Osseo IQ
Chapter 4 · Surgical · §4.1

Implant Placement Timing

When to place after extraction — reading the socket the moment the tooth is out, and matching timing to wall integrity, infection, biotype, and achievable stability.

Compiled by
Tan Khuu, DDS
Licensed dentist (CA & SC)
Audience
Oral surgeons, prosthodontists, periodontists & residents
Edition
1.0 · June 2026
Reviewed
June 2026 · next review June 2027
Reading time
~16 minutes
Evidence basis
Consensus statements + systematic reviews + primary literature
§4.1.1 — Overview

A decision made the moment the tooth is out

Placement timing is the first surgical decision of an implant case, and it is made — explicitly or by default — at the moment the extracted tooth leaves the socket. The question is deceptively simple: do you place now, in a few weeks, in a few months, or only after the ridge has fully healed? The answer is governed less by the calendar than by what the socket itself reveals — the integrity of its bony walls, the presence or absence of acute infection, the periodontal biotype, and, above all, whether enough native bone remains to achieve primary stability. The International Team for Implantology (ITI) consensus organizes these choices into four placement types, and the modern view is that success rates are broadly comparable across them when case selection is correct.12

This chapter ports the chairside algorithm into a reference that you can read before the patient is in the chair. Two ideas recur and are worth holding onto from the outset. First, timing is a separate decision from loading; even a Type 1 immediate placement is most often restored out of occlusion, because placing an implant and loading it are governed by different thresholds. Second, the driver is biology, not preference — a thin or fenestrated buccal wall, an infected apex, or a wide socket that cannot grip an implant each push the decision down the timeline, trading the speed of immediate placement for the predictability of a healed or partially healed site.3

Timing is not chosen from the calendar; it is read from the socket — wall integrity and achievable primary stability decide it before any other factor.
◆ Key concept · The two questions that set the timing

Can I achieve primary stability today? Immediate (Type 1) placement requires intact socket walls and enough apical or palatal native bone to mechanically engage the implant. Is the field clean and the wall sound? Active infection, a thin or damaged buccal plate, or a wide socket that cannot grip an implant each defer placement — to early soft-tissue healing (Type 2, ~4–8 weeks), early partial bone fill (Type 3, ~12–16 weeks), or a fully healed ridge (Type 4, >6 months). Everything else — biotype, esthetic risk, augmentation need — refines a decision these two questions have already framed.

§4.1.2 — Classification

The four placement timings

The ITI classification defines timing by the state of socket healing at the moment of placement rather than by a fixed number of weeks — a distinction that matters, because two sockets extracted on the same day can heal at very different rates. Type 1 is same-day (immediate); Type 2 is placed after soft-tissue healing without significant bony fill (~4–8 weeks); Type 3 is placed once partial bony fill is radiographically evident (~12–16 weeks); and Type 4 is delayed placement into a fully healed ridge (>6 months).2 The figure below maps these against the natural healing trajectory of an extraction socket, on which ridge resorption climbs and bony fill accrues over time.

extraction 4–8 wk 12–16 wk >6 mo Time after extraction (non-linear) Bony socket fill Ridge resorption Type 1 Immediate Type 2 Early · soft tissue Type 3 Early · partial bone Type 4 Delayed / late Marker position = state of socket healing at placement. Time axis is non-linear (compressed at right). Bony fill rises and ridge dimension is progressively lost; later placement gains predictability but loses ridge volume.
Figure 1. The four ITI placement timings on the extraction-healing timeline. Earlier placement (Type 1) preserves ridge dimension but demands intact walls and achievable primary stability; later placement (Types 3–4) gains predictable stability and a resolved field at the cost of progressive ridge resorption and, often, a need for augmentation. Adapted from ITI consensus syntheses of placement timing.12
Table 1 · ITI placement timing — definition, criteria, and notes
TypeTimingCriteria to choose itNotes & trade-offsEvidence
Type 1
Immediate
Same day as extraction Intact socket walls; thick biotype; no acute infection; apical/palatal native bone for primary stability Preserves ridge dimension and visit count; technique-sensitive; place palatally and graft the jumping gap Syst. review
Type 2
Early · soft tissue
~4–8 weeks Soft-tissue healing achieved without significant bony fill; allows infection to resolve More keratinized tissue for flap and esthetics; commonly combined with contour GBR Syst. review
Type 3
Early · partial bone
~12–16 weeks Significant radiographic bony fill; good achievable stability accepted with some ridge resorption Useful in larger or compromised sockets; consider socket preservation at extraction Consensus
Type 4
Delayed / late
>6 months Fully healed ridge; severe defect, high medical/esthetic risk, or stability otherwise doubtful Most predictable primary stability but greatest ridge resorption; often needs staged augmentation Consensus

