Electrical Endoscopy Mass Detection (EEMD)

The early detection of gastrointestinal (GI) cancers such as esophageal, gastric, and pancreatic malignancies is crucial due to the potential for misdiagnoses during standard endoscopic evaluations. These types of cancer are frequently identified at advanced stages, leading to poor patient outcomes and limited treatment options. EEMD is a real-time intra-endoscopic electrical diagnostic probe designed to differentiate high-risk excision-requiring lesions using modified endoscopic biopsy forceps as a non-invasive method. During the standard endoscopy process, the decision to take a sample for pathology diagnosis is often based on the skill and experience of the endoscopist. In some cases, this decision results in additional costs for the patient, and in other cases, the failure to take a sample can lead to cancer not being diagnosed in the early stages.

Advantages and superiority of the Electrical Endoscopy Mass Detection

Evidence from studies indicates that this technique demonstrates a high level of sensitivity and specificity in identifying small polyps and lesions that might not be easily observable through standard endoscopy. Overall, the results of Electrical Endoscopy Mass Detection indicate its potential in cancer screening and surveillance.

Hospital Tech Electrical Endoscopy Mass Detection

Hospitech Cancer Care Innovations Company is at the forefront of revolutionizing cancer diagnosis with its innovative range of devices. These include the Cancer Diagnostic Probe (CDP), Impedimetric Tumor Detection System (ITDS), Electrical Endoscopy Mass Detection (EEMD), and ElectroChemoTherapy (ECT) & Gamma Probe Manufacturers . These state-of-the-art technologies are engineered to enhance cancer detection and treatment effectiveness. Backed by research, publications, and patents, these tools deliver precise results for early diagnosis and improved patient outcomes. The company takes pride in its dedicated team and steadfast commitment to making a significant impact in the healthcare industry's battle against cancer. The Electrical Endoscopy Mass Detection device has attracted considerable interest in the medical sector because of its impressive success in detecting cancer at an early stage. A collaboration between researchers in the US and international partners led to the development of the EEMD device, which has transformed the approach taken by doctors in diagnosing and treating different forms of cancer. Through the use of advanced electrical endoscopy technology, this groundbreaking device enables the non-invasive and precise identification of early-stage masses within the body. Doctors can improve their diagnostic abilities and offer better care to patients by incorporating the EEMD device into their practice.

Technology of Electrical Endoscopy Mass Detection

EEMD analysis is based on Electrical Impedance Spectroscopy (EIS) that is an increasingly promising technique with immense potential in detecting and characterizing various diseases, with a particular focus on cancer to differentiate normal from premalignant and malignant tissues. The responses are precisely correlated to tissue dielectric properties due to their pathophysiological changes during cancer, including increasing cell size, cell membrane permeability, changes in water content within the cell, etc. The results of this device evaluate the changes in the dielectric properties of cells as a result of their pathophysiological changes during cancerous growth, including the increase in cell size, the permeability of the cell membrane changes in the water content inside the cell, etc.

 

Features of Electrical Endoscopy Mass Detection

  • Determining the masses of the gastrointestinal tract that require sampling and Excision
  • Assisting in detecting cancer in the early stages.
  • Reducing pathology costs if the tissue if the tissue doesn’t require further investigation
  • Assisting the patient to examine all suspicious tissues.
  • Increasing the accuracy of sampling in large masses by determining the most pathological part of the mass
  • 94% diagnostic accuracy in a clinical trial with 60 tumors mass

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