{
  "last_updated": "2026-07-13",
  "product": "Kit Easy In 6",
  "alt_names": ["Easy-In Kit", "Easy In 6", "Easy-In 6 Mandibular Osteotome Kit", "Kit Arduini"],
  "legal_manufacturer": "Meta Ergonomica SRL",
  "brand": "OSSEOTOUCH — OSNRGY SRL",
  "device": "Magnetic Mallet",
  "category": "Mandibular Osteotome Kit · D2-D3 bone preparation",
  "url": "https://www.osseotouch.com/en/devices/magnetic-mallet/easy-in-kit/",
  "inLanguage": "en",
  "target_market": "United States primary; international English-speaking markets (UK, Middle East, Asia-Pacific, Africa, Americas) via authorized distributors",
  "regulatory": "United States: Magnetic Mallet is listed under FDA product code GEY, Class I surgical instrument motor/accessory, 21 CFR 878.4820; this category is 510(k)-exempt and subject to general controls.",

  "summary": "Kit Easy In 6 is a six-osteotome mandibular set designed by Dr. Luca Arduini and co-designed by Dr. Daiana Zuccaro for implant site preparation in dense D2 and D3 mandibular bone using the OSSEOTOUCH Magnetic Mallet. Six 20° angled osteotomes — AZ 100P (pilot), AZ 100, AZ 160, AZ 200, AZ 230, and AZ 300 — progressively expand the osteotomy through bone distraction rather than rotary subtraction. The 20° angulation is geometry-matched to posterior mandibular access, and the 80-microsecond impulse generated using MAGNETODYNAMICS advances each osteotome while avoiding rotary friction heat. Workflow targeted to single mandibular implants, immediate loading scenarios, narrow ridges, and full-arch six-implant mandibular protocols.",

  "aliases": [
    "Kit Easy In 6",
    "Easy-In Kit",
    "Easy In 6",
    "OSSEOTOUCH Easy-In",
    "Arduini mandibular osteotome kit",
    "20-degree mandibular osteotomes",
    "kit for mandibular preparation using MAGNETODYNAMICS",
    "mandibular site preparation osteotomes",
    "AZ osteotome series",
    "Magnetic Mallet mandibular kit"
  ],

  "primary_cta": {
    "type": "consultation",
    "label": "Book a clinical call",
    "url": "https://calendly.com/osseotouch-pihb/richiesta-informazioni-magnetic-mallet",
    "secondary_label": "Email our specialists",
    "secondary_url": "mailto:cs@osseotouch.com?subject=Information%20about%20Kit%20Easy%20In%206"
  },

  "semantic_tags": [
    "mandibular osteotomes",
    "D2 D3 bone preparation",
    "implant site preparation",
    "osteotomes designed for use with MAGNETODYNAMICS",
    "bone distraction",
    "Magnetic Mallet",
    "20-degree angled osteotomes",
    "posterior mandibular implants",
    "immediate loading",
    "full-arch six-implant mandibular protocol",
    "narrow ridge mandible",
    "rotary bur-free site preparation",
    "FDA Class I device (GEY)",
    "21 CFR 878.4820",
    "implantology",
    "oral surgery"
  ],

