The Neurosurgery Surgical Micro Lumbar Curette Backward Angled 1-0 is a specialized microsurgical instrument designed for neurosurgeons and orthopedic spine surgeons performing advanced lumbar spine procedures. This precision-engineered curette provides excellent control for the removal and preparation of bone, cartilage, fibrous tissue, scar tissue, osteophytes, and residual disc material during delicate spinal operations.
Featuring a Backward Angled 1-0 working tip, this Micro Lumbar Curette allows surgeons to approach targeted lumbar anatomical structures from an optimized backward angle. The angled configuration improves access to challenging operative areas while providing controlled movement and enhanced tactile feedback. The 1-0 tip size offers a fine working profile suitable for detailed microsurgical applications requiring maximum precision.
The micro-profile shaft design enables smooth navigation through narrow spinal corridors and confined surgical spaces. Its slim structure improves visualization under surgical microscopes and supports accurate manipulation around sensitive neural structures. This makes it ideal for microscope-assisted lumbar procedures, minimally invasive spine surgery, and advanced neurosurgical applications.
The Neurosurgery Surgical Micro Lumbar Curette Backward Angled 1-0 is designed for excellent surgeon handling and ergonomic performance. The balanced construction provides superior tactile response, allowing precise movements during complex procedures. The ergonomic handle supports a secure grip and helps reduce hand fatigue during extended lumbar spine operations.
Manufactured from premium surgical-grade stainless steel, this lumbar micro curette offers exceptional strength, corrosion resistance, and long-term durability. The precision-machined working tip maintains reliable performance through repeated sterilization cycles, making it a dependable reusable instrument for hospitals, surgical centers, and specialized neurosurgical facilities.
The instrument features a satin matte finish that minimizes glare from operating room lighting and surgical microscopes, improving visualization during delicate spinal procedures. The smooth stainless steel surface supports efficient cleaning and sterilization while meeting professional surgical hygiene standards.
The Neurosurgery Surgical Micro Lumbar Curette Backward Angled 1-0 is commonly used in lumbar microdiscectomy, spinal decompression, laminectomy, laminotomy, lumbar fusion procedures, TLIF, PLIF, nerve root decompression, foraminal decompression, vertebral endplate preparation, and revision lumbar spine surgery.
Combining precision engineering, durable stainless steel construction, and ergonomic design, this micro lumbar curette is an essential instrument for modern neurosurgical and orthopedic spine procedures. It provides surgeons with the accuracy, reliability, and control required for advanced lumbar spinal interventions.
Key Features
- Backward Angled 1-0 tip for precise lumbar microsurgical procedures.
- Designed for neurosurgery and spine surgery applications.
- Angled backward profile improves access to difficult areas.
- Micro-profile shaft enables work in narrow spinal spaces.
- Suitable for controlled bone, cartilage, and tissue preparation.
- Premium surgical-grade stainless steel construction.
- Excellent tactile feedback and surgical precision.
- Ergonomic handle improves comfort and stability.
- Satin matte finish reduces microscope glare.
- Corrosion-resistant and durable for repeated clinical use.
- Fully reusable and steam autoclave sterilizable.
- Suitable for minimally invasive spine procedures.
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Micro Lumbar Curette Backward Angled 1-0 |
| Category | Neurosurgery Surgical Instrument |
| Specialty | Neurosurgery / Spine Surgery |
| Application | Lumbar curettage and tissue preparation |
| Material | Premium Surgical Grade Stainless Steel |
| Tip Configuration | Backward Angled |
| Tip Size | 1-0 |
| Design | Micro Profile |
| Finish | Satin Matte |
| Sterilization | Steam Autoclave Compatible |
| Reusable | Yes |
Product Contents
- 1 × Neurosurgery Surgical Micro Lumbar Curette – Backward Angled 1-0
Applications
The instrument is commonly used for:
- Lumbar microdiscectomy
- Lumbar spinal decompression
- Laminectomy
- Laminotomy
- Lumbar fusion procedures
- TLIF (Transforaminal Lumbar Interbody Fusion)
- PLIF (Posterior Lumbar Interbody Fusion)
- Nerve root decompression
- Foraminal decompression
- Vertebral endplate preparation
- Disc material removal
- Revision lumbar spine surgery
- Microsurgical tissue preparation
Advantages
Improved Surgical Access
The backward angled tip provides better approach angles for challenging lumbar anatomical areas.
Precision Microsurgical Control
The fine 1-0 tip allows accurate manipulation during delicate spinal procedures.
Durable Construction
Premium stainless steel ensures long-lasting performance and corrosion resistance.
Enhanced Visualization
The micro-profile design supports microscope-assisted spinal surgery.
Comfortable Handling
Balanced ergonomics improve surgeon control and reduce fatigue.
FAQs
1. What is the Neurosurgery Surgical Micro Lumbar Curette Backward Angled 1-0 used for?
It is used for precise curettage, bone preparation, and tissue removal during lumbar spine procedures.
2. What is the advantage of the Backward Angled 1-0 tip?
The angled backward design improves access and allows controlled manipulation of targeted lumbar structures.
3. Is this instrument suitable for microsurgical procedures?
Yes, the micro-profile design supports microscope-assisted and minimally invasive spinal procedures.
4. What material is this lumbar curette made from?
It is manufactured from premium surgical-grade stainless steel for durability and corrosion resistance.
5. Can this curette be sterilized and reused?
Yes. It is reusable and compatible with standard steam autoclave sterilization.
6. Which specialists use this instrument?
Neurosurgeons and orthopedic spine surgeons commonly use this instrument during lumbar decompression, microdiscectomy, fusion, and spinal reconstruction procedures.

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