الصفحة الرئيسية / الاقسام / The All-In-One® Workflow: Extract - Implant - Restore All in One Session
The All-In-One® Workflow: Extract - Implant - Restore All in One Session

The All-In-One® Workflow: Extract - Implant - Restore All in One Session

السعر الرسمي $300.00
السعر للأطباء خارج العراق $20.00
السعر للأطباء داخل العراق 20 ألف دينار عراقي
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The All-In-One® Workflow: Extract - Implant - Restore All in One Session

Category: Implantology

Instructor(s): Maxim Baini

Course structure: Lessons: 4 lessons | Duration: 4 h 23 min

Course overview

The All-In-One® Workflow is a structured and clinically applicable framework for full-arch rehabilitation — from the first patient consultation and diagnostic planning to surgical execution and immediate prosthetic delivery in a single clinical session.

It integrates bicortical anchorage principles, remote graftless anchorage strategies, guided surgery concepts, and advanced protocols for the management of severely resorbed maxillae.

Led by Maxim Khoury Baini, an experienced periodontist and implantologist, this course reflects real-world clinical expertise from one of the most established practitioners in complex implant rehabilitation and immediate full-arch restoration.

You will learn about:


Principles of immediate full-arch implant rehabilitation in complex clinical scenarios
Clinical decision-making algorithms from consultation to final prosthetic delivery
Bicortical anchorage principles for predictable immediate loading
Strategic planning of implant number, angulation, and distribution
Bone reduction protocols and prosthetic transition line management
FP1, FP2, and FP3 full-arch prosthetic concepts
Static, dynamic, stackable, and flapless guided surgery protocols
Guided surgery indications, workflow integration, and clinical limitations
Protocols for managing severe bone loss and atrophic maxillae
Step-by-step protocols for trans-sinus, transnasal, pterygoid, nasal, and zygomatic implantation
The PATZI protocol for selecting graftless remote anchorage strategies
Prosthetically driven implant positioning and aesthetic management
Complication prevention, biomechanical risk reduction, and long-term stability strategies.

This course bridges surgical precision, prosthetic planning, and evidence-based decision-making, transforming advanced implant concepts into structured confidence for daily clinical practice.

Course lessons

Lesson 1. Bicortical Anchorage: Standard Full Arch Rehabilitation

Biological, biomechanical, and technical risk factors determining success and failure in immediate full-arch rehabilitation
The complete All-In-One® workflow: step-by-step decision algorithm from the first patient appointment through extraction, implant placement, and provisional delivery
Indications for 4 vs. 6 implants: bone quality and quantity, arch configuration, occlusal load distribution, and prosthetic design criteria
Anaesthesia and sedation protocols: local anaesthesia, intravenous sedation, and general anaesthesia indications
Bone reduction planning based on bone resorption levels and gingival display during full smile
Transition line design principles: planning, common mistakes, and correction of compromised transition lines
Guided full-arch surgery: indications, contraindications, workflow, precision limitations, and integration with the All-In-One® concept
Bicortical implant placement in the maxilla: three-dimensional positioning for reliable immediate-loading primary stability
Avoidance of inadequate stability and excessive torque during maxillary implant placement
Mandibular implant positioning: nerve localisation, safe proximity placement, tilted vs. axial implant selection, guided vs. freehand execution, and anterior mandibular anatomical landmarks.

Lesson 2. Remote Anchorage in the Severely Resorbed Atrophic Maxilla

Epidemiological context of peri-implantitis and implant failure in severely resorbed edentulous maxillae
General principles of graftless atrophic maxilla rehabilitation: patient selection, risk stratification, and prosthetic planning prior to surgical sequencing
The PATZI protocol: systematic decision-making matrix based on residual bone anatomy
Anterior nasal implants: nasal vomer anchorage, nasal spine, nasal floor engagement, and the trans-nasal approach
Anatomy, technique, indications, and complications of trans-nasal implant approaches
Pterygoid implants: three-dimensional angulation for cortical engagement of the pterygoid process
Prosthetic implications and comparison of pterygoid implants with alternative posterior anchorage solutions
Tilted implant strategies in intermediate resorption cases: M-technique and V-technique
Long implants and palatal approach implants in graftless rehabilitation
Trans-sinus implants: Bedrossian Zones I–IV and the ZAGA concept
-Tilting strategies and the contributions of Maló, Aparicio, Bedrossian, and Davó
Zygomatic implants: neck positioning in anterior, premolar, and molar zones
Single vs. quad-zygoma configurations and indications for each strategy
Integration of zygomatic implants into prosthetic design
Combining remote anchorage techniques in hybrid full-arch configurations
Load distribution principles and sequencing during the same surgical session.

Lesson 3. Guided Implant Surgery: From Single Units to Full Arch

Evidence base of guided implant surgery: accuracy, complications, and failure risk compared with freehand and navigator-assisted placement
Critical analysis of current literature on guided implantology
Guided vs. flapless surgery: clarifying the distinction between concepts
Static guided surgery for single units and short spans
Drilling protocols, sleeve-to-implant accuracy, guided key vs. full-guided protocols, and offset mechanics
Common errors in single-unit guided implant placement
Full-arch guided surgery protocols within the All-In-One® concept
CBCT acquisition standards, diagnostic wax-up, and virtual planning workflows
Guide design for immediate-loading cases and integration with prosthetic conversion
Impact of bone reduction and flap elevation on guide fit and surgical accuracy
Static guided surgery for severely resorbed maxillae
Guided zygomatic and pterygoid implant placement: anatomical planning and safe angulation design
Guide design considerations for extraoral implant trajectories
Clinical evidence comparing guided and freehand zygomatic surgery
Dynamic navigation in implantology: principles, indications, and limitations
Differences between real-time navigation and static guidance systems
Stackable guides and immediate temporaries in full-arch rehabilitation
Simultaneous fabrication of surgical guides and immediate provisional restorations
Workflow integration, material selection, and conversion protocols for stackable systems
Guided surgery in totally edentulous patients
Fixation pin requirements and management of guide-to-bone gaps in severe alveolar resorption cases.

Lesson 4. Trans-sinus Implants: Indications, Technique, and a Modified Original Approach

Defining trans-sinus implants: length, angulation, crestal engagement, and sinus cavity trajectory
Bedrossian Zones and their practical implications for trans-sinus case selection
Historical development and contributions to the trans-sinus concept
Residual crestal bone height requirements for safe trans-sinus placement
Favourable vs. unfavourable sinus anatomy and sinus floor topography
Membrane integrity assessment on CBCT and cone beam pre-surgical planning
Patient-level risk factors: sinusitis history, anatomical variants, systemic conditions, and antibiotic prophylaxis
Comparative analysis of trans-sinus and zygomatic implants
Decision criteria for trans-sinus, zygomatic, and combined implant approaches
Trans-sinus implants with or without membrane elevation and bone grafting
Standard trans-sinus technique: pre-surgical CBCT analysis and virtual implant planning
Flap design, crestal access, and osteotomy preparation through the sinus floor
Controlled membrane management and implant trajectory control
Implant selection, primary stability assessment, and immediate loading criteria
Modified “Wand” technique for buccal bone anchoring
Buccal cortical plate engagement as an additional anchorage point
Modified osteotomy trajectory and implant angulation planning
Stabilisation mechanics and biomechanical rationale of the “Wand” technique
Enhanced primary stability in low-density posterior maxillary bone
Improved biomechanical load distribution with shorter implants
Direct visualization of apical implant engagement
Comparison of trans-sinus implants with sinus lifting procedures.

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