Read the table top to bottom and a clear trade-off emerges: earlier placement buys ridge volume and fewer surgeries but demands a near-perfect socket; later placement forgives a compromised socket but spends ridge dimension and frequently exacts an augmentation. The art of the decision is to spend only as much time as the socket actually requires.

§4.1.3 — Decision pathway

Assessing the socket the moment the tooth is out

The single most useful clinical habit in placement timing is to assess the socket immediately after extraction, before granulation or healing obscures the anatomy. Run a blunt probe around the perimeter to confirm the buccal plate is intact and to its full height; inspect for purulence or a draining apex; assess the biotype; and judge — by the residual apical and palatal bone — whether an implant could be seated with meaningful primary stability today. The combination of these four observations points to a timing. The selector below operationalizes that assessment: choose the scenario that best matches the site in front of you to surface the recommended type and its key steps.

Select the scenario that best matches your extraction site to reveal the recommended timing.

✦ Clinical pearl · Place palatal, graft the gap

In a favorable Type 1 socket, the implant should be seated toward the palatal/lingual wall and slightly apical — engaging native bone for primary stability and leaving a buccal "jumping gap" that is grafted with a low-substitution biomaterial. Centering the implant in the socket is a classic error: it sacrifices stability, drifts the emergence profile facially, and risks mid-facial recession as the thin buccal plate resorbs. The buccal plate after extraction is largely bundle bone and will remodel; design the case to defend it, not to rely on it.3

▲ Common pitfalls
  • Forcing an immediate (Type 1) placement into a socket with a fenestrated or thin buccal wall or active infection — buying recession, exposed threads, or early failure to save a single visit.
  • Conflating placement timing with loading: achieving primary stability is not a license to load. Restore out of occlusion unless the loading thresholds are clearly met.
  • Centering the implant in the socket instead of placing it palatally — losing native-bone engagement and pushing the restoration facially.
  • Waiting to a fully healed Type 4 ridge by default in every case, then needing block or sinus augmentation that earlier placement would have avoided.
§4.1.4 — Immediate provisionalization

Placement and loading are separate decisions

It bears repeating because it is the most common point of confusion at the chairside: placement timing and loading protocol are independent decisions. A Type 1 immediate placement answers when to put the implant in; immediate provisionalization answers whether to put a tooth on it the same day. The biology that protects an integrating implant — keeping interfacial micromotion below the threshold at which fibrous encapsulation replaces bone — is governed by primary stability, occlusal control, and bone quality, not by the placement type.2 Two numbers anchor the loading conversation: an insertion torque of ≥35 N·cm and an implant stability quotient of ISQ ≥70. Meet both, with controlled occlusion and favorable bone, and an immediate provisional becomes reasonable; fall clearly short, and the implant should heal submerged or non-functional. The loading decision is developed fully in its own chapter (see Loading Protocol Selection →).

Table 2 · Immediate provisionalization — factors favoring versus deferring same-day loading
FactorFavors immediate provisionalDefer loadingEvidence
Insertion torque≥35 N·cm<25 N·cmConsensus
ISQ≥70<60Syst. review
OcclusionCan keep out of functionParafunction / bruxismConsensus
Arch / bone qualityAnterior, dense bone (Type I–II)Posterior maxilla, soft bone (Type IV)Syst. review
Gap to buccal plateSmall, graftable jumping gapLarge defect, exposed threadsPreclinical
✦ Clinical pearl · The thresholds are gates, not goals

Torque ≥35 N·cm and ISQ ≥70 are permissions to consider immediate provisionalization, not targets to be manufactured by over-torquing dense bone. Insertion torque much above ~50 N·cm risks compression necrosis of the very walls that must perform contact osteogenesis — converting a stability win into a biological loss. When torque is high but ISQ is borderline, trust the resonance-frequency reading and the bone quality, and keep the provisional out of occlusion.

