Drager Apollo Anesthesia Machine
In the dynamic landscape of healthcare, the challenges anesthesia providers face are manifold. From heightened inter-departmental integrations to stringent cost management mandates, every aspect of patient care demands precision and efficiency. Enter the Drager Apollo® – engineered to serve as an essential ally in streamlining anesthesia workflows and optimizing costs.
In the dynamic landscape of healthcare, the challenges anesthesia providers face are manifold. From heightened inter-departmental integrations to stringent cost management mandates, every aspect of patient care demands precision and efficiency. Enter the Drager Apollo® - engineered to serve as an essential ally in streamlining anesthesia workflows and optimizing costs.
Simplified Workflows with Apollo®:
- Automated Startup: A quick and automated startup process reduces staff workload, provides clear device status updates, and offers comprehensive troubleshooting assistance.
- User-centric Design: With feedback from leading anesthesiologists and CRNAs, Apollo® boasts an ergonomic design that keeps everything within easy reach, whether you're seated or standing. Distinctive features include:
- Flexible breathing bag arm design.
- Expansive swivel writing surface.
- Conveniently located auxiliary O2 and pressure gauge.
- Ample storage with two deep drawers, one of which is lockable.
- Integrated footrest paired with a centrally operated brake.
- Task lighting with adjustable brightness.
- A dedicated power outlet for the desflurane vaporizer.
- Vaporizer mount with auto exclusion interlock system.
Cost-Efficiency with Low-flow Wizard: Apollo® is adept at supporting low and minimal flow settings, enabling consistent low-flow anesthesia techniques. This can significantly trim the costs associated with inhalational anesthetic agents, potentially resulting in savings of up to 50%.
Ventilation Mastery: Unlike traditional bellows designs, Apollo® utilizes the E-Vent plus servo-controlled high-speed piston ventilator, offering ICU-grade performance without the need for a drive gas. Its swift response and digital accuracy amplify the benefits of modern ventilation modes.
State-of-the-art Monitoring Systems: Equipped with Drager's Infinity® Omega Solution and Innovian Anesthesia information management system, Apollo® ensures advanced monitoring and efficient data management. Furthermore, the Pick and Go® transport solution promises seamless monitoring during patient transport and optimizes data continuity.
Why Piston Over Bellows? Switching gears from traditional bellows-based anesthesia ventilators, Drager envisioned the future with the piston design. Offering precise control, quick response times, and greater reliability, the piston design stands as the bedrock of contemporary anesthesia delivery.
Drager Apollo® is not just a piece of equipment – it's a holistic solution, tailored to meet the intricate demands of modern anesthesia care. Its confluence of user-friendly design, advanced technology, and cost-efficiency makes it indispensable in a high-pressure healthcare environment.
Specifications:
General:
- Weight (without vaporizers and gas cylinders): 365 lbs. (165 kg)
- Dimensions (H × W × D): 59 × 33.5 × 31.5 inches (150 × 85 × 80 cm)
- Power Consumption: 200 W, typically
- Operating Voltage: 100 to 127 VAC (- 15 % + 10 %) 45 – 65 Hz
- Integrated Power Backup: Minimum 30 min; up to 90 min depending on ventilation parameters.
Ventilator E-Vent® Plus:
- Type: Electrically driven, electronically controlled, fresh gas decoupled.
- Ventilation Modes: Manual, spontaneous, Volume Mode, Pressure Mode. Optional/Synchronization: Pressure Support (PS), Volume Mode Autoflow.
- Pressure Limitation (PMAX in Volume Mode): (PEEP + 10) up to 70 cmH2O
- Pressure Limitation (PINSP in Pressure Mode): (PEEP + 5) up to 70 cmH2O
- Trigger Sensitivity: 0.3 – 15 L/min
- Tidal Volume (VT, compliance compensated): 20 – 1400 mL, 5 – 1400 mL with advanced ventilation option.
- Breathing Frequency: 3 – 100 bpm
- Inspiration Time (TINSP): 0.2 – 6.7 s
- Inspiration/Expiration Time Ratio: Max. 5:1
- Plateau Time: 0 – 60% of TINSP
- Inspiratory Flow (in Pressure Mode): Max. 150 L/min
- PEEP Settings:
- In Volume Mode: 0 – 20 cmH2O (max. PMAX – 10 cmH2O)
- In Pressure Mode: 0 – 20 cmH2O (max. Pinsp – 5 cmH2O)
- Fresh-gas Flow: 0 – 10 L/min for each gas (O2, AIR, N2O)
- TSLOPE: 0 – 2 s in Pressure Mode and Pressure Support
- System Leakage: < 150 mL/min at 30 cmH2O (after automatic leak test)
- O2 Flow Control: At least 21 Vol.-% with N2O as carrier gas
- O2 Flush Rate: > 35 L/min
Monitoring:
- Parameters: O2, N2O, CO2 concentrations, anesthetic agents (Halothane, Enflurane, Isoflurane, Sevoflurane, Desflurane), MV, VT, breathing frequency, pressures (peak, plateau, mean, PEEP), patient compliance CPAT. Option: Functional O2 saturation (SpO2).
- Waveform Parameters: CO2, O2, anesthetic agents concentration, airway pressure, inspiratory and expiratory flow. Option: Plethysmogram.
- Displays: Bar graph of volumeter and tidal volume, virtual flow tubes for O2, AIR, N2O, graphical trends, and numerical lists.
- Alarm System: AutoSet for alarm limits.
Serial Interface:
- Ports: 2 × RS 232
- Supported Protocols: Medibus, Medibus X
Absorber:
- Volume (reusable canister): 1.5 L
Tabletop Materials:
- Base Material: Reinforced fiber plastics, ABS polymer, stainless steel.
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