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Insect Respirometry - CO2 O2 in 1-8 Channel Modular systems

Insect Respirometry Flow-Through System, Systematic Diagram of Gas Flow
Insect Respirometry Flow-Through System - Systematic Diagram of Gas Flow (simplified)

The study of insect respiration rates is essential for elucidating the metabolic processes that are central to animal functioning and sustainable protein synthesis. Metabolic rate is often measured as a phenotypical trait in evolutionary genetics, and many facets of insect physiology, behaviour, and ecology, because it impacts organismal fitness, is repeatable and heritable, and is responsive to numerous environmental variables. Scientific exploration in this area is providing invaluable insights for refining pest and mosquito control strategies and improving ecological models. Within protein farms, the effective conversion of organic substrates into protein not only minimises environmental impact, but also positions insect farming as an environmentally friendly protein source. By insect respirometry, the carbon footprint of insect rearing conditions can be determined and subsequently optimised. Designing setups to suit the different respiratory patterns of insect (and other Arthropod) species requires careful customisation; the modularity of the supplied Low Range Insect Q-RP1LP Respirometer allows this to be achieved.

Q-RP1LP Low Range Insect Respirometry

Q-RP1LP Insect Respiration System
Q-RP1LP Insect Respirometry System

Q-RP1LP Insect Respiration System, designed to measure the metabolic rate of insects and other small animals in an open flow or stop flow gas exchange system. Includes both a CO2 analyser and an O2 sensor to calculate Respiratory Quotients (RQ). For very small changes in pO2, such as during the respiration of insects, the system should be used in a stop-flow configuration. In the latter, the flow is stopped for a period of time to allow CO2 to accumulate and O2 to decrease. When the flow path is subsequently opened, the gas is passed through both sensors for measurement. The opening and closing of the flow-through chamber with the Insect (or another arthropod) is achieved automatically according to periods of time specified by the user in the software. Automatic calculations of insect VO2, VCO2 and RQ are displayed in the dedicated software.

Insect Respiration Chamber, RP1LP
Q-G115, Flow-through Insect Chamber

The two respiration chambers included are suitable for a wide range of insects or similar arthropods, and other small animals such as lizards etc.; custom chambers can be supplied for special requirements. The ability to scale the equipment to suit both small and large arthropods without compromising on accuracy is therefore a major advantage of the Q-RP1LP package. Furthermore, respirometry studies on insects often suffer from small sample sizes and rely on low throughput approaches to measure metabolic rate, making it difficult to answer ecological and evolutionary questions due to lack of power, failure to capture true biological variation and confounding variables such as time introduced. The fully compatible, optional gas switching system Q-GSS-SF thus allows up to 7 insects to be measured in parallel (the 8th chamber acts as a control), significantly increasing the number of insects that can be handled in parallel.

Insect Respirometry Software Suit

The LoggerPro software suite is included, dedicated experimental files for insect respirometry facilitate analysing the gathered CO2 and O2 data (per channel). Customized systems for use with other data acquisition interfaces and software remain available. 

Insect Respirometer Q-RP1LP - Features

  • CO2 and O2 sensors, selected for low range insect respirometry
  • Automatic calculation of VCO2, VO2 and RQ with included software
  • Both open and stop-flow measurements
  • Housed in a robust casing for save transport and easy set-up
  • Modular, components interchangeable with other Q-Box research packages

Option:

  • Easily expandable to a 4- or 8-chamber multiplex system
  • Combine with the DOX Q-S104 Analyser for even higher O2 and RQ resolutions
  • Field use, with optional battery pack
  • Custom measurement chambers available
Components Insect Respirometry Q-RP1LP System OPEN

Product No. Description
Q-RP1LP System Complete Low Range Respiration System RP1LP  for CO2 and O2 measurements on Insects. The system contains the following components:
Q-S151 CO2 Analyzer 0-2000 ppm
Q-G117 Variable volume Flow-through Insect Chamber (1.9 cm ID, max. length 4 or 10 cm)
Q-G115 Flow-through Insect Chamber (3.8 cm ID, 20 cm long)
Q-S102 O2 Sensor
Q-P103 Gas Pump, 1 L min-1
Q-G266 Flow Monitor, 1 L min-1
Q-S132 Temperature Probe, stainless steel
Q-C200 Digital Control Unit
Q-C610 2x LabQuest Mini data interfaces (6 analog, 4 digital ports), integrated
Q-A380 Two-Solenoid Assembly, directs the gas flow from reference to analyzed channel(s)
Q-S122 Large Gas Sample Bags (2x 30L)
Q-C901 Logger Pro Software
Q-C404 Experimental Setup Files, for Open flow and Stop flow measurements and calculations for Insect Respirometry
Q-RP1LP-Manual Manual
Q-RP1LP-Case Rugged weather-proof case, housing all analyzers and sensors
Q-RP1LP-Kit Q-Box Accessory Kit (tubing, connectors, filters, wrench, screwdriver)
Q-RP1LP-Power Individual power supplies for stand-alone use of the analyzers, sensor, pumps etc.
   
