Call for Abstract
Scientific Program
3rd International Conference on Healthcare Informatics and Wellness, will be organized around the theme “A Step towards better Healthcare Systems for control of Covid-19 ”
Healthcare IT 2020 is comprised of 23 tracks and 86 sessions designed to offer comprehensive sessions that address current issues in Healthcare IT 2020.
Submit your abstract to any of the mentioned tracks. All related abstracts are accepted.
Register now for the conference by choosing an appropriate package suitable to you.
It is a multidisciplinary field that uses Health Information Technology (HIT) to improve health care via any combination of higher quality, higher efficiency (spurring lower cost and thus greater availability), and new opportunities. The disciplines involved include information science, computer science, social science, behavioral science, management science, and others.Health and Biomedical Informatics tools include amongst others computers, clinical guidelines, formal medical terminologies, and information and communication systems.
- Track 1-1Improve research in dental sciences
- Track 1-2Biosensors and trackers
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- Track 1-4 It deals with the resources, devices, and methods required optimizing the acquisition, storage, retrieval, and use of information in health and biomedicine.
Healthcare technology keeps on progressing at noteworthy rates.. The usage of specific learning in the field of devices, medicines, vaccinations, technique and systems planned to streamline healthcare tasks, lower costs and improve quality of life. Constant technological advancements in human cares have spared incalculable lives and improved the personal satisfaction for considerably more. Not just has innovation changed encounters for patients and their families, but on the other hand it has huge impact on medical procedures and the acts of healthcare professionals. Latest technologies in healthcare are:
- Track 2-1Chabot’s and virtual reality
- Track 2-23D Animations in Health Care
- Track 2-3Block chain
- Track 2-4Imaging informatics
- Track 2-5Prognostics in Telemedicine
\r\n A wave of digitization has taken over the world. All the emerging technologies like Artificial Intelligence and others are helping people live a better and easier life. The trends emerging in the healthcare and diagnostics ecosystem as a result of digitization are :
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\r\n Value based healthcare
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\r\n New product development
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\r\n Connectivity
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\r\n Care Management Software
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\r\n Sleep Tech
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\r\n Amazon
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\r\n As a result of this boom in information technology, consumers have not only become more involved in monitoring their own health, but are well-positioned to directly engage with those who provide their healthcare
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Telemedicine is the practice of medicine using technology to deliver care at a distance. A physician uses telecommunications technology for diagnosis, treatment, and prevention of diseases and injuries. All of the healthcare services are provided to patients remotely via video, smartphones, email, etc. Telemedicine aids in the management of chronic conditions, medication management, follow-up visits, and video consultations with specialists. The aim of telemedicine is to make health management easier for patients and to improve the efficiency of healthcare delivery. A greater effort is being made to:
- Track 4-1Expand access to care: remote hospitals will provide emergency and medical aid services.
- Track 4-2Improve health outcomes: patients will receive early diagnosis, cut back hospitalization additionally as reduced mortality rates.
- Track 4-3Address shortages and mis-distribution of health care providers: Specialists will serve a lot of patients via Tele health technologies.
- Track 4-4Support health care education programs: rural physicians can consult with specialists more simply.
- Track 4-5Support patients and their families
- Track 4-6Virtual Hospitals
e-Health is an expensive term and refers to the use of information and communications technologies in healthcare. There are various models and frameworks for designing e-Health technologies. Many of these models are expert-oriented or come from software engineering. However, participation of stakeholders is important for sustainable e Health technologies. This means that stakeholders (payers, caregivers, patients) are involved during the design process to determine the added values ​​(clinical, behavior, care organization) and to test whether the technology in the making meets these requirements. E-Health offers timely coverage and innovative options for managing patient care, electronic records, and medical billing.
