DMT PRODUCTS
 
 
Wire Myograph Systems
Wire myograph systems are used to measure force in small rings of muscle tissue with diameters as small as 60 microns.

The product range covers systems from an electrically silent, single channel system with an optical window for combining electrophysiology and imaging when investigating molecular physiological research questions, to 4-channel high-throughput systems for the more quantitatively driven pharmacological questions and determinations of tissue responses.
       
       
     

Pressure Myograph System
This specialty line of myographs is mostly used to study small vessel function under near physiological conditions of pressure and flow by digitally tracking diameter and flow in real-time.

The products include single artery systems, called myographs, for diameter measurement under user-controlled pressure and flow conditions. Specialty versions include confocal, freeze/fix and culture myographs. The latter are used to apply the advances of molecular biology (siRNA, viral transfection) to the study of small vessel function.
        
           
    
 
Muscle Strip Myograph System
This newest, and quickly expanding, line of myograph systems is aimed at measuring the myo-mechanical properties of muscle strips including, skeletal and cardiac muscle and larger pieces of smooth muscle.

The tissue is held by clamps that can be custom-made to match the customer's wishes. Muscle experimentation often requires a reliable current stimulation source. The easy to use DMT stimulator is designed to provide this reliable current source.
          
          
        
Tissue Organ Bath Systems
The multi-channel tissue organ bath system is the hallmark of the drive for productivity and results in academic and industry research laboratories.
Integrated data acquisition, extensive automation of fluid control, programmable washing routines, and GLP capability make the DMT Tissue Organ Bath System a significant advance upon classical systems. All these features increase research throughput and reproducibility in a more handsfree approach so laboratory personnel can focus on data analysis rather than washing glassware.
      
         
   
 
 
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