Optional  
Q-A249-3 Li-Ion 3 Battery Pack, for field use
Q-GSS-SF Gas Switching System, stop-flow, 4 or 8 channels (req. 3 L min-1 pump)
Q-P651 Gas Pump, 3 L min-1, required when using the gas switching system Q-GSS
VSI-Chambers Custom Insect Respiration Chambers; build to specifications
References Insect Q-RP1LP System OPEN

  • Chen Z et al. (2014) Genetic mosaic analysis of deleterious mitochondrial DNA mutation in Drosophila reveals novel aspects of mitochondrial regulation and function. Molecular Biology of the Cell 26: 674-684. DOI: 10.1091/mbc.E14-11-1513
  • Filho BLC et al. (2021) Impact of warmer fluctuating temperatures on the Jamaican field cricket, Gryllus assimilis (Fabricius, 1775) (Orthoptera: Gryllidae). Journal of Thermal Biology, 103145. DOI: 10.1016/j.jtherbio.2021.103145
  • Han W et al. (2017) Acute toxicity and sublethal effects of myclobutanil on respiration, flight and detoxification enzymes in Apis cerana cerana. Pesticide Biochemistry and Physiology 147:133-138. DOI:10.1016/j.pestbp.2017.11.001
  • Kierdof K et al. (2020) Muscle function and homeostasis require cytokine inhibition of AKT activity in Drosophila. eLife, 9: e51595. DOI: 10.7554/eLife.51595
  • Luo K et al. (2018) High Voltage Electrostatic field-induced Oxidative stress: characterization of the physiological effects ins Sitobion avenae (Hemiptera: Aphiodidae) across multiple generations. Bioelectromagnetics. DOI: 10.1002/bem.22157
  • Villa-Bedoya S et al.(2020) Heat shock proteins and antioxidants as mechanisms of response to ivermectin in the dung beetle Euoniticellus intermedius. Chemosphere. DOI: 10.1016/j.chemosphere.2020.128707
  • Vincent CM, Dionnea MS (2021) Disparate regulation of IMD signaling drives sex differences in infection pathology in Drosophila melanogaster. PNAS 118 32. DOI: 10.1073/pnas.2026554118
Open flow calculations, Insect Respirometry Software
Stop flow calculations, Insect Respirometry Software
Q-G117 Chamber, variable in size
Get Quote

Contact us to receive the Q-RP1LP Manual for free, and to discuss details.



Stop Flow or Constant Volume Insect Respirometry

To study the smallest, least active insects, the recommended method is to briefly enclose the insect in the measurement chamber. The integrated oxygen and CO2 fluxes are then measured by the Q-RP1LP as the chamber is purged with fresh air. This method, known as constant volume or stop-flow respirometry, can be used to assess metabolic processes in various small organisms, including small groups of tiny Drosophila fruit flies. The process of sealing and refreshing up to 7 chambers is automated by the LoggerPro control software (or manually if required).


Insect Respirometry with other Gas Analyzers

Q-S157PF with insect chamber
Q-S157PF with insect chamber

Insect respirometry is also possible using other gas analyser systems, here the Q-S157-PF is used with an insect respiration chamber and a solenoid valve. The Q-S104 Differential Oxygen Analyser is a high resolution O2 analyser for detecting particularly small changes in O2 levels. Contact us to discuss individual technical solutions for your insect metabolism studies.


Aquatic Insect Respirometry Q-AQUA-Mini

For aquatic insects, larvae etc. the Q-AQUA-Mini Package provides reliable respirometry data, using an optical oxygen probe. 


Cages for Insect Research

Medium and table size insect cages can be used to house your insect prior to respiration measurements - custom-builds.


Insect Chilling Tables

To carefully immobilise insects for research, consider the range of insect chilling tables - from low cost to large cooling area.


Animal Respirometry Q-RP2LP

For larger, more active animals, the Q-RP2LP - High Range Animal Respiration Package provides reliable respirometry data with a range of up to 100,000 ppm CO2.



Overview - Insect Rearing & Research
Overview - (Larger) Animal Respirometry
Overview - Air Sampl. / Gas Analyser

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