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Bilaney Consultants Products | Catalogue - Request for Quotation

Bilaney Consultants

Bilaney Consultants Products | Catalogue - Request for Quotation
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Small Animal 12 Lead ECG Recorder system with LabScribe ECG analysis Software
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Small Animal 12 Lead ECG Recorder system with LabScribe ECG analysis Software

IX-ECG12-SA
In stock
1
Product Details

The IX-ECG12-SA system is optimized for measuring small animal ECG.

The IX-ECG12-SA system includes:

  • IX-ECG12 recorder
  • 10 x C-ISO-GNE: a set of 10 platinum needle electrodes.
  • LabScribe ECG Analysis module

The iWorx 12 lead ECG recorder enables accurate and reliable ECG analysis of resting and exercising humans or animals. Measuring all 12 ECG leads simultaneously, this compact and lightweight PC-based ECG recorder enables highly detailed analysis of the anterior, lateral and inferior regions of the heart. The IX-ECG12 connects to and is powered by a USB port on any Windows or Macintosh computer. Data is recorded and analyzed with iWorx advanced LabScribe ECG Software Module.

Heart Rate Variability Kubios HRV – Heart Rate Variability Analysis Software is an advanced tool for studying the variability of heart beat intervals. Data can be exported from LabScribe using the edf export option and then imported into Kubios HRV for analysis.

Specifications
Analog Inputs 10 Electrodes: RA,LA,RL,LL,V1,V2,V3,V4,V5
Input Range 2400mV, 1200mV, 800mV,
400mV, 200mV, 100mV,
50mV, 25mV, 12mV
A/D Converter
Sampling Speed 20k Samples/sec per channel simultaneous
Resolution 16 Bit
System noise < 6 microVolts
Interface USB
General
Enclosure Plastic
Power USB
Warranty and Upgrades Protected by a 3 year warranty

Optional Accessories

  • Temperature Controller with Heated Bed.

Citations:

  • Xie, Xueyi, et al. “Intermittent vagal nerve stimulation alters the electrophysiological properties of atrium in the myocardial infarction rat model.” Engineering in Medicine and Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE. IEEE, 2014.
  • Kulkarni, Kanchan, et al. "The influences of the M2R-GIRK4-RGS6 dependent parasympathetic pathway on electrophysiological properties of the mouse heart." PloS one13.4 (2018): e0193798.
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