Products · Healthcare

ECVT Healthcare System

A radiation-free, real-time 4D imaging platform that maps the electrical activity of living tissue — bringing low-cost, non-invasive detection to the brain and the breast.

4D
Real-Time Imaging
0
Ionizing Radiation
2
Clinical Scanners
1st
Brain ECVT Worldwide

The ECVT Healthcare System applies Electrical Capacitance Volume Tomography to the human body, reconstructing the electrical activity of tissue in four dimensions without radiation, contrast agents, or contact with the patient's interior. The system uses the same 32-channel measurement core — established by Warsito, Marashdeh, and Fan (IEEE Sensors Journal, 2007) — that the industrial ECVT platform uses for process imaging, now configured for the dielectric properties of biological tissue.

Because healthy cells, cysts, benign tumours, and malignant cancers each carry distinct dielectric properties and electrical polarities, the system can distinguish between them by how they behave — not only by how they appear. The same imaging core powers two clinical instruments: a 4D brain scanner and a breast cancer scanner.

Used alongside MRI, PET-CT, and mammography, ECVT adds a functional layer that conventional anatomical imaging cannot capture, making it a practical companion for early detection, diagnosis, and treatment monitoring.

ECVT · 4D Brain Scanner

The world's first ECVT brain scanner.

A low-cost, radiation-free instrument that detects physiological abnormalities in the brain — those caused by tumours, epilepsy, Alzheimer's disease, and other dysfunctions — instantaneously and in real time.

By imaging cortical and intracranial electrical activity, it opens new possibilities for neuroscience research and clinical neurology alike. Baidillah, Sulaiman, and Aljohani proposed the first real-time volumetric (4D) brain activity imaging system using this sensor — demonstrating observation of both executed movement (EM) and imagined movement (IM) in real time. In 2013, Warsito and Baidillah demonstrated brain tumour detection using ECVT at the IEEE EMBS Conference on Neural Engineering — localising charge accumulation in tumour tissue in both hemispheres and producing volumetric reconstructions of cerebellar structures.

Radiation-free Real-time 4D Low cost Non-invasive

What the brain scanner resolves

01

Cortical Activity Mapping

Maps electrical activity across the cortical surface. A healthy brain shows high, homogeneous activity; abnormalities appear as low-activity spots against their surroundings.

02

Intracranial Activity

An average-subtraction method images intracranial electrical activity to instantly surface pain, illness, and pressure-related abnormalities.

03

Tumour Detection

Localises charge accumulation linked to tumours in either lobe — useful for early detection and for tracking inflammation or seizure-related activity.

04

3D Real-Time Reconstruction

Renders volumetric 3D images of structures such as cerebellar tumours as the activity unfolds, frame by frame.

Sample imaging

Cortical electrical activity. Normal brain versus abnormal activity, where low-activity spots mark dysfunction.
Tumour localisation. Intracranial activity reveals tumours in the right and left lobes of the brain.
3D reconstruction. Volumetric ECVT image of a tumour in the cerebellum.
Treatment Monitoring

Tracking progress alongside MRI

MRI follows tumour size; ECVT follows the tumour's electrical activity. Together they reveal inflammation and intracranial change during therapy — critical when a tumour sits in a region as delicate as the brainstem.

Neuroscience Research

4D data for studying the brain

Real-time 4D recordings support the study of brain function, response to stimuli, and degenerative or psychiatric conditions — including schizophrenia, Alzheimer's disease, and epilepsy.

ECVT · Breast Cancer Scanner

Telling cancer apart by how cells behave.

The ECVT Breast Scanner detects abnormalities in the breast by reading electrical activity. Because malignant cancers, benign tumours, simple cysts, and normal tissue each exhibit different dielectric properties and electrical polarities, the system can differentiate between them.

It complements mammography, PET-CT, and MRI with a functional, radiation-free reading of the tissue. Correlation of ECVT permittivity contrast maps against MRI findings and biopsy confirmed that malignant and benign tissue produce distinguishable dielectric signatures. Electrical activity in ECVT correlates with FDG uptake from PET-CT, offering equivalent physiological information without the radiation dose.

Differentiates tissue types Radiation-free Functional imaging

What the breast scanner differentiates

01

Tissue Differentiation

Separates malignant cancer, benign tumour, simple cyst, and normal tissue by their distinct electrical signatures.

02

Electrical Activity Index

Quantifies activity into an index, giving a comparable measure across malignant cancers, benign tumours, and cysts.

03

PET-CT Correlation

Electrical activity tracks physiological activity, correlating with the FDG uptake measured by a PET scan — without the radiation dose.

04

Staging Support

Compared against MRI, ECVT activity reflects both early and advanced development of breast cancers.

Sample imaging

Malignant vs benign. Electrical activity of malignant cancer and benign tumour, beside the corresponding mammograms.
PET-CT comparison. Breast ECVT activity correlates with FDG activity from a PET scan.
MRI comparison. Activity readings across early and advanced breast-cancer development.
Underlying Technology

ECVT

Electrical Capacitance Volume Tomography — the same 32-channel capacitive measurement core proven in industrial process imaging, now applied to biological tissue. The 3D sensitivity matrix framework and clinical validation work established the healthcare imaging framework.

Explore the Technology
The Field

Medical Physics & Cancer Research

The science behind the ECVT Healthcare System — how biological tissue behaves as a dielectric medium, Baidillah's 4D brain imaging research, Keserci's clinical validation, and the ECCT therapy that this system monitors.

Explore the Specialty

Interested in the ECVT Healthcare System?

Talk to our team about specifications, clinical deployment, and research collaboration.

Get in Touch