CE-Marked Professional Use, MHRA, FDA Approved

Roche Urisys 1100 Urine Analyser

SKU: Art. no.: 128908 Brand: Roche Diagnostics

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The product at a glance

Independent analysis
Up to 50 measurements per hour
Fast and clean
2 serial interfaces
Output of results via integrated thermal printer

Urine Analyser Urisys 1100

Roche's Urisys 1100 urine analyser is a reflection photometer used to assess Combur Test UX urine test strips. The diagnostic tool can take up to 50 measurements in an hour and features a built-in thermal printer.

Simply inserting the urine test strip into the test strip slide and pressing the start button makes the tests incredibly quick and easy to use. Automatic incubation and evaluation come next. Additionally, the printer prints the outcome. The Roche Urisys 1100 is an excellent choice for stationary use due to its quick and effective urine analysis.

A test strip slide and an interactive training session are among the many accessories that come with the convenient urinalysis instrument.

Product Details

  • Reflection photometer Urisys 1100
  • Determination of spec. gravity, pH, leukocytes, nitrite, protein, glucose, ketone, urobilinogen, bilirubin, and blood
  • Fast and clean as test strips need only be inserted into the Urisys 1100 urine analyser
  • Efficient and fast (up to 50 measurements per hour)
  • Result printout via the integrated thermal printer
  • A connection to the IT system of the practice is possible via 2 serial interfaces
  • Keyboard socket and barcode reader connection available

Delivery Contents

  • Roche Urisys 1100 Urine Analyser
  • External power supply unit 100V - 240V, 50/60 Hz with network cable
  • 1 test strip carriage, type “C” for Combur10Test UX
  • 1 thermal printer roll
  • Operating instructions, Quick Reference Guide

Product FAQs

Troponin I is a cardiac biomarker commonly used to support diagnosis of myocardial injury and acute myocardial infarction.

Troponin I is a cardiac biomarker commonly used to support diagnosis of myocardial injury and acute myocardial infarction.

Troponin I is a cardiac biomarker commonly used to support diagnosis of myocardial injury and acute myocardial infarction.

Troponin I is a cardiac biomarker commonly used to support diagnosis of myocardial injury and acute myocardial infarction.

Troponin I is a cardiac biomarker commonly used to support diagnosis of myocardial injury and acute myocardial infarction.

Troponin I is a cardiac biomarker commonly used to support diagnosis of myocardial injury and acute myocardial infarction.

Professional Troponin I Rapid Testing Solutions

What Is Troponin Testing?

A Troponin Test measures the levels of troponin proteins—specifically Troponin I and Troponin T—in the bloodstream. These regulatory proteins are integral to cardiac muscle contraction and are virtually absent in the blood of healthy individuals.

Why Troponin Is Important In Cardiology

In the realm of Cardiac Marker Testing, troponin is recognized as a gold standard due to its cardiac specificity. An elevation in Troponin I can support accurate AMI diagnosis and clinical evaluation.

Point-of-Care Cardiac Testing & Emergency Diagnostic Applications

Point-of-Care Testing allows healthcare professionals to conduct rapid diagnostic testing closer to the patient. This supports faster triage decisions and more efficient emergency workflows.

Benefits Of Rapid Troponin Testing

Integrating point-of-care Healthcare Diagnostics offers profound clinical benefits:

  • Immediate Triage: Faster confirmation of Acute Myocardial Infarction Detection allows for earlier administration of reperfusion therapy.
  • Resource Optimization: Rapidly ruling out AMI in low-risk chest pain patients frees up critical emergency department beds.
  • Procedural Simplicity: The lateral flow cassette format requires minimal training and completely negates the need for bulky laboratory analyzers.

Cardiac Biomarkers Explained in Clinical Diagnostics

As a provider of premium Clinical Diagnostics, we emphasize that while the Troponin I cassette is highly specific, it is often utilized in conjunction with other rapid tests to form a complete kinetic profile of the cardiac event. Understanding the temporal release patterns of these biomarkers allows healthcare professionals to accurately pinpoint the onset of the infarction and monitor the patient's recovery trajectory reliably.

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