Speziell geformte Nadel

Specially Shaped Needle Customized: research and development of various specially shaped needle cannula, according to the customer’s requirements.

Technische Daten

Parameter Wert / Beschreibung
Produktname Specially Shaped Needle (Customized Cannula)
Pegelbereich 14G – 34G (customizable)
Äußerer Durchmesser (OD) 2.1 mm – 0.18 mm (depending on gauge)
Optionen für die Nadellänge 4 mm – 150 mm (customizable)
Needle Geometry Straight, curved, angled, J-shaped, hooked, irregular (designed per requirements)
Material der Kanüle Medical-grade stainless steel SUS304 / SUS316L (ISO 9626 compliant)
Oberflächenbehandlung Electropolished, siliconized, or Teflon-coated (optional, depending on application)
Material der Nabe Medical-grade polypropylene, stainless steel, or custom design
Verbindungstyp Luer-lock, Luer-slip, or proprietary
Sterilization Options EO (Ethylene Oxide), Gamma irradiation, or non-sterile (for R&D/lab use)
Verpackung Individual blister packs or bulk packaging, depending on order
Single-Use / Reusable Typically single-use, but reusable options available upon request
Zertifizierung ISO 13485, CE marking, FDA (depending on region and application)

Specially Shaped Needle: Precision-Engineered Solutions for Complex Medical Challenges

Specially Shaped Needle Innovation Purpose

We pioneer the design and manufacture of non-standard needle geometries to overcome limitations in minimally invasive procedures. Our custom-engineered solutions enable breakthroughs in accessing confined anatomies, delivering novel therapies, and optimizing device-tissue interactions, transforming conceptual medical innovations into clinical reality.

Customization Advantages

Geometry Mastery
Parametric tip designs: J-hooks, helical coils, side-ports, multi-lumen profiles, or patient-specific curves.
Micro-scale features: Barbed retention elements, fluidic channels (≥50μm ID), or directional drug-elution windows.

Advanced Fabrication
Laser micromachining ±5μm tolerances.
Electroforming for seamless tapered transitions.
Shape-memory alloy integration (Nitinol).

Rapid Prototyping
3D-printed surgical-grade steel/PEEK prototypes in ≤72 hours.
In silico fluid dynamics/structural simulation reports.

Material Anwendungen
SUS316LVM High-stress interventions (orthopedic/bone access)
Nitinol Steerable neurovascular/electrophysiology tools
PEEK MRI-guided biopsy Systeme
Gold-plated Electroporation/ablation electrodes

Clinical Transformation Examples

  • Ophthalmic Microneedles: 35G kinked-tip design for subretinal drug delivery.

  • Neurological Ports: Curved cannulas bypassing critical brain structures.

  • Brachytherapy Seeds: Barbed deployment needles securing radioactive implants.

End-to-End Development Support

  • Phase 1: CAD/FEA modeling → Phase 2: Animal validation kits → Phase 3: ISO 13485 production

  • Regulatory roadmap: Design dossiers for FDA 510(k)/CE MDR submissions

  • Scalability: Pilot batches (50 units) to mass production (1M+/month)

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