§4.1.5 — Glossary

Key terms

Type 1 (immediate placement)
Implant placed on the same day as extraction, into the fresh socket.
Type 2 (early, soft-tissue healing)
Placement ~4–8 weeks after extraction, once soft tissue has healed but before significant bony fill.
Type 3 (early, partial bone healing)
Placement ~12–16 weeks after extraction, once significant radiographic bony fill is evident.
Type 4 (delayed / late placement)
Placement into a fully healed ridge, generally >6 months after extraction.
Primary stability
Mechanical interlock between implant and bone at placement; the principal determinant of whether immediate placement and loading are feasible.
Jumping gap
The space between an immediately placed implant and the inner surface of the buccal plate, typically grafted with a low-substitution biomaterial.
Periodontal biotype
The thickness of the gingiva and underlying bone; a thick biotype is more resistant to recession and more forgiving of immediate placement.
Insertion torque
Rotational resistance (N·cm) recorded as the implant is seated; a surrogate for primary stability and a gate for immediate loading.
ISQ (Implant Stability Quotient)
Resonance-frequency-analysis index (1–100) used to estimate implant stability; ISQ ≥70 supports consideration of immediate loading.
GBR (guided bone regeneration)
Augmentation of bony contour using a barrier membrane and graft, often performed simultaneously with early or delayed placement.
§4.1.S — Self-test

