Poland Connected Healthcare Market Analysis

Poland Connected Healthcare Market Analysis


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Poland's connected healthcare market is projected to grow from $384.89 Mn in 2022 to $2924.22 Mn by 2030, registering a CAGR of 28.85% during the forecast period of 2022-30. The main factors driving the growth would be a shortage of medical professionals, increasing demand for healthcare services, technological advancements, and government initiatives. The market is segmented by type, function, and application. Some of the major players include Comarch Healthcare, Asseco, StethoMe, Jutro Medical, Philips Healthcare, and Siemens Healthcare.

ID: IN10PLHS004 CATEGORY: Healthcare Services GEOGRAPHY: Poland AUTHOR: Neha Davda

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Poland Connected Healthcare Market Executive Summary

Poland's connected healthcare market is projected to grow from $384.89 Mn in 2022 to $2924.22 Mn by 2030, registering a CAGR of 28.85% during the forecast period of 2022-30. Poland spent $6.45%, or $1,014 per person, of its national GDP on health care in 2019. Poland has consistently spent less on health during the previous 10 years than the average EU country, both in terms of per-capita spending and as a percentage of GDP.

In recent years, the introduction of connected healthcare in Poland has gained momentum. The COVID-19 epidemic has expedited the use of telemedicine and other digital health solutions because they provide a secure and effective method of providing medical care without the need for direct physical contact. The National Center for Telemedicine, which was founded in 2012 and runs a national telemedicine network connecting healthcare practitioners all over the country, is one of the major institutes in Poland's connected healthcare sector. The centre has played a significant role in encouraging the use of telemedicine in Poland and offers a variety of services, including teleconsultations, telemonitoring, and tele-education.

Poland Connected Healthcare Market

Market Dynamics

Market Growth Drivers

The Poland-connected healthcare market is expected to be driven by factors such as:

  1. Shortage of medical professionals- Poland is experiencing a medical workforce shortage, particularly in rural areas. As a result, telemedicine and other digital health solutions are becoming more and more necessary to give patients in isolated or underserved areas access to healthcare services
  2. Increasing demand for healthcare services- Poland's population is ageing, with over 20% of the population predicted to be over the age of 65 by 2030. The need for healthcare services is anticipated to rise as a result of this demographic change, notably in the areas of long-term care and the management of chronic diseases, which can be assisted by connected healthcare solutions
  3. Technological advancements- Fast technological breakthroughs, particularly in the wireless and mobile sectors, are enabling the creation of cutting-edge linked healthcare solutions including mobile health apps and remote patient monitoring
  4. Government initiatives- The National eHealth System and the Digital Poland program are some of the initiatives the Polish government has launched to encourage the adoption of digital health solutions. By encouraging the use of digital tools, these programs seek to increase efficiency while enhancing the quality of healthcare services

Market Restraints

The following factors are expected to limit the growth of the connected healthcare market in Poland:

  1. Lack of infrastructure- In some parts of Poland, especially in rural or distant locations, there is still a shortage of infrastructure despite government measures to encourage the adoption of digital health solutions. This might prevent certain patients from using connected healthcare services
  2. Limited reimbursement- The adoption of these technologies by healthcare practitioners may be hampered by Poland's still-limited reimbursement policies for telemedicine and other digital health services
  3. Data privacy concerns- Data privacy is an issue in the connected healthcare sector, as it is with any digital product. Patients and medical professionals may be reluctant to use these solutions because they are concerned about the security of their private medical data

Competitive Landscape

Key Players

  • Comarch Healthcare (POL)- a Polish technology business that offers telemedicine, patient portals, and electronic health records as well as other healthcare solutions. They have created a variety of connected health solutions for patients and healthcare professionals
  • Asseco (POL)- a tech firm that offers various healthcare solutions, such as telemedicine, electronic medical records, and healthcare analytics. Hospitals, clinics, and other healthcare organisations have created a variety of connected health solutions
  • StethoMe (POL)- offers healthcare services such as remote and automatic lung and heart screening with the use of artificial intelligence
  • Jutro Medical (POL)- provides a blend of offline and online primary care, combining physical clinics and mobile-first telemedicine
  • Philips Healthcare- being a market pioneer in the field of healthcare technology, Philips Healthcare provides connected health services like telemedicine, health data analytics, and remote patient monitoring
  • GE Healthcare- provides a range of connected healthcare products, such as platforms for analytics in healthcare, patient monitoring technology, and imaging equipment
  • Siemens Healthcare- is a manufacturer and distributor of medical imaging and diagnostic equipment in addition to offering healthcare IT solutions