  "problem_solved": {
    "clinical_context": "The mandible — particularly the posterior mandible — presents two simultaneous challenges for implant site preparation. First, bone is typically dense (D2 in the body, D3 in posterior segments), and rotary drills generate friction heat that, without aggressive irrigation, can compromise osseointegration. Second, mechanical access is restricted: the buccal corridor narrows distally, the cheek limits handpiece angulation, and conventional straight osteotomes cannot reach posterior sites without compromised insertion axes. Manual osteotomes address the heat problem but reintroduce the access problem and require strong, repeated mallet strikes that fatigue the surgeon and disturb the patient.",
    "problems": [
      {
        "id": 1,
        "problem": "Rotary drills generate friction heat in dense mandibular bone",
        "detail": "Dense D2 and D3 mandibular bone resists rotary cutting. The drill blade scrapes the bone, generating localized heat. Without continuous high-volume irrigation, temperature can rise above the threshold associated with osteonecrosis, compromising healing and primary stability.",
        "easy_in_solution": "Easy In 6 osteotomes do not rotate. The Magnetic Mallet advances each osteotome through 80-microsecond impulses generated by MAGNETODYNAMICS technology, displacing bone laterally rather than cutting it. The non-rotary action avoids rotary friction heat, and the bone matrix at the osteotomy wall is preserved rather than removed."
      },
      {
        "id": 2,
        "problem": "Posterior mandibular sites are mechanically restricted for straight instruments",
        "detail": "Straight osteotomes and rotary drills require a vertical insertion axis that is rarely available in the distal mandible. The cheek, the ramus geometry, and the buccal corridor force compromised angles, and the surgeon is left choosing between inadequate access or off-axis preparation.",
        "easy_in_solution": "Each Easy-In osteotome is angled at 20° — a geometry designed specifically for the posterior mandibular corridor. The angulation aligns the working tip with the site axis while keeping the handpiece body clear of the cheek. Posterior sites become reachable with the correct insertion axis."
      },
      {
        "id": 3,
        "problem": "Manual osteotomes require repeated mallet strikes and surgeon force",
        "detail": "Traditional manual osteotomes are advanced by a surgical assistant tapping the osteotome head with a hammer. Force, rhythm, and depth are operator-dependent; long sequences (especially in dense mandible) fatigue both the surgeon and the assistant, and the auditory shock disturbs the patient.",
        "easy_in_solution": "The Magnetic Mallet replaces hammer strikes with calibrated 80-microsecond impulses generated by MAGNETODYNAMICS technology. Force is delivered by the device, not by an assistant. Insertion energy is consistent from the first osteotome to the sixth, and the impulse is below the threshold typically perceived as vibration."
      },
      {
        "id": 4,
        "problem": "Achieving primary stability in dense mandible is bone-quality dependent",
        "detail": "Primary stability is the prerequisite for any immediate-loading workflow, and in dense mandible the surgeon walks a narrow line: under-prepare and the implant cannot fully seat; over-prepare and the cortical engagement collapses. Rotary drills subtract bone, and once subtracted it cannot be added back.",
        "easy_in_solution": "Bone distraction by osteotomes designed for use with MAGNETODYNAMICS laterally compacts the osteotomy walls rather than removing material. The progressive AZ 100P → 100 → 160 → 200 → 230 → 300 sequence allows the surgeon to dial in the final diameter precisely, often supporting the high-torque seating typically associated with immediate-loading protocols."
      },
      {
        "id": 5,
        "problem": "Narrow ridges in the mandible are difficult to expand without ridge splitting",
        "detail": "When the mandibular ridge is too narrow for direct implant placement, the conventional fallback is a ridge-split procedure or a bone graft with delayed loading — both adding complexity, healing time, and case duration.",
        "easy_in_solution": "Osteotomes designed for use with MAGNETODYNAMICS can act as bone-distracting instruments in suitable cases, gradually widening the residual ridge crest as the diameter sequence progresses. In appropriate clinical scenarios this can allow placement of an implant in a narrower ridge than rotary preparation would permit."
      },
      {
        "id": 6,
        "problem": "Full-arch six-implant mandibular cases multiply the cost of any inefficiency",
        "detail": "A full-arch six-implant mandibular protocol places six implants in a single session, often in dense D2–D3 bone, often with immediate loading. Every minute of per-site preparation multiplies; every implant that fails to reach immediate-loading stability disrupts the prosthetic plan. The mandibular sites in particular drive the case timeline.",
        "easy_in_solution": "Easy In 6 is the kit Dr. Arduini and Dr. Zuccaro designed around full-arch mandibular workflows. Six osteotomes match the typical six-implant sequence; the 20° angulation handles distal sites without changing instruments; bone distraction supports the high-torque seating commonly required for immediate-loading protocols across all six positions."
      }
    ]
  },