- Track 5-1E-consult
- Track 5-2Teleradiology
- Track 5-3Telediagnose
- Track 5-4Teleconsultatie
- Track 5-5Tele coaching
- Track 5-6Telemonitorting
- Track 5-7Delivers Medical Treatment by Storing, Managing and Transferring Medical Records
- Track 5-8Online Pieces of training makes the Health Programs much Better
- Track 5-9E- health apps
- Track 5-10M-health
- Track 5-11Electronic health record(HER) and EMR (Electronic Medical Records)
- Track 5-12Radiology information system
- Track 5-13Pharmacy Information system
- Track 5-14Patients Portals
Electronic prescribing is a technology framework that allows physicians and other medical practitioners to write and send prescriptions to a participating pharmacy electronically instead of using handwritten or faxed notes or calling in prescriptions. It gives physicians full visibility into all of a patient’s documented allergies and previously prescribed drugs and will trigger clinical alerts if a newly prescribed drug has any potential for negative reactions. Alerts in the system will notify the prescriber of allergies, interactions with other drugs the patient is taking, duplicate therapy, as well as pediatric, pregnancy and geriatric issues that would preclude a patient from taking a particular drug. E-prescription can spare your cash, time, and help guard you. Prescribers can check which medicates your protection covers and endorse a medication that costs you less.
Electronic prescription is simpler for the drug specialist to peruse than manually written medicines. This implies less possibility you'll misunderstand the medication or dosage. Prescribers will have secure access to your medical history, so they can be alarmed to conceivable medication collaborations, hypersensitivities, and different notices.
- Track 6-1 Drug Errors may be Prevented through prescription
- Track 6-2Medication Reconciliation method is Speed-en up
- Track 6-3Loss of Prescriptions can be reduced
- Track 6-4Computerized provider( physician) order entry
- Track 6-5Clinical point of care technology
Focus on the convergence of molecular bioinformatics, biostatistics, statistical genetics and clinical informatics. Its focus is on applying informatics methodology to the increasing amount of biomedical and genomic data to formulate knowledge and medical tools, which can be utilized by scientists, clinicians, and patients. The computer-based information is uses in biomedical research to improve human health.
TBI is a relatively young discipline that spans a wide spectrum from big data to diagnostics and therapeutics. TBI involves applying novel methods to the storage, analysis, and interpretation of a massive volume of ‘omics data and it bridges the gap between bench research and real-world application to human health.
Current trends in research on the basis of translational bioinformatics (but not limited to):
- Track 7-1Current trends in the basis on the premise of translational bioinformatics (but not restricted to):
- Track 7-2Precision drugs and biomedical discovery
- Track 7-3Next Generation sequencing for private genetics. Cancer genomics and Metagenomics
- Track 7-4Epigenomics, Genome-phenome-envirome associates
- Track 7-5Biomedical text /Data mining/ information integration
- Track 7-6Biomedical text /Data mining/ information integration
- Track 7-7Network biology/ drugs and pathway/ regulation analysis
- Track 7-8For drug discovery and development
Innovation has been leaving its impressions on each turf, healthcare is a standout amongst the most positively influenced areas New advancements in innovation have helped in shaping the healthcare services industry in the correct manner. From research and medicines to information gathering, advancement has prepared for such extraordinary changes in the healthcare industry. Changing patterns in the technological world have improved the nature of healthcare services that people receive in a significant manner. Latest Trends in healthcare Innovation are:
- Track 8-1Next-generation sequencing
- Track 8-23D-printed devices
- Track 8-3Immunotherapy
- Track 8-4Artificial intelligence
- Track 8-5Virtual reality
- Track 8-6Telehealth
- Track 8-7Telehealth
- Track 8-8Telehealth
\r\n Big data offers enormous potential for improving healthcare delivery, many of the existing claims concerning big data in healthcare are based on anecdotal reports and theoretical vision papers, rather than scientific evidence based on empirical research. Big data have learned through the various paradigms of health information technology (HIT) implementations. Though the role of HIT in reengineering the health system has been well discussed and the benefits to improved processes and patient safety have been demonstrated, there is still much room for HIT outcomes-based research to demonstrate its value. Health Information Exchange and technology has also brought with it issues such as human computer interaction, technology-induced errors (e-iatrogenesis) and workaround issues, which have the potential to grow as innovations continue to be introduced into healthcare at rapid rates.