Fellowship & board preparation

1. In the ITI classification, Type 1 placement is defined as:
A is correct. Type 1 is immediate placement, on the same day as extraction. Types 2–4 progress along the healing timeline: early soft-tissue (~4–8 wk), early partial bone (~12–16 wk), and delayed (>6 mo).
2. Type 2 (early, soft-tissue healing) placement is typically performed at approximately:
B is correct. Type 2 places the implant once the soft tissue has healed (~4–8 weeks) but before significant bony fill — gaining keratinized tissue and allowing infection to resolve.
3. The defining feature that distinguishes Type 3 from Type 2 placement is:
B is correct. Type 3 (~12–16 weeks) is chosen once significant bony fill is radiographically evident, improving achievable stability in larger or compromised sockets. Type 2 relies on soft-tissue healing only.
4. Type 4 (delayed) placement is most characteristically associated with:
B is correct. A fully healed Type 4 ridge offers the most predictable primary stability, but resorption is greatest and augmentation is frequently required.
5. The single most important biological prerequisite for a Type 1 immediate placement is:
B is correct. Immediate placement depends on intact walls and enough native apical/palatal bone to engage the implant for primary stability. Thin biotype, infection, and wide sockets argue against it.
6. Active acute infection at an extraction site most appropriately favors:
B is correct. Active infection is a relative contraindication to immediate placement; allowing 4–8 weeks of soft-tissue healing (Type 2) lets the infection resolve before placing.
7. The insertion torque commonly cited as a benchmark for considering immediate provisionalization is:
B is correct. An insertion torque of ≥35 N·cm is a widely cited benchmark for immediate loading; values much above ~50 N·cm risk compression necrosis.
8. The ISQ value generally regarded as supportive of immediate loading is:
C is correct. An ISQ of ≥70 is the commonly cited resonance-frequency threshold supporting consideration of immediate loading, alongside torque ≥35 N·cm and favorable bone.
9. Placement timing and loading protocol are best understood as:
B is correct. Even a Type 1 immediate placement is usually restored out of occlusion. Loading is gated by primary stability, occlusal control, and bone quality, not by the placement type.
10. In a favorable Type 1 socket, the implant should be positioned:
C is correct. Palatal/apical positioning engages native bone for stability and leaves a graftable buccal jumping gap; centering the implant sacrifices stability and drifts the emergence facially.
11. The buccal "jumping gap" in an immediate placement is most appropriately managed by:
B is correct. A low-substitution (slowly resorbing) biomaterial in the jumping gap helps preserve buccal contour as the bundle bone remodels. A wider implant to fill the gap would sacrifice the gap-grafting principle and risk the plate.
12. A principal advantage of waiting to Type 2 (early, soft-tissue) placement over Type 1 is:
B is correct. The 4–8 week wait yields more keratinized tissue and lets infection resolve. Ridge dimension is better preserved by earlier, not later, placement.
13. Type 3 placement (~12–16 weeks) is most useful when:
B is correct. Type 3 lets partial bony healing improve achievable stability in larger or compromised sockets, often after socket/ridge preservation at extraction.
14. Which factor most strongly argues against same-day immediate provisionalization?
B is correct. Parafunction imposes uncontrolled load that defeats occlusal management. The other options all favor immediate provisionalization.
15. Which bone/arch situation most favors deferring loading rather than provisionalizing the same day?
B is correct. Soft Type IV posterior maxillary bone gives poor primary stability and a deeper, longer stability dip, arguing for deferred or non-occlusal loading.
16. Insertion torque substantially above approximately 50 N·cm risks:
B is correct. Excessive insertion torque can compress and devitalize the bony walls, impairing the contact osteogenesis those walls should support — a stability "win" that becomes a biological loss.
17. Across the four placement types, implant survival is best described as:
B is correct. Success rates are broadly comparable across the types when case selection is appropriate; the choice is driven by esthetic risk and the ability to obtain stability and tissue support, not by survival alone.
18. A thin or fenestrated buccal wall in the esthetic zone most appropriately shifts the plan toward:
B is correct. A compromised buccal wall in the esthetic zone raises recession risk; early placement with contour augmentation is safer than forcing immediate placement.
19. When primary stability is genuinely doubtful at the time of extraction, the most appropriate default is to:
C is correct. If stability cannot be achieved, deferring to allow partial or complete bony healing — often after socket/ridge preservation — is the sound choice; immediate placement without stability invites fibrous healing and failure.
20. Before committing a severely deficient, healed ridge (Type 4) to placement, the most appropriate next step is to:
B is correct. A deficient healed ridge requires CBCT planning to quantify horizontal/vertical loss and a staged augmentation strategy before or with placement, plus a re-assessment of medical and esthetic risk.
1. Walk me through the ITI placement-timing classification and the single factor that most governs your choice among the four types.
Model answer. The ITI classification defines timing by the state of socket healing at placement: Type 1 is immediate (same day); Type 2 is early with soft-tissue healing at about 4–8 weeks; Type 3 is early with partial bony fill at about 12–16 weeks; and Type 4 is delayed placement into a fully healed ridge beyond six months. The factor that most governs the choice is the ability to achieve primary stability today, which in turn depends on intact socket walls and sufficient apical or palatal native bone. Infection, biotype, and esthetic risk then refine the decision. Importantly, survival is broadly comparable across the types when case selection is correct, so I choose the earliest timing the socket can safely support to conserve ridge dimension and visits.
Examiner follow-ups:
  • How does survival compare across the four types, and what does that imply for case selection?
  • Why define timing by healing state rather than a fixed number of weeks?
2. The tooth is out and you are looking at the socket. Describe exactly what you assess in the first thirty seconds and how it points you to a timing.
Model answer. I assess four things immediately, before healing obscures the anatomy. First, the buccal plate — I probe the perimeter to confirm it is intact and to full height, because a thin or fenestrated wall in the esthetic zone shifts me away from immediate placement. Second, infection — purulence or a draining apex pushes me to defer to Type 2 so the field can resolve. Third, the biotype — a thick biotype is forgiving of immediate placement, a thin one is not. Fourth, achievable primary stability — I judge whether the residual apical and palatal bone could grip an implant today. Intact walls, thick biotype, no infection, and engageable native bone point to Type 1; any one of those failing pushes me down the timeline to Type 2, 3, or 4.
Examiner follow-ups:
  • Which of the four observations is the hard stop for immediate placement?
  • How would CBCT change your bedside assessment?
3. Defend the statement that placement timing and loading protocol are separate decisions, using the relevant thresholds.
Model answer. Placement timing answers when the implant goes in; loading answers whether a restoration goes on it the same day. They are governed by different things. Even a perfectly executed Type 1 immediate placement is usually restored out of occlusion, because what protects an integrating implant is keeping interfacial micromotion below the critical level — and that depends on primary stability, occlusal control, and bone quality, not on the placement type. The thresholds I use to consider immediate provisionalization are an insertion torque of at least 35 N·cm and an ISQ of at least 70, with favorable bone and controlled occlusion. If those are clearly met I may provisionalize the same day, keeping it out of function; if they fall short I place but heal submerged or non-functional. So I can have an immediate placement with delayed loading — and that is in fact the common case.
Examiner follow-ups:
  • What do you do when torque is high but ISQ is borderline?
  • Why can over-torquing be counterproductive despite raising stability?
4. A patient presents with a non-restorable maxillary central incisor, an intact buccal plate, a thick biotype, and no infection, and wants the fastest possible treatment. Take me through your plan and its key steps.
Model answer. This is a favorable Type 1 candidate, so immediate placement is reasonable in experienced hands. My steps: first, an atraumatic, flapless extraction that preserves the buccal plate — I avoid luxating against the labial wall. Second, I prepare the osteotomy toward the palatal wall and slightly apical, engaging native bone for primary stability and deliberately leaving a buccal jumping gap; centering the implant would lose stability and drift the emergence facially. Third, I graft the jumping gap with a low-substitution biomaterial to defend the contour as the bundle bone remodels. Fourth — and this is the separate decision — I provisionalize the same day only if torque is at least 35 N·cm and ISQ at least 70, with the provisional kept entirely out of occlusion and excursions; otherwise I heal submerged or place a custom healing abutment. I counsel the patient that "fastest" still means protecting the biology, and that the mid-facial gingiva is the esthetic risk I am managing.
Examiner follow-ups:
  • Why palatal and not centered positioning?
  • What would make you abandon the immediate plan intra-operatively?
  • How do you manage the provisional contour to protect the papillae?
5. Contrast the trade-offs of immediate (Type 1) versus delayed (Type 4) placement, and tell me how you decide between them in a borderline case.
Model answer. The trade-off runs along a single axis. Type 1 preserves ridge dimension, reduces surgical visits, and capitalizes on a fresh, well-vascularized site, but it demands a near-perfect socket — intact walls, thick biotype, no infection, and achievable primary stability — and carries the highest esthetic risk if the buccal plate is compromised. Type 4 forgives almost any socket: the ridge is healed, primary stability is most predictable, and the field is clean, but resorption is greatest, augmentation is frequently required, and ridge volume is spent. In a borderline case I let the socket decide rather than my preference: if the walls are sound and I can engage native bone, I place immediately and graft the gap; if stability is doubtful or the wall is thin or infected, I step to Type 2 or 3 to let soft tissue and partial bone heal, often after socket preservation, reserving Type 4 with staged augmentation for severe deficiency or high medical and esthetic risk. The governing principle is to spend only as much time, and as much ridge, as the case truly requires.
Examiner follow-ups:
  • How does socket/ridge preservation change the calculus toward Type 3?
  • When is Type 2 preferable to Type 3, and why?
  • What patient factors would tip a borderline case to Type 4?
§4.1 — References