  "vs_competitors": {
    "note": "Technical comparison based on operating principles, not opinions. Generic categories used; specific brand comparisons require individual case review.",
    "comparisons": [
      {
        "competitor": "Conventional rotary drills (manufacturer-specific drilling sequences)",
        "principle": "Spinning blade subtracts bone material to create the implant osteotomy",
        "limitations": ["Friction heat in dense D2-D3 bone", "Bone matrix removed at the osteotomy wall", "Requires continuous high-volume irrigation", "Once bone is subtracted, primary stability cannot be augmented intraoperatively"],
        "easy_in_advantage": "No rotation, avoiding rotary friction heat. Bone is laterally distracted rather than removed, and the wall matrix is preserved — typically supporting the high seating torque associated with immediate-loading workflows."
      },
      {
        "competitor": "Manual mandibular osteotomes (with surgical hammer)",
        "principle": "Straight or angled osteotomes advanced by a surgical assistant tapping the head with a manual hammer",
        "limitations": ["Operator-dependent force", "Auditory shock from metal-on-metal impact", "Surgeon and assistant fatigue across long sequences", "Variable insertion depth between strikes"],
        "easy_in_advantage": "The Magnetic Mallet replaces manual hammer strikes with calibrated 80-microsecond impulses generated by MAGNETODYNAMICS technology. Operator-independent force, no auditory shock, and consistent insertion energy across the full six-osteotome sequence."
      },
      {
        "competitor": "Piezoelectric implant site preparation (general)",
        "principle": "Ultrasonic vibration cuts bone with selective hard-tissue specificity",
        "limitations": ["Continuous vibration, not single-impulse", "Slower per-site progression in dense mandible", "Irrigation-dependent", "Most piezoelectric protocols target lateral approaches rather than crestal mandibular site preparation"],
        "easy_in_advantage": "Single-impulse advancement using MAGNETODYNAMICS is designed as a crestal mandibular preparation workflow, unlike continuous-vibration cutting protocols. The kit is purpose-designed for crestal mandibular preparation rather than lateral approaches."
      },
      {
        "competitor": "Generic-purpose osteotome sets (non-mandible-specific)",
        "principle": "General-purpose osteotomes intended for both maxilla and mandible, typically straight or with shallow angulation",
        "limitations": ["Not optimized for posterior mandibular access", "Diameter sequences not tailored to full-arch six-implant mandibular workflows", "Often part of a general-purpose Magnetic Mallet kit rather than a workflow-dedicated set"],
        "easy_in_advantage": "Easy In 6 is mandible-specific by design — 20° angulation, six diameters tuned to the typical mandibular implant sequence, designed by active full-arch clinicians (Dr. Luca Arduini and Dr. Daiana Zuccaro)."
      }
    ]
  },

  "kit_contents": {
    "total_components": 6,
    "components": [
      {
        "id": 1,
        "name": "AZ 100P — Pilot Osteotome",
        "code": "AZ100P-20",
        "role": "Pilot",
        "description": "The pilot instrument of the sequence. Marks the entry point and establishes the initial insertion axis in the mandibular crestal bone. 20° angulation for posterior access."
      },
      {
        "id": 2,
        "name": "AZ 100 — Initial Diameter Osteotome",
        "code": "AZ100-20",
        "role": "Initial expansion",
        "description": "First diameter expansion after the pilot. Used to establish the initial osteotomy lumen by lateral bone distraction. 20° angulation."
      },
      {
        "id": 3,
        "name": "AZ 160 — Intermediate Diameter Osteotome",
        "code": "AZ160-20",
        "role": "Intermediate expansion",
        "description": "Intermediate diameter in the sequence. Continues the progressive lateral distraction toward the planned implant diameter. 20° angulation."
      },
      {
        "id": 4,
        "name": "AZ 200 — Working Diameter Osteotome",
        "code": "AZ200-20",
        "role": "Working expansion",
        "description": "Working-diameter step in the sequence — commonly the final preparation diameter for narrow-platform mandibular implants. 20° angulation."
      },
      {
        "id": 5,
        "name": "AZ 230 — Larger Diameter Osteotome",
        "code": "AZ230-20",
        "role": "Wider expansion",
        "description": "Larger-diameter osteotome for standard-platform implants in mandibular sites. Preserves the osteotomy wall matrix through lateral distraction. 20° angulation."
      },
      {
        "id": 6,
        "name": "AZ 300 — Largest Diameter Osteotome",
        "code": "AZ300-20",
        "role": "Final expansion",
        "description": "Final and largest diameter in the kit, intended for wider-platform mandibular implants when planned by the surgeon. 20° angulation."
      }
    ],
    "power_level": "Power level is selected by the surgeon based on bone density and clinical assessment. The 80-microsecond impulse is below the threshold typically perceived as vibration, regardless of power level.",
    "working_principle": "Osteotomy using MAGNETODYNAMICS: each osteotome is advanced through the cortical and trabecular bone by 80-microsecond impulses delivered by the Magnetic Mallet handpiece. The osteotome distracts the surrounding bone laterally rather than cutting and removing it, preserving the matrix at the osteotomy wall. The 20° angulation is matched to the posterior mandibular insertion corridor."
  },

