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The web is transitioning from centralised web 2.0 to decentralised web3, and new applications are being explored in this third iteration. Healthcare is one field where web3 has numerous practical uses. Web 2.0 is all around us. The second generation was the first to incorporate cutting-edge technology including telemedicine, electronic health records, and healthcare apps.
While this technology has numerous benefits for humanity, it may have a negative impact on many things. Because of the lack of transparency on the central computers, our data is at danger. Anyone with access to the data can change or remove it. This is a major worry for both healthcare providers and patients who visit hospitals. This is not the case with Web 3.
Web3 for Healthcare is transforming the way patients handle their data and arrange their medical records. Web3 Healthcare is always creating new services and solutions. This demonstrates the importance of Web3 in healthcare. Web3 for Healthcare provides several advantages, including the ability to track down counterfeit medications, secure data, and do metaverse procedures. Web3 plays a crucial role in the metaverse. There are a lot of metaverse development companies available that can boost healthcare. Let's take a look at how Web3 can benefit healthcare.
What exactly is Web3?
Web3 is the third generation of the web that gives consumers control and ownership over their data. Web3 is a distributed platform in which people have ownership over their data. This is in contrast to the present centralised environment of web 2.0. Web3 is the solution to many of the existing web's issues (or read-write web). Centralization, censorship, and data leaking are examples of these. The read-write-own HTML3 is supported by blockchain technology, which offers a trustless, peer-to-peer, and permissionless environment. Web3 has the potential to be utilised to deliver healthcare services. Let's look at how Web3 may assist you in obtaining healthcare.
It offers the following advantages to users:
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Ownership
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Censorship opposition
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Autonomous Decentralized Organizations (DAOs).
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Identity as a sovereign
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Native American payments
Healthcare and Web 2.0
Healthcare 2.0 refers to the healthcare technologies that arose with web 2.0 in the mid-2000s. Health 2.0 transformed the traditional technique of healthcare delivery into a more effective approach. It used a variety of technologies, including telemedicine, linked health, mHealth, and others, to provide patients with insights and control over their data.
Patients may use web 2.0 to track their health records and see how healthy they are by leveraging the benefits of healthcare applications and platforms. Food intake tracking apps like MyFitnessPal, hydration tracking apps like Waterlogged, fitness and workout sessions, meditation and yoga apps like Down Dog, mental health apps like Talkspace, and many more may keep track of your physical and psychological well-being.
Health 2.0 is defined as "participatory health care characterised by the capacity to swiftly communicate, categorise, and summarise individual health information with the aim of enhancing health care systems, experiences, and results through patient and stakeholder integration."
Social networking, openness, engagement, and cooperation inside and across user groups are all possible with web 2.0 technologies for healthcare. Through health-related websites or portals, Electronic Health Records (EHR), virtual communities and online support groups, home care and chronic disease management systems, and telemedicine and teleconsultation applications, it vastly expanded the traditional e-health model that emerged in the 1900s. Furthermore, it aided rural people in gaining access to healthcare.
It had shortcomings, despite the fact that it revolutionised healthcare and overhauled the system. It offers a number of security risks and data vulnerabilities. Healthcare businesses that have poorly secured websites, web servers, and databases are vulnerable to cybersecurity assaults. Hackers and cybercriminals are always looking for misconfigured, unprotected, or insufficiently protected databases in order to exploit them and demand a ransom.
Healthcare institutions that handle electronic Protected Health Information (ePHI) should have adequate technological security measures in place, particularly data encryption, since this might put your organisation at risk. Furthermore, old medical devices and equipment missing the most recent threat defences, a lack of written cybersecurity policies and processes, and insufficient cyber awareness can all lead to data vulnerability.
As much as web 2.0 has advanced the healthcare system, it has also increased the risks associated with data vulnerability and other difficulties. As a result, the appearance of web3 is a huge relief in the healthcare area. After learning the fundamentals of web3, let us look at how web3 in health might aid the industry.
