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723073
Modified Jackson Rees (Non-Rebreather) and 1/2 Liter Bag
723075
Avian/Research MJR and 1/4 Liter Bag
723074
Add on Non-Rebreather Adapter
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The Modified Jackson Rees (MJR) is a new design for non-rebreathing. Unlike the old scavenging units, this system incorporates a relief valve on the main unit which allows the use of any size bag. This system will adapt to all anesthesia machines and does not require a Bain Block.
 
• Unique circuit designed specifically for rodent anesthesia
• Best suited for use with Multi-station Research Anesthesia System, see page F19
• Will work with any non-rebreathing anesthesia machine

Developed in conjunction with leading research facilities, the Rodent circuit is the most effective, user-friendly, mask for rodents. Available with 3 different size diaphragms, the mask easily fits most rodents. With the use of a C-Pram circuit shown below, the mask is designed to deliver and evacuate the gas through one tube. Traditionally, the open mask system has caused problems because of the contamination of waste gas to the staff and the patient rebreathing CO2. These problems are avoided with the Rodent circuit and mask design. When combined with in-house suction or the Lab Animal Evacuation System or F/Air canister, see page F19, there is minimal risk of untoward anesthetic agent exposure for the researcher. Inlet tubing: 6.25 mm (0.25 in) ID, silicone tubing. Outlet from rodent circuit is a 22 mm (0.866 in) respiratory fitting. Respiratory Adapters are available to connect the rodent circuit outlet to tubing of various sizes from 6 to 15 mm ID, see page F22.
The Universal F-circuit is a rebreathing circuit that can be used on small animals up to 200 lbs. Rebreathing circuits allow the animal to rebreathe exhaled and excess vaporized anesthetic agent which have circulated through a CO2 absorber system thus reducing the amount of anesthetic agent used. The unique single limb circuit 1) replaces the need for a traditional ***** and pediatric circuit, 2) reduces the clutter around the animal and 3) takes the weight off the end of the endotracheal tube. The tube within a tube design allows heat and moisture to be retained in the circuit, which helps to maintain body temperature and recover the patient more quickly.

 
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