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Ayurvedic medicine is one of the world's most oldest healing systems It depends on the conviction that wellbeing and health depend upon a sensitive harmony between the mind, body, and soul. Its aim is to promote good wellbeing, not battle sickness. In any case, medicines might be designed for explicit medical issues. Ayurvedic medicine utilizes an assortment of items and practices. A portion of these items which may contain herbs, minerals, or metals-might be destructive, especially whenever utilized inappropriately or without the course of a prepared specialist.
Aesthetic medicine is an expansive term that applies to any claim to fame that includes the way toward altering a patient's physical appearance .Either to improve an individual's face and body, or diminishing the danger of specific sorts of sicknesses including obesity.
- Track 10-1Reconstructive surgery
- Track 10-2Physical surgery
- Track 10-3Non-invasive procedures
Advances in health information technology (health IT) hold extraordinary guarantee for helping small and rural networks beat difficulties in the arrangement of healthcare, for example, separation and work force deficiencies Implementation of health IT, for example, EHRs, can be a pricy endeavour. Aside from the product, various expenses are related with: gaining a health IT framework, including equipment, peripherals, and systems networking expenditure; execution, for example, staff time and starting lower efficiency; and upkeep. Besides, health IT investment must rival other capital expenditures, for example, the requirement for new working room hardware. Small and rural healthcare providers additionally are reluctant to submit assets into a technological area that isn't institutionalized and is continually evolving. In small and rural areas, suppliers likewise face trouble in getting and holding the vital staff and aptitude to actualize and keep up a health IT system. Staff turnover can be especially trying for small and rural areas. Each staff part frequently creates wide subject matters and accepts different jobs inside the association and can be hard to replace.
Biomedical Informatics is an interdisciplinary field looking to study and propel the utilization of biomedical information for scientific research, critical thinking and graphing the best way to improve human health. It is the part of health informatics that utilizes information to support clinicians, analysts and researchers improve human health and provide health services. It is a developing order that has developed alongside advances in biomedicine, which applies the standards of the common sciences, particularly science and organic chemistry, to prescription and human services. Experts of informatics are normally called informaticians (once in a while informaticists) and view their attention more on data than technology.
- Track 12-1Bioinformatics
- Track 12-2Research informatics
- Track 12-3Public health informatics
- Track 12-4Health information management
- Track 12-5Consumer health information processing
- Track 12-6Imaging information processing’s
\r\n The Health Information Management (HIM) is the practice of obtaining, examining and preserving digital and traditional medical information vital to providing standard patient care. With the general computerization of health and medical records, paper-based records are being substituted with Electronic Health Records i.e. EHRs. The devices of health informatics and information technology are being increasingly utilized to initiate efficiency in information management practices in the health care sectors. Both hospital information systems i.e. "HIM" and health human resources information systems i.e. "HRHIS" are common applications of Health information management.
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Maternal and child Health aim around the intricate general medical issues influencing ladies, kids and their families. Maternal and child health experts give data and access to sexual regenerative health services and techniques for family planning, advance the soundness of pregnant ladies and their kids and increment vaccination rates. Maternal and child health specialists work to improve the health delivery system through support, training and research. They achieve this by finding and testing arrangements through connected research and by creating, actualizing and additionally assessing health programs at the nearby, state, national and worldwide dimensions.
Healthcare Market. According the report, the global big data in healthcare market was valued at $16.87 billion in 2017 and is expected to attain $67.82 billion by 2025, registering a CAGR of 19.1% during the forecast period. Big data application in healthcare but not limited to: Real-Time alerting, Health data for informed Strategic Planning, Integrate medical imaging for an broader diagnosis, patient health tracking.