1. Executive Summary
1.1 Service Overview
1.2 Global Scenario
1.3 Country Overview
1.4 Healthcare Scenario in Country
1.5 Healthcare Services Market in Country
1.6 Recent Developments in the Country

2. Market Size and Forecasting
2.1 Market Size (With Excel and Methodology)
2.2 Market Segmentation (Check all Segments in Segmentation Section)

3. Market Dynamics
3.1 Market Drivers
3.2 Market Restraints

4. Competitive Landscape
4.1 Major Market Share

4.2 Key Company Profile (Check all Companies in the Summary Section)

4.2.1 Company
4.2.1.1 Overview
4.2.1.2 Product Applications and Services
4.2.1.3 Recent Developments
4.2.1.4 Partnerships Ecosystem
4.2.1.5 Financials (Based on Availability)

5. Reimbursement Scenario
5.1 Reimbursement Regulation
5.2 Reimbursement Process for Services
5.3 Reimbursement Process for Treatment

6. Methodology and Scope

Connected Healthcare Market Segmentation

By Type (Revenue, USD Billion):

Based on the Type the market is segmented into mHealth services, mHealth Devices, and E- Prescription

  • MHealth services
  • mHealth Devices
  • E- Prescription

By FunctionType (Revenue, USD Billion):

  • Remote patient monitoring
  • Clinical monitoring
  • Telemedicine
  • Others (Assisted Living)

By Application Type (Revenue, USD Billion):

  • Diagnosis and Treatment
  • Monitoring Application
  • Wellness and Prevention
  • Healthcare management
  • Others

Methodology for Database Creation

Our database offers a comprehensive list of healthcare centers, meticulously curated to provide detailed information on a wide range of specialties and services. It includes top-tier hospitals, clinics, and diagnostic facilities across 30 countries and 24 specialties, ensuring users can find the healthcare services they need.​

Additionally, we provide a comprehensive list of Key Opinion Leaders (KOLs) based on your requirements. Our curated list captures various crucial aspects of the KOLs, offering more than just general information. Whether you're looking to boost brand awareness, drive engagement, or launch a new product, our extensive list of KOLs ensures you have the right experts by your side. Covering 30 countries and 36 specialties, our database guarantees access to the best KOLs in the healthcare industry, supporting strategic decisions and enhancing your initiatives.

How Do We Get It?

Our database is created and maintained through a combination of secondary and primary research methodologies.

1. Secondary Research

With many years of experience in the healthcare field, we have our own rich proprietary data from various past projects. This historical data serves as the foundation for our database. Our continuous process of gathering data involves:

  • Analyzing historical proprietary data collected from multiple projects.
  • Regularly updating our existing data sets with new findings and trends.
  • Ensuring data consistency and accuracy through rigorous validation processes.

With extensive experience in the field, we have developed a proprietary GenAI-based technology that is uniquely tailored to our organization. This advanced technology enables us to scan a wide array of relevant information sources across the internet. Our data-gathering process includes:

  • Searching through academic conferences, published research, citations, and social media platforms
  • Collecting and compiling diverse data to build a comprehensive and detailed database
  • Continuously updating our database with new information to ensure its relevance and accuracy

2. Primary Research

To complement and validate our secondary data, we engage in primary research through local tie-ups and partnerships. This process involves:

  • Collaborating with local healthcare providers, hospitals, and clinics to gather real-time data.
  • Conducting surveys, interviews, and field studies to collect fresh data directly from the source.
  • Continuously refreshing our database to ensure that the information remains current and reliable.
  • Validating secondary data through cross-referencing with primary data to ensure accuracy and relevance.

Combining Secondary and Primary Research

By integrating both secondary and primary research methodologies, we ensure that our database is comprehensive, accurate, and up-to-date. The combined process involves:

  • Merging historical data from secondary research with real-time data from primary research.
  • Conducting thorough data validation and cleansing to remove inconsistencies and errors.
  • Organizing data into a structured format that is easily accessible and usable for various applications.
  • Continuously monitoring and updating the database to reflect the latest developments and trends in the healthcare field.

Through this meticulous process, we create a final database tailored to each region and domain within the healthcare industry. This approach ensures that our clients receive reliable and relevant data, empowering them to make informed decisions and drive innovation in their respective fields.

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Last updated on: 10 January 2024
Updated by: Anish Swaminathan

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