Medical Simulation

Simulated Respiration Pump RT-BR001

A respiratory drive system that connects to high-fidelity organ models, replicating visceral motion under physiological breathing conditions.

10-30 /minRespiratory rate
200-800 mLTidal volume
1:2 · 1:1 · 1:3I:E ratios
Waveform importSine & sawtoothCustomizable UIOrgan model drive

Overview

The Simulated Respiration Pump RT-BR001 is primarily designed to connect with high-fidelity upper-body human organ models. By adjusting parameters such as respiratory rate and tidal volume, it drives periodic deformation and displacement of internal organs, realistically replicating visceral dynamics under physiological breathing conditions.

The system supports the import of custom waveforms (e.g., sine, sawtooth) to control lung deformation, making it suitable for dynamic data simulation and comparative analysis in research applications — for example, studying how breathing motion affects image-guided puncture accuracy.

Product Highlights

  • Waveform input support. Multiple respiratory control waveforms, including sine and sawtooth patterns, can be imported and applied.
  • Realistic dynamic simulation. Replicates periodic organ deformation and displacement during physiological breathing.
  • Flexible parameter configuration. Waveform parameters are user-configurable for precise respiratory drive control.
  • Customizable UI. The interface can be tailored to functional requirements and branding needs.

Applications

  • Dynamic puncture training. Paired with the lung nodule surgery model RT-BR001, the pump reproduces visceral motion so trainees practice image-guided puncture under natural breathing conditions.
  • Ventilation-related research. Controlled, repeatable respiratory motion for dynamic data simulation and comparative analysis.
  • Simulation system integration. As part of Zlinemed’s medical simulation platform, the pump can be configured into complete training systems alongside the cardiac pulsatile pump.

Integration and Customization

The RT-BR001 connects to compatible organ models through its pneumatic drive interface. Custom control waveforms can be imported for specific research protocols, and the user interface can be tailored to functional and branding requirements. When requesting a quote, describe the organ models you plan to drive and your target respiratory parameters.

Frequently Asked Questions

What does the RT-BR001 respiration pump connect to?

It is designed to connect with high-fidelity upper-body human organ models, such as the RT-BR001 lung nodule surgery model, driving periodic deformation and displacement of internal organs.

Which respiratory waveforms are supported?

The system supports the import of custom control waveforms, including sine and sawtooth patterns, with user-configurable parameters for precise respiratory drive control.

What can be adjusted during simulation?

Respiratory rate (10-30 breaths/min), tidal volume (200-800 mL), and I:E ratio (1:2, 1:1, 1:3) are adjustable, producing minute ventilation of 4-8.5 L/min.

Applications

Dynamic Puncture TrainingReproduce visceral motion for image-guided puncture practice under breathing.
Ventilation ResearchControlled, repeatable respiratory motion for comparative studies.
Organ Model DriveDrive periodic deformation of compatible upper-body organ models.
System IntegrationConfigure into complete platforms alongside the cardiac pulsatile pump.

Put breathing motion into your simulation

Tell us which organ models the RT-BR001 should drive and your target respiratory parameters. We will confirm compatibility and discuss waveform or UI customization.

Request a Quote