Disposable Breathing Circuit Extendable

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A Disposable Breathing Circuit Extendable is a single-use, extended-length circuit designed for remote patient positioning during MRI, interventional radiology, and complex procedures where the anesthesia machine must be placed away from the patient. Modular extension capability allows customizable length, while single-use design ensures infection control. Essential for MRI suites, interventional radiology, and long-distance patient transport.
Description

Disposable Breathing Circuit Extendable

PRIMARY CLINICAL & DIAGNOSTIC USES

1. Extended Reach for Remote Patient Positioning
  • Primary Use: Provides a single-use, extendable breathing circuit that allows for increased distance between the anesthesia machine and the patient. This is essential for procedures requiring remote patient positioning, such as MRI suites, interventional radiology, or procedures where the anesthesia machine must be placed away from the patient.
  • How it helps: For the anesthesiologist and operating room team, the extendable circuit provides the flexibility to position the anesthesia machine at a safe or convenient distance while maintaining reliable gas delivery to the patient. For the patient, this means anesthesia can be safely administered even when the patient is located in areas where space is limited or where equipment must be kept at a distance.
2. MRI Suite Compatibility
  • Primary Use: Designed for use in MRI suites where standard anesthesia circuits are insufficient due to distance requirements or magnetic field safety. Extendable circuits allow the anesthesia machine to be placed outside the MRI room while the patient remains inside the scanning area.
  • How it helps: For the anesthesiologist and MRI technologist, the extendable circuit enables safe administration of anesthesia during MRI procedures—keeping the anesthesia machine outside the magnetic field while maintaining continuous gas delivery. For the patient undergoing MRI under anesthesia, this means they can receive necessary imaging without interruption of respiratory support.
3. Interventional Radiology and Remote Procedures
  • Primary Use: Used in interventional radiology suites and other procedural areas where the anesthesia machine must be positioned away from the sterile field or radiation source, providing extended reach without compromising gas delivery.
  • How it helps: For the anesthesia provider and interventional team, the extendable circuit allows the anesthesia machine to be placed in a safe location away from radiation or sterile fields while maintaining continuous ventilation. For the patient undergoing interventional procedures, this ensures uninterrupted anesthesia support without compromising the procedural environment.
4. Long-Distance Transport Ventilation
  • Primary Use: Provides extended length for transporting ventilated patients over longer distances within the facility, allowing the ventilator to be positioned conveniently while maintaining patient connection.
  • How it helps: For the transport team and respiratory therapist, the extendable circuit provides the flexibility needed for complex transports—allowing the ventilator to be placed on a cart or at the bedside while the patient is moved. For the ventilated patient being transported, this ensures continuous respiratory support without interruption.
5. Modular Extension Capability
  • Primary Use: Designed with modular connections that allow additional extension segments to be added, providing customizable length based on the specific clinical requirements.
  • How it helps: For the clinical team, modular extension allows the circuit length to be tailored to the specific procedure or patient location—reducing the need for multiple circuit types. For the patient, this ensures that the circuit length is appropriate for their procedure without excess tubing that could pose a tripping or entanglement hazard.

SECONDARY & SUPPORTIVE USES

1. Remote Anesthesia Workstations: Allows anesthesia machines to be positioned away from the patient in challenging clinical spaces.
2. Isolation Room Ventilation: Provides extended reach for ventilating patients in isolation rooms where equipment must be kept outside.
3. C-arm and Fluoroscopy Procedures: Enables anesthesia machine placement away from imaging equipment during fluoroscopic procedures.
4. Bariatric Patient Transport: Provides extended length for transporting larger patients where standard circuits may be too short.
5. Pediatric Anesthesia: Available in pediatric sizes for children requiring extended circuits.
6. Disaster Response and Field Medicine: Used in temporary medical facilities where equipment placement is constrained by space.
KEY PRODUCT FEATURES

1. BASIC IDENTIFICATION ATTRIBUTES

  • Device Type: A single-use, extendable breathing circuit designed for remote patient positioning and extended reach.
  • Designation: Disposable Extendable Breathing Circuit, Extension Circuit, Extended Length Circuit, Remote Anesthesia Circuit.
  • Key Components:
    • Extended Tubing: Long-length tubing (3-10 meters) for remote positioning.
    • Modular Connectors: Standard 22 mm connectors for adding extension segments.
    • Y-Piece: Connector joining inspiratory and expiratory limbs to patient.
    • Machine Connectors: Standard 22 mm connectors for anesthesia machines.
    • Reservoir Bag: Optional integrated bag for manual ventilation.
    • Filter Port: Optional port for bacterial/viral filter.
    • Water Trap: Optional integrated water trap for condensation management.

2. TECHNICAL & PERFORMANCE PROPERTIES

  • Material: Medical-grade PVC; flexible, lightweight.
  • Tubing Diameter: 22 mm internal diameter; 15 mm connector for patient end.
  • Length: 3-10 meters depending on configuration; modular extensions available.
  • Extension Capability: Modular design allows additional segments to be added.
  • Reservoir Bag: 1-3 L sizes available.
  • Sterility: Ethylene oxide or gamma irradiation sterilized.
  • Latex-Free: Manufactured without natural rubber latex.

3. PHYSICAL & OPERATIONAL PROPERTIES

  • Construction: Flexible, lightweight tubing for ease of handling.
  • Connectors: Standard 22 mm and 15 mm ISO connectors.
  • Packaging: Sterile, single-use; individually packaged.
  • Portability: Lightweight for easy transport and setup.

4. SAFETY & COMPLIANCE ATTRIBUTES

  • Regulatory Status: Class II medical device regulated by FDA.
  • Biocompatibility: Materials safe for patient contact.
  • Latex-Free: Manufactured without natural rubber latex.
  • DEHP-Free: Available in DEHP-free options.
  • Flow Resistance: Designed to minimize resistance at extended lengths.

5. STORAGE & HANDLING ATTRIBUTES

  • Storage: Store in a clean, dry location at room temperature; protect from heat.
  • Sterility Maintenance: Do not use it if the package is opened, damaged, or wet.
  • Expiration: Check expiration date before use; do not use after expiration.
  • Single-Use Only: Intended for single patient use only; do not resterilize or reuse.

6. LABORATORY & CLINICAL APPLICATIONS

  • Primary Application: Extended reach anesthesia delivery for MRI, interventional radiology, and remote procedures.
  • Clinical Role: Essential equipment for MRI suites, interventional radiology, and complex patient transports.
SAFETY HANDLING PRECAUTIONS

1. SAFETY PRECAUTIONS

  • Circuit Integrity: Inspect packaging for damage before use; ensure connections are secure.
  • Length Management: Secure excess tubing to prevent entanglement or tripping hazards.
  • Flow Resistance: Monitor for adequate gas flow; extended length may increase resistance.
  • Condensation: Monitor for condensation in long circuits; use water traps if needed.
  • Positioning: Route circuit to avoid tension on patient airway.
  • Single-Use: Do not reuse or resterilize; dispose after single use.

2. FIRST AID MEASURES

  • Circuit Leak: If leak is detected, replace circuit immediately.
  • Obstruction: If circuit is obstructed, disconnect patient; ventilate manually; replace circuit.
  • Kinking: If kinking occurs, reposition circuit; replace if patency cannot be restored.

3. FIRE FIGHTING MEASURES

  • Flammability: PVC is combustible; an oxygen-enriched environment increases fire risk.
  • Extinguishing Media: For fire, disconnect oxygen source; use appropriate extinguisher.