Johns-Hopkins Bulldog Clamp – STR & CVD, 3.8 cm to 9 cm | Precision Surgical Instrument 1:1 Ratio

Article No: STG-04-346 Categories: , ,
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Features and Description:

The Johns-Hopkins Bulldog Clamp is a high-precision surgical instrument designed for secure, controlled clamping of blood vessels and delicate tissues during medical procedures. Available in STR (straight) and CVD (curved) stainless steel configurations and a wide range of sizes from 3.8 cm (1 1/2″) to 9 cm (3 1/2″), these clamps provide exceptional versatility for various surgical applications.

Manufactured from premium surgical-grade stainless steel, each clamp offers superior strength, corrosion resistance, and long-term durability. The 1:1 ratio design ensures uniform pressure distribution across the jaws, allowing surgeons to occlude vessels safely while minimizing tissue trauma.

Ideal for vascular surgery, microsurgery, general surgery, and laboratory procedures, the Johns-Hopkins Bulldog Clamp delivers precise control, stability, and reliability in critical operating environments.

Available Sizes & Configurations:

Straight (STR) and Curved (CVD) options in:

  • 3.8 cm (1 1/2″)
  • 4.8 cm (2″)
  • 5.7 cm (2 1/4″)
  • 6.3 cm (2 1/2″)
  • 7 cm (2 3/4″)
  • 7.5 cm (3″)
  • 9 cm (3 1/2″)

Key Features:

  • Material: High-quality surgical stainless steel
  • Design Options: Straight (STR) and Curved (CVD)
  • Ratio: 1:1 for balanced, controlled clamping pressure
  • Size Range: 3.8 cm to 9 cm for diverse surgical needs
  • Function: Secure vessel occlusion with minimal tissue damage
  • Durability: Corrosion-resistant and reusable after sterilization
  • Professional Use: Suitable for hospitals, surgical centers, and laboratories

Applications:

  • Vascular and cardiovascular procedures
  • Microsurgery
  • General surgical operations
  • Tissue and vessel clamping
  • Research and laboratory use

The Johns-Hopkins Bulldog Clamp is an essential instrument for surgeons and healthcare professionals who require precision, reliability, and safety when performing delicate clamping procedures.