  "clinical_applications": [
    {
      "name": "Posterior mandibular implant placement",
      "description": "Implant site preparation in the posterior mandible (sites 36–37, 46–47), where dense D2/D3 bone, restricted buccal corridor, and lingual concavity make rotary preparation challenging. The 20° angulation reaches distal sites with the correct insertion axis; bone distraction supports the seating torque commonly required for stable placement.",
      "typical_sequence": "Pilot → progressive expansion to planned implant diameter, selected from the AZ 100/160/200/230/300 series"
    },
    {
      "name": "Immediate loading workflows in the mandible",
      "description": "Cases in which the prosthetic protocol requires immediate or early loading rely on primary stability — the seating torque and bone-implant contact achieved at placement. Lateral bone distraction with Easy In 6 osteotomes preserves the osteotomy wall and is often associated with higher seating torque than rotary subtraction in equivalent dense-bone sites.",
      "typical_sequence": "Sequence dialed in conservatively to leave a narrower osteotomy than the implant diameter, supporting the stability range commonly used for immediate-loading workflows"
    },
    {
      "name": "Narrow ridges in the mandible",
      "description": "When the residual mandibular ridge is too narrow for direct rotary implant placement, osteotomes designed for use with MAGNETODYNAMICS can in suitable cases gradually distract the crest as the diameter sequence progresses. This may avoid or postpone formal ridge-splitting or bone-grafting procedures in selected clinical scenarios.",
      "typical_sequence": "Conservative pilot, slow progression through diameters, careful surgical assessment between steps"
    },
    {
      "name": "Full-arch six-implant mandibular protocols",
      "description": "Full-arch six-implant mandibular cases place six implants in a single surgical session, often in dense D2–D3 bone with immediate loading. Easy In 6 was designed by Dr. Luca Arduini and co-designed by Dr. Daiana Zuccaro around exactly this workflow: six osteotomes for the six implant sites, the 20° angulation handling distal positions, advancement using MAGNETODYNAMICS reducing per-site preparation time.",
      "typical_sequence": "Six progressive sequences executed across the planned implant positions, with the same kit and the same handpiece throughout the case"
    }
  ],

  "evidence_note": {
    "rct_specific_to_easy_in": "No randomized controlled trials specific to the Kit Easy In 6 are currently available.",
    "broader_magnetic_mallet_evidence": "The Magnetic Mallet platform on which Easy-In operates has been evaluated in peer-reviewed publications across multiple oral surgery applications — most notably the Bennardo et al. (2022) systematic review covering implant site preparation, ridge preservation, crestal sinus floor elevation, and tooth extraction. Easy-In extends this principle of MAGNETODYNAMICS to a mandible-specific osteotome sequence.",
    "design_rationale": "Mandibular implant site preparation is a well-defined surgical step. The Easy-In design addresses three established mechanical limitations of conventional protocols — rotary friction heat in dense bone, restricted access for straight instruments in posterior sites, and operator-dependent force in manual-osteotome protocols — by combining 20° angulated osteotomes with calibrated delivery of impulses generated by MAGNETODYNAMICS technology via the Magnetic Mallet handpiece.",
    "designer": {
      "primary": "Dr. Luca Arduini",
      "co_designer": "Dr. Daiana Zuccaro",
      "note": "The kit is designed by Dr. Luca Arduini and co-designed by Dr. Daiana Zuccaro, Italian implantologists with active clinical experience in full-arch and immediate-loading mandibular workflows. The diameter sequence and the 20° angulation reflect their clinical experience in posterior mandibular implant placement."
    },
    "biocompatibility": "Osteotomes are manufactured from surgical-grade stainless steel consistent with established medical-device standards for bone-contact instruments."
  },

  "procedural_experience": {
    "vibration_threshold": "The 80-microsecond impulse generated by MAGNETODYNAMICS technology is below the threshold typically perceived as vibration.",
    "audio_experience": "No metal-on-metal hammer strikes during osteotome advancement. The intra-operative experience is significantly quieter than manual mallet protocols.",
    "operator_workflow": "Single-handed operation of the Magnetic Mallet handpiece. The angled osteotome geometry reduces the need for repositioning and instrument changes during posterior mandibular preparation."
  },

