ECG and EEG Recording Papers

Details ECG & EEG RECORDING PAPERS
  1. SCHILLER [180 × 70 x 315]
  2. SCHILLER [190 x 90 x 400]
  3. SCHILLER [210 x 280 x 215]
  4. SCHILLER [210 x 140 x 250]
  5. E.C.G. – PHILIPS [210 x 300 x 200]
  6. HUMPRY [215 x 30]
  7. MAC 1200 [210 × 295 x 150]
  8. LEE [118 x 30]
  9. HELLIGE MICROSMART [90 x 90 x 360]
  10. HUNTLEIGH [152 x 150 x 200]
  11. NIHON KOHDEN RQS 216-6B-300 [216 x 60]
  12. NIHON KOHDEN FQW [210 x 295 x 250]
  13. NIHON KOHDEN FQW [110 x 140 x 142]
  14. NIHON KOHDEN [150 x 100 x 300]
  15. NIHON KOHDEN. FQW 210-10A-30A [210 x 300 x 333]
  16. E.C.G. – NIHON KOHDEN RQS 210-6B-300
  17. FUKUDA DENSHI [210 x 145 x 200]
  18. FUKUDA [63 x 30]
  19. FUKUDA [50 x 30]
  20. CARTA DIAGRAMMATA [120 x 40 x 400]
  21. M.T. PAPER [214 x 280 x 300]
  22. QUINTON T.M.T. [210 × 300 x 218]
  23. BLUE PAPER VUE [210 x 300 x 200]
  24. EDAN SE-3 [80 x 20]
  25. C.G. – HP [151 x 100 x 150]
  26. TOITU 0030-005 [152 × 150 x 200]
  27. KENZ CARDICO [50 x 30]
  28. E.C.G. – GREEN [50 x 30]
  29. E.C.G. – BLUE [50 x 30]
  30. E.C.G. PAPER RED [50X20]
  31. E.C.G. PAPER RED [50X30]
  32. E.C.G. PAPER RED [63X30]
  33. E.C.G. PAPER RED [80X20]
  34. 3 CHANNEL PAPERS [145 x 30]
  35. E.C.G. – KENZ CARDICO [182 x 30]
    ECG and EEG Recording Papers: Precision Documentation for Accurate Diagnostics ECG and EEG recording papers are vital tools for capturing detailed electrical activity of the heart and brain. Specifically designed for use with electrocardiogram (ECG) and electroencephalogram (EEG) machines, these papers ensure that every waveform is recorded with clarity and precision. Whether used in cardiology or neurology, high-quality recording papers are essential for accurate diagnostics and patient monitoring. They provide the foundation for reliable data analysis, helping healthcare professionals make informed decisions. High-Quality Prints for Clear Waveform Analysis These specialized recording papers are engineered to produce high-resolution prints that capture the fine details of heartbeats and brain waves. The clarity of the waveforms on the paper is crucial for accurate interpretation, allowing medical staff to detect even the slightest abnormalities. High-quality ECG and EEG recording papers ensure that the data is easy to read and analyze, reducing the risk of misdiagnosis and enhancing the overall quality of care provided to patients. Durable and Long-Lasting Documentation ECG and EEG recording papers are designed to withstand the test of time, ensuring that the recorded data remains intact and legible even after prolonged storage. This durability is essential for maintaining accurate medical records, as these documents may need to be referenced months or even years after the initial test. The long-lasting nature of these papers guarantees that important diagnostic information remains accessible and reliable, providing a dependable resource for ongoing patient care.  

One of the key features of high-quality ECG chest electrodes is their superior adhesion, which ensures that the electrodes stay firmly in place during the monitoring process. This strong, skin-friendly adhesive is crucial for accurate readings, as it minimizes the risk of electrodes shifting or detaching, which can lead to incorrect data. Additionally, these electrodes are made from soft, hypoallergenic materials that are gentle on the skin, allowing for comfortable wear even during long procedures. The combination of strong adhesion and comfort makes these electrodes reliable for both short-term and continuous monitoring.

CERACARTA® ELECTRODES (50 pcs box)
Ceracarta® electrodes deliver stable and accurate bioelectric measurements, helping doctors effectively diagnose and monitor patients. Designed to withstand sudden or irregular movements, they feature a high strength adhesive gel that ensures full skin contact. The electrodes are also hypoallergenic, offer excellent conductivity, and allow clean, painless removal after monitoring.

Product Specifications:

High-strength adhesive • Hypoallergenic • Excellent conductivity