Product info - China Gate Company
 
Category
Physiology Teaching Kit
P-V loop
Blood Pressure and ECG
Pain and Inflammation
Body Composition
Zebrafish
Isolated Heart Perfusion
Isolated Tissue Perfusion
Optogenetics
Non-invasive Blood Flow Velocity Measurement
Small Animal Surgical Monitoring
Tissue Organ Bath System
Data Recorder and Amplifier
Wire Myograph Systems
Transducers/Electrodes/accessories
Muscle Strip Myograph System
Culture Myograph Systems
Pressure Myograph System
Hypoxia Workstation
Colony Counting
Tissue Vitality Monitoring
Motory Coordination, Grip Strength, Activity
Animal Metabolic MeasureMent
MISCELLANEOUS, ECT, LMD
TISSUE BATHS, TRANSDUCERS, RECORDERS
METABOLISM, FEEDING BEHAVIOUR
BEHAVIOUR
Ventilation, Anesthesia, Surgical Monitoring
BLOOD PRESSURE, VITAL FUNCTIONS
Product Info

114P - Pressure Myograph System

The Pressure Myograph System - 114P is an ideal system used to study the structure and function of isolated sections of small vessels (diameter >60 μm) under near-physiological conditions. Vessel diameters can be measured in response to pharmacological and physiological stimuli.

A built-in heating system maintains the chamber temperature, eliminating the need for continuous and often costly superfusion. The chamber cover includes ports for superfusion, for rapid draining and filling, for cumulative addition of drugs and for oxygenation. To facilitate cleaning, the chamber is made of acid resistant stainless steel.

Measurements are continuously recorded by a computer with dimension analysis software - MyoVIEW. As an option, the FlowMeter - 162FM can be added to the system to measure flows between 15-4000 μl/min. In studies requiring rapid freezing or fixation of the vessel segment, the Pressure Myograph for rapid freezing - 115FP can replace the standard 110P chamber.

114P - Pressure Myograph System
   

  Features Specification Other info  

√ Ergonomic design to facilitate easy and quick mounting of arteries Simplified precise cannula alignment
√ Longitudinal force measurement
√ Study the structure and function of small vessels >60μm under near-physiological pressures

√ Low volume of chamber fluid to minimize amount of reagents
Study the effects of pressure and luminal flow
√ Combine the system with fluorescence imaging to study intracellular Ca2+ or pH
 


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