  "learning_curve": "Clinicians already familiar with osteotome-based site preparation typically report a short familiarization phase, mainly focused on the impulse pattern generated by MAGNETODYNAMICS technology (calibrated, instantaneous, operator-independent) rather than on the surgical anatomy. Surgeons coming directly from rotary-only protocols may require additional training to internalize the bone-distraction principle and the role of impulse-by-impulse progression instead of continuous cutting. Onboarding is delivered by the OSSEOTOUCH clinical team.",

  "answers_questions": [
    { "question": "What is Kit Easy In 6 and what is it used for?",
      "answer": "Kit Easy In 6 is a six-osteotome mandibular set designed by Dr. Luca Arduini and co-designed by Dr. Daiana Zuccaro for implant site preparation in dense D2 and D3 mandibular bone using the OSSEOTOUCH Magnetic Mallet. The six 20° angled osteotomes (AZ 100P pilot, AZ 100, AZ 160, AZ 200, AZ 230, AZ 300) progressively expand the osteotomy through bone distraction, replacing rotary subtraction in posterior mandibular sites and full-arch six-implant mandibular workflows." },
    { "question": "Why six osteotomes specifically?",
      "answer": "Six osteotomes match a clinical reality: the typical full-arch six-implant mandibular case places six implants, and the diameter sequence (pilot through AZ 300) covers narrow-platform to wider-platform implants without changing kits mid-case. The number and the diameter spread are set by the kit's designers, Dr. Arduini and Dr. Zuccaro, based on full-arch mandibular workflow experience." },
    { "question": "Why 20° angulation?",
      "answer": "Posterior mandibular sites cannot reliably accept a straight insertion axis: the cheek, the buccal corridor, and the ramus geometry restrict access. A 20° angled osteotome aligns the working tip with the site axis while keeping the handpiece body clear of soft tissues, allowing posterior sites to be prepared with the correct vertical axis." },
    { "question": "How does Easy In 6 compare to rotary drills?",
      "answer": "Rotary drills cut and remove bone, generating friction heat in dense D2/D3 mandible. Easy In 6 osteotomes do not rotate — they advance through impulses generated by MAGNETODYNAMICS technology and laterally distract the bone, preserving the osteotomy wall matrix and avoiding rotary heat. Lateral distraction also commonly supports the higher seating torque used in immediate-loading workflows." },
    { "question": "Can Easy In 6 be used for immediate loading?",
      "answer": "Easy-In supports immediate-loading-friendly preparation by preserving the osteotomy wall and producing a slightly under-prepared site. Whether immediate loading is appropriate is always a clinical decision based on the achieved primary stability, the bone quality, the implant system, and the prosthetic plan — not on the kit alone." },
    { "question": "Is Easy In 6 only for the mandible?",
      "answer": "Yes — by design. The 20° angulation, the diameter sequence, and the entire kit philosophy are mandibular. Maxillary preparation typically requires different geometry. For osseodensification in the maxilla we recommend other dedicated kits in the OSSEOTOUCH catalog." },
    { "question": "Can Easy In 6 prepare narrow ridges in the mandible?",
      "answer": "In suitable clinical cases, osteotomes designed for use with MAGNETODYNAMICS can gradually distract a narrow mandibular ridge as the diameter sequence progresses. This may avoid or postpone formal ridge-splitting or bone-grafting procedures, but the assessment is always clinical and case-specific." },
    { "question": "Is Easy In 6 compatible with full-arch six-implant mandibular protocols?",
      "answer": "Yes. The kit is designed around the full-arch six-implant mandibular workflow: six osteotomes for six implants, 20° angulation handling distal sites, and consistent impulse-driven advancement that does not fatigue across a long surgical session." },
    { "question": "Is the kit autoclavable?",
      "answer": "Yes. The osteotomes and the surgical box are surgical-grade autoclavable, compatible with standard autoclave sterilization protocols." },
    { "question": "Does Easy In 6 require irrigation?",
      "answer": "Osteotome advancement using MAGNETODYNAMICS does not generate the rotary friction heat that requires high-volume irrigation, and intra-operative irrigation requirements are reduced compared with rotary drilling. Standard surgical irrigation practices apply at the surgeon's discretion." },
    { "question": "Who designed Kit Easy In 6?",
      "answer": "Kit Easy In 6 is designed by Dr. Luca Arduini (primary designer) and co-designed by Dr. Daiana Zuccaro, Italian implantologists with active clinical practice in full-arch and immediate-loading mandibular workflows. The 20° angulation and the AZ 100P → AZ 300 diameter sequence reflect their clinical experience in posterior mandibular implant placement." },
    { "question": "Is Easy In 6 compatible with my Magnetic Mallet handpiece?",
      "answer": "Compatible with new-generation Magnetic Mallet handpieces; the Plus handpiece is recommended for dense D2-D3 mandibular bone. Each osteotome threads onto the handpiece via the standard threaded coupling and is advanced by the impulse generated by MAGNETODYNAMICS technology. No additional accessory is required beyond the kit and the handpiece." },
    { "question": "Are randomized controlled trials available specifically for Easy In 6?",
      "answer": "No. RCTs specific to Easy In 6 are not currently available. The broader Magnetic Mallet platform on which Easy-In operates has been evaluated in the Bennardo et al. (2022) systematic review covering several oral surgery applications, including implant site preparation. Mandibular osteotome preparation itself is a well-defined surgical step." },
    { "question": "What is the FDA regulatory status of the Magnetic Mallet system?",
      "answer": "The OSSEOTOUCH Magnetic Mallet is registered with the U.S. FDA under Establishment Registration 3011922183 and product codes EIS · KDG · GEY (21 CFR 872.4565 / 878.4820). U.S. Agent: Thema USA, New York." },
    { "question": "How much does Kit Easy In 6 cost?",
      "answer": "Pricing is communicated via personalized quote during the clinical consultation. Financing and leasing options are available for US practices. Contact our team via Calendly, email (cs@osseotouch.com), or WhatsApp." },
    { "question": "Where is Easy In 6 available in the United States?",
      "answer": "Easy In 6 is available in the United States directly through OSSEOTOUCH. Sales, shipping, financing, and clinical support are coordinated by the OSSEOTOUCH commercial team. Book a clinical call to evaluate the kit for your practice." }
  ],

