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Iodine-131 measurement system

Iodine-131 measurement system

Key words:

Iodine-131 measurement system

Product Introduction

Odine-131 therapy for thyroid diseases has been widely implemented in clinical practice, demonstrating significant efficacy, safety, and convenience.

Product Performance

  • The imaging adopts a linear array scanning imaging detector with a resolution of 0.4mm, excellent imaging effect, and grayscale/color options.
  • Simultaneously integrating Nal detector with a crystal volume of 2 inches and an energy resolution better than 7%.
  • Real time analysis of the types of nuclides in the tested object, including commonly used nuclides in nuclear medicine such as 1-131, F-18, Tc-99, etc.
  • Measurement range: 5~400mCi (185MBg~14800MBg)
  • Measurement accuracy:<3000Bg
  • Product size: 60cm x 40cm x 190cm, compatible with AC220V power supply.
  • Data processing: query data output and report generation, provide data interfaces for other systems to access, and connect to the hospital's reporting system.
  • Report output: Distribution map of the whole-body dose field of the subject, prediction of the trend of residual activity changes in various organs of the subject.
  • Top ultrasonic and bottom sensing sensors automatically measure height and weight, and provide positioning information for the machine.

Application Fields

  • Department of Radiology:The Department of Radiology is a comprehensive department integrating imaging diagnosis and interventional therapy. Radiological diagnosis employs X-rays, gamma rays and other radiation to penetrate the human body, rendering images of internal bodily structures and organs on fluorescent screens or radiographic films, enabling evaluation of human anatomical morphology, physiological functions and pathological lesions.

  • Department of Radiation Oncology:Radiation oncology is a localized therapeutic modality that uses ionizing radiation for cancer treatment. Radiation sources include alpha, beta and gamma rays emitted from radioactive isotopes, as well as X-rays, electron beams, proton beams and other particle beams generated by various X-ray therapy units and medical accelerators.

  • Department of Nuclear Medicine:It adopts nuclear science technologies for disease diagnosis and treatment. As an integrated department combining imaging, therapeutic services, scientific research and teaching, it serves as one of the core modalities in modern medicine.

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