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1. Material:
- The catheter is made of reinforced PVC (Polyvinyl Chloride). PVC
is a common material used in medical devices due to its
flexibility, biocompatibility, and ease of sterilization. The term
"reinforced" suggests that the catheter has additional structural
support to enhance its durability.
2. Anesthesia Catheter:
- The primary purpose of the catheter is to assist in the delivery
of anesthesia during medical procedures. Anesthesia catheters are
inserted into the patient's airway to administer anesthetic gases
or medications.
3. Watertrap:
- The inclusion of a water trap in the catheter is a feature
designed to capture and prevent the passage of liquid, such as
condensation or secretions, from entering the breathing circuit.
This helps maintain the integrity of the anesthesia delivery
system.
4. For Adult and Pediatric Use:
- The catheter is designed to be suitable for both adult and
pediatric patients. This adaptability makes it versatile for use
across different age groups, providing flexibility for healthcare
providers in various clinical settings.
5. Size and Dimensions:
- The catheter likely comes in different sizes or lengths to
accommodate variations in patient anatomy. Proper sizing ensures
optimal performance and comfort during anesthesia administration.
6. Versatility:
- The catheter's design suggests versatility in its application,
catering to the needs of both adult and pediatric patients. This
adaptability is important in medical settings where patients of
different ages may undergo anesthesia.
7. Quality and Safety Standards:
- The catheter should comply with relevant quality and safety
standards for medical devices. Adherence to standards ensures that
the product meets regulatory requirements and is safe for clinical
use.
8. Instructions for Use:
- Included with the catheter should be clear instructions for use,
providing healthcare professionals with guidance on proper
insertion, maintenance, and disposal procedures.
Description | Anesthesia Breathing Circuit |
Material | PVC |
Size | Adult, Pediatric |
Tube length | 1.5m,1.8m |
Tube Type | Commen type, Expandable type, Y connector |
Packing | 1pc/blister bag |
What are breathing circuits used for?
Breathing circuit classification
The function of any breathing circuit is to deliver oxygen and
anesthetic gases, and eliminate carbon dioxide. Carbon dioxide may
be eliminated by either washout with adequate fresh gas flow (FGF),
or by soda lime absorption.
What are the different types of breathing circuits?
The Mapleson systems are the breathing circuits, also known as flow
controlled breathing systems or carbon dioxide washout circuits
because they depend upon fresh gas flow for washing out CO2.
Mapleson systems are classified into five basic types as Mapleson
A, B, C, D, E. Later Mapleson F was also added.