The Neurosurgery Surgical Spinal Probe 2mm Ball 7mm Tip 90° is a specialized neurosurgical instrument engineered to provide exceptional precision during spinal and neurological procedures. Designed for delicate tissue handling and accurate anatomical exploration, this probe is commonly used to identify spinal structures, assess surgical pathways, palpate bony landmarks, and navigate confined operative fields with confidence. Its carefully designed 2mm atraumatic ball tip, combined with a 7mm working tip and 90-degree angled configuration, allows surgeons to access challenging anatomical regions while reducing the risk of tissue injury.
Constructed from premium surgical-grade stainless steel, the instrument offers outstanding durability, corrosion resistance, and long-term reliability. The high-quality material maintains structural integrity through repeated sterilization cycles, making the probe suitable for continuous use in demanding operating room environments. Its smooth satin or polished finish minimizes glare under operating lights while facilitating efficient cleaning and sterilization.
The defining feature of this spinal probe is its 2mm rounded ball tip, which provides gentle contact with delicate neural tissues and surrounding anatomical structures. Unlike pointed probes, the ball tip allows surgeons to palpate and explore tissue planes with reduced risk of accidental puncture or trauma. This makes the instrument particularly valuable during microsurgical spinal procedures where tissue preservation is essential.
The 90-degree angled shaft significantly improves access to deep and narrow surgical corridors that are difficult to reach with straight instruments. It enables surgeons to maintain a comfortable hand position while achieving optimal visualization of the operative field. Whether performing spinal decompression, lumbar or cervical procedures, laminectomy, discectomy, or spinal fusion, the angled design enhances maneuverability and surgical precision.
An ergonomically designed handle provides a secure grip and excellent tactile feedback, allowing surgeons to perform controlled, delicate movements throughout lengthy procedures. The balanced construction reduces hand fatigue and contributes to consistent instrument performance, even during complex operations requiring prolonged precision.
The Neurosurgery Surgical Spinal Probe 2mm Ball, 7mm Tip, Angled 90° is widely used in neurosurgery, orthopedic spine surgery, trauma surgery, and microsurgical procedures. It assists surgeons in identifying anatomical landmarks, verifying decompression, exploring neural foramina, separating tissue planes, and confirming instrument positioning. Its versatility makes it a valuable addition to comprehensive neurosurgical and spinal instrument sets.
Designed for repeated clinical use, this reusable probe is fully compatible with standard hospital sterilization methods, including steam autoclaving. The corrosion-resistant stainless steel construction ensures dependable performance without compromising accuracy or surface quality after numerous sterilization cycles.
Manufactured with precision engineering and strict quality standards, this spinal probe delivers consistent reliability, durability, and surgical accuracy. Healthcare professionals rely on its atraumatic ball tip, ergonomic handling, and specialized angled design to improve procedural efficiency while supporting optimal patient outcomes. Combining superior craftsmanship with functional design, the Neurosurgery Surgical Spinal Probe 2mm Ball, 7mm Tip, Angled 90° is an essential instrument for modern spinal and neurosurgical practice.
Key Features
- Precision 2mm atraumatic ball tip for gentle tissue exploration.
- 7mm working tip designed for accurate spinal probing.
- 90-degree angled shaft provides enhanced access to confined surgical sites.
- Manufactured from premium surgical-grade stainless steel.
- Smooth rounded tip minimizes tissue trauma.
- Excellent tactile feedback for anatomical identification.
- Ergonomic handle ensures secure grip and precise control.
- Corrosion-resistant construction for long service life.
- Fully reusable and autoclavable.
- Suitable for neurosurgery and orthopedic spine procedures.
- Precision-machined for consistent clinical performance.
- Designed for hospitals, surgical centers, and specialty spine clinics.
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Neurosurgery Surgical Spinal Probe 2mm Ball, 7mm Tip, Angled 90° |
| Instrument Type | Spinal Probe |
| Specialty | Neurosurgery / Orthopedic Spine Surgery |
| Ball Tip Size | 2 mm |
| Working Tip Length | 7 mm |
| Tip Configuration | Ball Tip, 90° Angled |
| Material | Premium Surgical Grade Stainless Steel |
| Finish | Satin / Polished Finish |
| Reusable | Yes |
| Sterilization | Autoclave Sterilizable |
| Corrosion Resistant | Yes |
| Latex Free | Yes |
| Clinical Applications | Spinal Exploration, Neurosurgery, Tissue Palpation, Anatomical Identification, Microsurgery |
FAQs
1. What is the Neurosurgery Surgical Spinal Probe 2mm Ball, 7mm Tip, Angled 90° used for?
This instrument is used to explore spinal anatomy, identify tissue planes, palpate neural structures, and assist surgeons during spinal and neurosurgical procedures.
2. What is the advantage of the 2mm ball tip?
The rounded 2mm ball tip provides atraumatic tissue contact, reducing the likelihood of accidental puncture while allowing precise exploration of delicate anatomical structures.
3. Why is the probe designed with a 90-degree angle?
The 90-degree angled shaft improves access to deep or restricted operative areas and enhances visibility during spinal and microsurgical procedures.
4. Is this spinal probe reusable?
Yes. The instrument is manufactured from high-quality surgical-grade stainless steel and is designed for repeated use following standard autoclave sterilization.
5. Which medical specialties commonly use this spinal probe?
It is commonly used by neurosurgeons, orthopedic spine surgeons, spinal specialists, and microsurgical teams performing procedures such as laminectomy, discectomy, spinal decompression, and spinal fusion.

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