinusitis, polyps, or ostial obstruction before placement, and counsel that lifelong sinus surveillance is part of the contract.
- Classify every site by ZAGA type from CBCT before committing — the wall, not the textbook, sets the path.
- Applying a single rigid intra-sinus path to every patient — the historical source of unsupported antral spans and elevated sinusitis rates.
- Letting a zygomatic trajectory drift superiorly toward the orbital floor, or a pterygoid trajectory medially toward the maxillary artery, because of poor angular control at the crest.
- Offering these procedures — or accepting referral for them — without the specific training, navigation/planning, and case volume they demand. When in doubt, refer up, not across.
A severity-driven approach selector
The choice among grafting, zygomatic anchorage, and pterygoid support is driven by two CBCT-readable variables: how much usable residual bone remains, and how the sinus has pneumatized. The interactive selector below maps the three principal scenarios to their approach, and — critically — flags the point at which a case exceeds conventional implant therapy and should be referred. It reproduces the decision logic of the source algorithm in book form.
| Indication | Approach | Key risks | Evidence |
|---|---|---|---|
| Moderate atrophy, graftable sinus | Conventional implants + sinus floor elevation / ridge augmentation (staged or simultaneous) | Graft failure, membrane perforation, longer timeline | Syst. review |
| Severe atrophy, intact zygoma (Cawood–Howell V–VI) | Zygomatic implant(s) per ZAGA type; ± anterior conventional implants | Sinusitis (~2.4% pooled), orbital injury, oroantral communication, difficult salvage | Syst. review |
| Posterior support deficit, inadequate tuberosity | Pterygoid implant into the pterygomaxillary region (avoids distal cantilever) | Neurovascular injury, restricted access, steep angulation, D3-bone failure | Cohort / consensus |
| Post-maxillectomy / oncologic defect | Zygomatic ± pterygoid anchorage for fixed or obturator-retained reconstruction | Irradiated-bed healing, ORN risk, complex defect anatomy | Cohort / consensus |
The dividing line in this table is between the first row and the rest. Moderate atrophy with a graftable sinus remains within the reach of well-trained general implant practice. Everything below it — zygomatic, pterygoid, and oncologic reconstruction — is specialist territory. The most valuable thing a referring clinician can do is recognize that line on the CBCT and route the patient before, not after, an attempt that compromises the remaining anatomy.
Key terms
- Zygomatic implant
- An extra-long fixture (≈30–52.5 mm) anchored in the dense bone of the zygomatic (malar) body, bypassing an unusable maxillary alveolus.
- Pterygoid implant
- A fixture angled distally from the posterior maxilla into the pterygomaxillary junction / pterygoid plates to provide posterior anchorage without a graft and avoid a distal cantilever.
- ZAGA (Zygoma Anatomy-Guided Approach)
- Aparicio's CBCT-based concept in which the implant trajectory is dictated by the concavity of the lateral maxillary wall rather than a fixed surgical path.
- ZAGA type (0–4)
- A five-grade classification of lateral sinus-wall concavity (and crestal resorption) running from a fully intra-sinus path (Type 0) to a fully extra-sinus malar path (Type 4).
- Cawood–Howell classification
- A staging of edentulous ridge resorption; Classes V–VI denote the severely atrophic ridge that typifies the zygomatic indication.
- Oroantral communication
- An abnormal connection between the oral cavity and the maxillary sinus — a recognized complication of crestal entry in atrophic maxillae.
- Malar body
- The thick cortical bulk of the zygomatic bone that provides the apical anchorage for a zygomatic implant.
Specialist-referral preparation
- How would a Type 0 and a Type 4 osteotomy differ?
- Why does an extra-sinus path lower sinusitis risk?
- When does sinusitis typically present?
- What would make you abort and stage the case?
- What if the patient had failed a prior sinus graft?
- How does ZAGA type change your soft-tissue plan?
- Why does eliminating the cantilever matter biomechanically?
- Which bone quality concerns you most in the pterygoid region?
- What survival figure would you quote, and from which study?
- How does patient selection change the risk–benefit balance?
References
- Aparicio C. A proposed classification for zygomatic implant patient based on the zygoma anatomy guided approach (ZAGA): a cross-sectional survey. Eur J Oral Implantol. 2011;4(3):269–275. PMID: 22043470
- Brånemark PI, Gröndahl K, Ohrnell LO, et al. Zygoma fixture in the management of advanced atrophy of the maxilla: technique and long-term results. Scand J Plast Reconstr Surg Hand Surg. 2004;38(2):70–85. doi:10.1080/02844310310023918. PMID: 15202664
- Chrcanovic BR, Albrektsson T, Wennerberg A. Survival and complications of zygomatic implants: an updated systematic review. J Oral Maxillofac Surg. 2016;74(10):1949–1964. doi:10.1016/j.joms.2016.06.166. PMID: 27422530
- Raouf K, Chrcanovic BR. Clinical outcomes of pterygoid and maxillary tuberosity implants: a systematic review. J Clin Med. 2024;13(15):4544. Pterygoid/tuberosity implants provide posterior anchorage and avoid distal cantilevers; reported 10-year cumulative survival ≈92.5% (pterygoid) and ≈96.9% (tuberosity). doi:10.3390/jcm13154544. PMID: 39124809
Reference numbering follows the full reference set of the standard module; this prototype displays the subset cited in-text. Evidence grades: Systematic review Consensus / cohort Preclinical.