Healthcare Web3
Web3 is a game-changing instrument for healthcare innovation. These three web3 components have the potential to revolutionise the healthcare industry:
Blockchain-Web3 application cases in healthcare and blockchain technology are combined to build a distributed encrypted database that enables for safe data storage and transfer.
Non-Fungible Tokens (NFTs): Non-Fungible Tokens (NFTs) are one-of-a-kind tokens that cannot be replaced and are backed by blockchain to monitor the ownership of real or digital assets.
Web3 Blockchain, at the heart of web3, enables healthcare practitioners to securely store patient data using immutable digital blockchain technology. This data cannot be edited or tampered with since it is dispersed among nodes.
A metaverse, on the other hand, may convert digital healthcare, such as telemedicine or teleconsultation, into an entertaining and immersive environment. Web3 tokens based on blockchain, such as NFTs, grant users ownership rights. This allows the healthcare system to be patient-centric while also decentralising data and transferring ownership to individuals. This represents a big change in healthcare.
Data ownership and administration of patient data: Web3 for Healthcare is largely utilised in big healthcare facilities to handle data. Every patient that visits a hospital has their own set of symptoms, weaknesses, diseases, and treatments. Each patient requires an own medical record. This can be challenging for hospital administration because hundreds of thousands of patients may visit the facility on a daily basis.
Smart contracts enable healthcare providers to maintain medical records for their patients on the blockchain. Only the created public key or unique ID allows access to the data. Any doctor who requires data access must have access to the ID or public key. To access the data, the public key is necessary. The data is not accessible to any healthcare provider who requires it. The key holder, on the other hand, can share the key with the professional at any moment. Patients now have control over their data. This provides them with privacy and safeguards their critical information.
Healthcare data management is subject to security issues and readily hackable nowadays. Patients anticipate that it will be safe and secure. Because of the lack of transparency in the pharmaceutical supply chain, counterfeiting is becoming a significant concern in the healthcare industry. The original substance is altered and faked by illicit drug makers. As a result, medications with lesser levels of active components or substances not indicated on the label are produced.
This can be harmful to patients' health and may potentially exacerbate their condition if they drink it. While medication makers have made attempts to prevent counterfeit pharmaceuticals, unauthorised producers have found alternative ways to promote their products while pretending to be real.
AR, VR, and robots are current medical technology developments, notably among elite hospitals and institutions. It lets clinicians visualise the patient's whole body in 3D, which aids in surgical planning and execution. AR and VR, on the other hand, cannot be utilised to make therapeutic choices. The metaverse can meet the demands of medical practitioners for effective surgical procedures.
Medical education: Currently, medical education is restricted to films and 2D visuals. These films can only be seen and learned from by students. Many medical schools allow medical students to work with corpses. This has its own set of ethical considerations and legislation. This is where metaverse technology has made a substantial contribution. Several medical schools currently employ AR, VR, and MR technology to teach students anatomy.
Monetization and patient medical records: The existing system allows people to seek care from a variety of medical facilities. Each hospital has its own medical file. If a patient visits ten hospitals for treatment, each facility will have ten medical records files. As a result, the healthcare system may become fragmented, with no one master record of the patient's health information. Sensitive patient records might be dispersed across many platforms in an unorganised manner.
Conclusion
A Web3 development business has the potential to transform the healthcare industry. It has the potential to consolidate the system and restore data to users who should have been data owners from the start. The data is now in the hands of healthcare behemoths that have complete influence over it.
They may sell the data to third parties without their awareness in order to benefit greatly. Suffescom Solutions, a web3 development company, can assist you in realising your concept for a web application for your healthcare facility. Please contact us if you have any questions about healthcare infrastructure.
Author Bio:
Hi! I am Alice Garten a tech blogger, freelance writer, self-published author, book writer, and public speaker who enjoys educating others about little-known information. I have written various blogs and articles about the latest developments in the field of Web3 development, blockchain technology, Metaverse and AI.
Disclaimer
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