Our Case Studies

Blockchain based Electronic Health Record

A patient-centric system for tamper-proof medical records and real-time diagnostics using blockchain.

Softlabs Group collaborated with State University of New York, Korea to develop a mobile-first EHR platform powered by Hyperledger blockchain. The solution enables secure health data collection, Bluetooth integration and real-time access—empowering patients and improving care.

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Industry

Healthcare and Blockchain

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App Type

SAAS

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Methodology

Agile Scrum

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Platform

Mobile Application, Web Application

Client Intro

The State University of New York, Korea is a leading institution focused on technological innovation in public service sectors.

Together with Softlabs Group, they aimed to solve key challenges in healthcare data privacy and accessibility. The goal: a unified, blockchain-enabled system where patients manage their own health data securely across mobile and web platforms.

Country

country flagSouth Korea

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The Need for Innovation


01
Growth in Digital Health Records & IoT Devices

Global healthcare data is projected to reach 2,314 exabytes by 2025, necessitating secure digital systems.

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02
Increased Risk of Data Breaches

Healthcare systems globally face rising threats of data manipulation and unauthorized access.

03
Lack of Patient-Controlled Health Data

Current EHRs offer limited access control to patients and poor interoperability across systems.

What we built

We developed a cross-platform electronic health record system with real-time mobile connectivity and Hyperledger Fabric blockchain integration.

The mobile app collects data from Bluetooth-enabled health devices, while blockchain ensures immutable, secure data storage.

We built an interface for patients to fully manage data sharing permissions, enabling privacy-first health access anytime, anywhere.

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Detailed Explanation of How it Works

Blockchain EHR
Installs and Sets Up

Patient Installs and Sets Up the App

Users install the mobile app and link their health devices via Bluetooth for automatic data syncing.

Data is Captured

Data is Captured from Devices

Health metrics such as pulse, oxygen, or temperature are sent securely to the app from the connected devices.

Logs the Records

Blockchain Logs the Records

Each data point is stored on Hyperledger Fabric, creating an immutable ledger accessible only with permissions.

Data Access

User Manages Data Access

Patients assign or revoke access to doctors or caregivers from within the app's control panel.

Live Metrics

Doctors Access Live Metrics

With consent, healthcare providers view real-time and historical data for better diagnosis and faster care.

System Ensures

System Ensures Integrity & Auditability

Blockchain logs every action—ensuring data transparency, traceability and resistance to tampering.

Client Pain Points and Fixes


Challenges Client Faced

  • 01

    Securing health data across mobile and IoT devices

  • 02

    Giving patients control over their own data

  • 03

    Providing real-time access to remote health readings

  • 04

    Guaranteeing data cannot be altered or manipulated

How We Solved It

  • Integrated Hyperledger Fabric for secure data blockchain storage

  • Built user permissions for full patient-controlled data access

  • Enabled Bluetooth device syncing for real-time health tracking

  • Ensured tamper-proof logs and audit trails for health records

Dashboard blockchain EHR

What We Achieved

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1

Delivered a secure and accessible digital health record app for mobile-first care

2

Enabled real-time diagnostics through connected medical devices and live sync

3

Empowered patients to take control of data access and sharing

4

Strengthened healthcare data security using blockchain immutability

5

Positioned the university as a pioneer in blockchain healthcare solutions

AI Features
Implemented

medical device data

Bluetooth-powered real-time medical device data collection

health data storage

Hyperledger Fabric integration for secure health data storage

permissions for data sharing

Patient-managed permissions for data sharing and access control

Blockchain-based audit

Blockchain-based audit trail for all data events and access logs

This solution also fits for


Telehealth Platforms
Telehealth Platforms

Securely collect and transmit remote health data to practitioners.

Government Health Programs

Store medical records in tamper-proof systems for public health delivery.

Insurance Claims
Insurance Claims Automation

Verify claims with immutable health data logs and timestamps.

Track patient vitals
Clinical Trial Data Systems

Track patient vitals with integrity for research and FDA compliance.

Technologies Used

Mobile
Android Studio

Android Studio

XCode

XCode

Backend
Hyperledger

Hyperledger Fabric

Data Collection
Bluetooth Integration

Bluetooth Integration

IoT Devices

IoT Devices

Database
Blockchain

Secure Ledger (Blockchain)

Architecture
Modular Architecture

Modular

Scalable Architecture

Scalable

Cross-platform Architecture

Cross-platform

20+

Years of Experienced

25+

Countries

2000+

Clients

5000+

Projects

Other Case Studies


At Softlabs Group, we take pride in solving complex business challenges with innovative and reliable solutions. Our case studies showcase how we’ve empowered clients across industries with tailored software that delivers measurable results and drives success.

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FAQs


All records are stored on a private Hyperledger blockchain, ensuring immutability and encryption.

Yes, the app includes permission controls to share or revoke access at any time.

It supports most Bluetooth-enabled health devices like pulse oximeters and thermometers.

Yes, providers with access rights can view real-time or historical data from any location.

Yes, the system is designed with compliance in mind and can be tailored to specific regulations.

Health data is sent to the blockchain via a backend service using secure APIs.

Yes, it’s built for multi-user, multi-device scenarios with strong access separation.

Any modification attempt would break the blockchain hash chain, making it easily detectable.

Yes, the blockchain logs every transaction with timestamps for full transparency.

Implementation typically takes 5–7 weeks including device integration and onboarding.

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