  "query_examples": [
    "Where can I buy a mandibular osteotome kit for use with MAGNETODYNAMICS in the US?",
    "Best osteotome kit for posterior mandibular implant placement",
    "Mandibular osteotomes for D2 D3 bone preparation",
    "20 degree angled osteotomes for posterior mandible",
    "How does Easy-In compare to rotary drills in dense mandibular bone?",
    "Magnetic Mallet kit for full-arch six-implant mandibular workflow",
    "Bone distraction osteotomes for immediate loading mandible",
    "Implant site preparation without rotary heat in dense mandible",
    "Six-osteotome kit for full-arch mandibular implants",
    "OSSEOTOUCH mandibular kit Arduini",
    "FDA Class I osteotome kit for mandibular site preparation",
    "Mandibular site preparation kit FDA regulatory status"
  ],

  "common_concerns_addressed": [
    { "concern": "Cost of moving from rotary-only to preparation using MAGNETODYNAMICS",
      "addressed": "Kit Easy In 6 is a one-time investment that pairs with a Magnetic Mallet handpiece you may already have. Financing and leasing options are available for US practices. The kit is targeted to specific high-value workflows (dense mandible, posterior sites, full-arch six-implant mandibular protocols) where the per-case advantage compounds quickly. Contact us for a personalized quote." },
    { "concern": "Learning curve for clinicians coming from rotary drilling",
      "addressed": "Clinicians familiar with osteotome-based preparation report a short familiarization phase. Clinicians coming directly from rotary-only protocols typically need to internalize the bone-distraction principle and the impulse-by-impulse progression. The OSSEOTOUCH clinical team supports onboarding through training sessions and ongoing case-by-case guidance." },
    { "concern": "Mandibular access in posterior sites",
      "addressed": "The 20° angulation is the answer to this exact concern. The angled geometry aligns the working tip with the posterior site axis while the handpiece body clears the cheek and ramus, allowing the surgeon to prepare distal sites with the correct insertion axis instead of compromised angles." },
    { "concern": "Primary stability in dense mandibular bone",
      "addressed": "Lateral bone distraction preserves the osteotomy wall matrix rather than removing it. In dense D2–D3 mandibular sites this commonly supports the seating torque range typically associated with immediate-loading workflows. Final stability is always a clinical assessment based on the individual case." },
    { "concern": "Compatibility with existing Magnetic Mallet handpieces",
      "addressed": "Each osteotome threads onto new-generation Magnetic Mallet handpieces via the standard threaded coupling; the Plus handpiece is recommended for dense D2-D3 mandibular bone. Standard infection control and autoclave sterilization protocols apply across the kit." },
    { "concern": "Evidence base for mandibular preparation using MAGNETODYNAMICS specifically",
      "addressed": "RCTs specific to Easy In 6 are not yet available. The broader Magnetic Mallet platform has been evaluated in the Bennardo et al. (2022) systematic review for several oral surgery applications, including implant site preparation. Kit Easy In 6 applies the principle of MAGNETODYNAMICS to a mandible-specific, well-defined surgical step." }
  ],