References

  1. Hämmerle CHF, Chen ST, Wilson TG. Consensus statements and recommended clinical procedures regarding the placement of implants in extraction sockets. Int J Oral Maxillofac Implants. 2004;19(Suppl):26–28. PMID: 15635943
  2. Gallucci GO, Hamilton A, Zhou W, Buser D, Chen S. Implant placement and loading protocols in partially edentulous patients: a systematic review (ITI Consensus). Clin Oral Implants Res. 2018;29(Suppl 16):106–134. doi:10.1111/clr.13276. PMID: 30328194
  3. Chen ST, Buser D. Esthetic outcomes following immediate and early implant placement in the anterior maxilla — a systematic review. Int J Oral Maxillofac Implants. 2014;29(Suppl):186–215. doi:10.11607/jomi.2014suppl.g3.3. PMID: 24660198

Evidence grades: Systematic review Consensus Preclinical.

About this chapter

This chapter is part of Osseo IQ — a clinical reference for implant dentistry. Content is sourced from consensus statements, systematic reviews, and primary literature; each key recommendation carries an evidence grade, and every page records its review date. Material is reviewed on a rolling annual cycle.

How to cite: Khuu T, ed. Implant Placement Timing. In: Osseo IQ, 1st ed. §4.1. June 2026. Accessed [date]. [URL]

Compiled by: Tan Khuu, DDS — Doctor of Dental Surgery and a licensed dentist in California and South Carolina. Osseo IQ summarizes published evidence and clinical guidelines and is not a substitute for individual clinical judgment. Image credits: Figure 1 original schematic illustration © Osseo IQ, 2026.

For licensed clinicians — educational use only. This chapter summarizes published evidence and is not a substitute for individual clinical judgment, examination, or the standard of care in your jurisdiction. Verify drug doses, devices, and protocols against current manufacturer instructions and local guidelines.

© 2026 Osseo IQ · Edition 1.0 · Chapter 4 Surgical · §4.1 · Last reviewed June 2026