Disposable Radio Frequency Plasma Probe Spade Electrode Gynecology Endometrial Polyp Fibroid
Product Introduction
Disposable Radio Frequency Plasma Probe With Spade Electrode Is Designed For Gynecology Minimally Invasive Procedures. The Spade Shape Knife Head Is Suitable For Tissue Dissection, Lesion Removal And Adhesion Separation In Intrauterine Surgery. It Provides Precise Cutting, Tissue Ablation And Reliable Hemostasis During Surgical Procedures.
The Plasma Electrode Uses Advanced Radio Frequency Plasma Technology To Achieve Low Temperature Tissue Dissection. It Minimizes Thermal Damage To Surrounding Tissue And Improves Surgical Safety. The Disposable Sterile Design Helps Prevent Cross Infection And Ensures Stable Clinical Performance.
The Spade Tip Structure Allows Efficient Tissue Removal And Smooth Dissection. It Is Suitable For Multiple Gynecological Lesions And Intrauterine Procedures.
Characteristics
Spade Electrode Tip Design
Suitable For Gynecology Intrauterine Surgery
Cutting Resection And Hemostasis Functions
Low Temperature Plasma Technology
Disposable Sterile Single Use
Efficient Tissue Dissection Performance
Technology
The Radio Frequency Plasma Probe Generates A Controlled Low Temperature Plasma Field Around The Spade Electrode. The Plasma Energy Breaks Molecular Bonds Within Tissue And Achieves Controlled Resection And Coagulation. Compared With Traditional Electrosurgical Devices, Plasma Technology Reduces Thermal Spread And Protects Surrounding Tissue.
The Spade Structure Allows Smooth Tissue Separation And Uniform Cutting.
Working Principle
Radio Frequency Energy Is Delivered Through The Spade Electrode Tip. When Activated, A Plasma Layer Forms Around The Electrode. The Plasma Dissolves Target Tissue And Coagulates Blood Vessels Simultaneously. This Enables Efficient Lesion Removal And Reduced Bleeding.
Application
Endometrial Polyp Resection Intrauterine Adhesion Separation Uterine Fibroid Removal Submucosal Fibroid Resection Retained Placenta Removal Early Endometrial Cancer Treatment Vaginal Disease Surgery Gynecology Minimally Invasive Procedures
Technical Parameters
Parameter
Specification
Product Type
Spade Plasma Electrode
Function
Resection Ablation Hemostasis
Technology
Radio Frequency Plasma
Sterilization
EO Sterilized
Usage
Single Use
Application
Gynecology Surgery
Tip Type
Spade
Compatibility
RF Plasma Generator
Advantages
Spade Tip For Efficient Tissue Dissection Precise Lesion Removal Performance Effective Hemostasis Control Low Temperature Plasma Technology Reduced Intraoperative Bleeding Disposable Sterile Safety Design
Service
OEM Customization Available Different Electrode Sizes Available Custom Packaging Support Technical Documentation Provided Fast Production And Delivery Professional After Sales Service
FAQ
Q: What Procedures Is This Electrode Used For A: It Is Used For Polyp Adhesion Fibroid And Placenta Removal
Q: Is This Product Disposable A: Yes It Is EO Sterilized Single Use Product
Q: Which Department Is It Suitable For A: It Is Suitable For Gynecology Minimally Invasive Surgery
Disposable Radio Frequency Plasma Probe Spade Electrode Gynecology Endometrial Polyp Fibroid
Product Introduction
Disposable Radio Frequency Plasma Probe With Spade Electrode Is Designed For Gynecology Minimally Invasive Procedures. The Spade Shape Knife Head Is Suitable For Tissue Dissection, Lesion Removal And Adhesion Separation In Intrauterine Surgery. It Provides Precise Cutting, Tissue Ablation And Reliable Hemostasis During Surgical Procedures.
The Plasma Electrode Uses Advanced Radio Frequency Plasma Technology To Achieve Low Temperature Tissue Dissection. It Minimizes Thermal Damage To Surrounding Tissue And Improves Surgical Safety. The Disposable Sterile Design Helps Prevent Cross Infection And Ensures Stable Clinical Performance.
The Spade Tip Structure Allows Efficient Tissue Removal And Smooth Dissection. It Is Suitable For Multiple Gynecological Lesions And Intrauterine Procedures.
Characteristics
Spade Electrode Tip Design
Suitable For Gynecology Intrauterine Surgery
Cutting Resection And Hemostasis Functions
Low Temperature Plasma Technology
Disposable Sterile Single Use
Efficient Tissue Dissection Performance
Technology
The Radio Frequency Plasma Probe Generates A Controlled Low Temperature Plasma Field Around The Spade Electrode. The Plasma Energy Breaks Molecular Bonds Within Tissue And Achieves Controlled Resection And Coagulation. Compared With Traditional Electrosurgical Devices, Plasma Technology Reduces Thermal Spread And Protects Surrounding Tissue.
The Spade Structure Allows Smooth Tissue Separation And Uniform Cutting.
Working Principle
Radio Frequency Energy Is Delivered Through The Spade Electrode Tip. When Activated, A Plasma Layer Forms Around The Electrode. The Plasma Dissolves Target Tissue And Coagulates Blood Vessels Simultaneously. This Enables Efficient Lesion Removal And Reduced Bleeding.
Application
Endometrial Polyp Resection Intrauterine Adhesion Separation Uterine Fibroid Removal Submucosal Fibroid Resection Retained Placenta Removal Early Endometrial Cancer Treatment Vaginal Disease Surgery Gynecology Minimally Invasive Procedures
Technical Parameters
Parameter
Specification
Product Type
Spade Plasma Electrode
Function
Resection Ablation Hemostasis
Technology
Radio Frequency Plasma
Sterilization
EO Sterilized
Usage
Single Use
Application
Gynecology Surgery
Tip Type
Spade
Compatibility
RF Plasma Generator
Advantages
Spade Tip For Efficient Tissue Dissection Precise Lesion Removal Performance Effective Hemostasis Control Low Temperature Plasma Technology Reduced Intraoperative Bleeding Disposable Sterile Safety Design
Service
OEM Customization Available Different Electrode Sizes Available Custom Packaging Support Technical Documentation Provided Fast Production And Delivery Professional After Sales Service
FAQ
Q: What Procedures Is This Electrode Used For A: It Is Used For Polyp Adhesion Fibroid And Placenta Removal
Q: Is This Product Disposable A: Yes It Is EO Sterilized Single Use Product
Q: Which Department Is It Suitable For A: It Is Suitable For Gynecology Minimally Invasive Surgery