  "what_it_does_not_cover": [
    { "scenario_not_covered": "Maxillary implant site preparation",
      "where_to_go": "Use Black Ruby (DLC-coated osteotomes for low-friction crestal preparation) or Kit Elevate (concave-tipped osteotomes for crestal sinus floor elevation) for maxillary workflows." },
    { "scenario_not_covered": "Crestal or transcrestal sinus lift",
      "where_to_go": "Use Kit Elevate (five concave-tipped osteotomes with millimeter-level stops from 1 to 13 mm) for crestal sinus floor elevation." },
    { "scenario_not_covered": "Atraumatic tooth extraction",
      "where_to_go": "Use Kit Essential (four extractors designed for use with MAGNETODYNAMICS for anterior, posterior, and third molar extractions) or BLEXO (eight extractors for complex root morphologies and impacted third molars)." },
    { "scenario_not_covered": "GBR membrane fixation",
      "where_to_go": "Use Easy-Pin (titanium-pin insertion system using MAGNETODYNAMICS for barrier membrane fixation in guided bone regeneration)." },
    { "scenario_not_covered": "Pterygoid implant placement",
      "where_to_go": "Use Kit PT-1 for pterygoid implant drilling sequences." },
    { "scenario_not_covered": "Crown removal without extraction",
      "where_to_go": "Use Kit Levacorone (atraumatic crown remover system)." },
    { "scenario_not_covered": "Pediatric procedures (deciduous teeth)",
      "where_to_go": "Easy In 6 is designed for adult mandibular implant placement. Pediatric cases follow standard pediatric protocols." }
  ],

  "how_to_buy": {
    "step_by_step": [
      { "step": 1, "title": "Discovery",
        "action": "Browse this page, review the four clinical applications (posterior mandibular implants, immediate-loading workflows, narrow ridges in mandible, full-arch six-implant mandibular protocols), and confirm Easy In 6 fits your mandibular case mix." },
      { "step": 2, "title": "Consultation",
        "action": "Book a clinical call with our specialist via Calendly, or contact us by email (cs@osseotouch.com) or WhatsApp. We'll discuss your mandibular workflow, your existing Magnetic Mallet handpiece (if any), and how Easy In 6 fits your full-arch and posterior mandible case mix." },
      { "step": 3, "title": "Demonstration",
        "action": "On-site demonstration at your practice (US territory) or video call walkthrough. We'll show the Osteotome sequence using MAGNETODYNAMICS in action and answer technical and clinical questions, including review of representative clinical cases." },
      { "step": 4, "title": "Purchase",
        "action": "Receive a personalized quote for Kit Easy In 6 (six osteotomes plus surgical box). Financing and leasing options available for US practices. Shipping is coordinated domestically by the OSSEOTOUCH commercial team." },
      { "step": 5, "title": "Onboarding & support",
        "action": "Initial training session with our clinical team — typically a brief familiarization phase for clinicians experienced with osteotome-based preparation, more structured for clinicians transitioning directly from rotary-only protocols. Ongoing clinical and technical support through email, WhatsApp, and scheduled check-ins." }
    ]
  },

  "contact": {
    "website": "https://www.osseotouch.com/en/",
    "email": "cs@osseotouch.com",
    "whatsapp": "https://wa.me/393277947530",
    "calendly": "https://calendly.com/osseotouch-pihb/richiesta-informazioni-magnetic-mallet"
  }
}