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Remote Patient Monitoring (RPM) is a type of ambulatory healthcare that allows a patient to use a mobile medical device to perform a routine test and send the test data to a healthcare professional in real-time. RPM technology includes daily monitoring devices such as glucose meters for patients with diabetes. RPM is frequently used with the elderly and the chronically ill, two groups of people who have high levels of medical need. Remote monitoring techniques allow these patients and their physicians to closely monitor medical conditions.
Consolidating RPM in interminable ailment administration can essentially enhance a person's personal satisfaction. RPM encourages these objectives by conveying care ideal to the home. What're more, patients and their relatives feel comfort realizing that they are being observed and will be upheld if an issue emerges? This is especially vital when patients are overseeing complex self-mind procedures, for example, home haemodialysis. Scratch highlights of RPM, similar to remote checking and pattern investigation of physiological parameters.
The time spared because of RPM usage builds effectiveness, and enables medicinal services suppliers to allot more opportunity to remotely instruct and speak with patients.
- Track 16-1Collecting and Transferring of Medical Records by Healthcare Provider.
- Track 16-2Applications of Artificial Intelligence in Healthcare.
- Track 16-3Maintains Diabetes by providing real-time delivery of blood pressure & blood glucose level
- Track 16-4Cardiac Re-synchronization therapy minimizes the Risk of Heart Failures.
- Track 16-5Diagnostic application software that develops treatment recommendations and intervention alerts based on the analysis of collected data.
Pharmacy informatics is taking the healthcare informatics field to another dimension by making the act of recommending and regulating prescriptions progressively exact. Drawing on both medical knowledge and computer science, this field utilizes data innovation answers for improve quiet results. It is the logical field that centers around medicine related information and learning inside the continuum of healthcare systems including its procurement, stockpiling, investigation, use and dispersal in the delivery of optimal medication related patient care and health results.
\r\n It deals with the resources, devices and methods required to optimize the acquisition, storage, retrieval and use of information in health and biomedicine. Advances in healthcare technology include not only computers but also clinical guidelines, formal medical terminologies, and information and communication systems. It is applied to the areas of nursing, clinical care, dentistry, pharmacy, public health and biomedical informatics research. Public health informatics has been defined as the systematic application of information and computer science and technology to public health practice, research and learning. Public health organizations are faced with the challenge of collecting and analyzing data related to the health of a population, and managing this data to maximize efficiency and efficacy. The Certificate in Public Health Informatics is designed to develop experts in the systematic application of information technology to public health practice, research and learning.
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AI in healthcare is the use of algorithms and software to approximate human cognition in the analysis of complex medical data. The primary aim of health-related AI applications is to analyse relationships between prevention or treatment techniques and patient outcomes. AI programs have been developed and applied to practices such as diagnosis processes, treatment protocol development, drug development, personalized medicine, and patient monitoring and care. Health companies merging with other health companies, allow for greater health data accessibility. A large part of industry focus of implementation of AI in the healthcare sector is in the clinical decision support system. Examples of large companies that have contributed to AI algorithms for use in healthcare are: IBM, Microsoft, Intel etc.
Block Chain in healthcare: Block chain and distributed ledger technology (DLT) have great potential across healthcare to improve patient care and reduce costs. These emerging technologies have already started to take hold in healthcare networks, from clearinghouses to drug supply chains to provider-credentialing processes and other critical areas.
Digital therapeutics defined as a treatment or therapy that utilizes digital and often Internet-based health technologies to spur changes in patient behaviour. Digital therapeutics can be used as a standalone therapy or in conjunction with more conventional treatments. Digital therapeutics can be used for a variety of conditions such as including type II diabetes, Alzheimer's disease, dementia, congestive heart failure. Digital therapeutics can also be used to treat patients with psychological and neurological symptoms.
Imaging informatics, also sometimes referred to as radiology informatics or medical imaging informatics, concerns how medical images are used and exchanged throughout complex healthcare systems. However, with the proliferation of digitized images across the practice of medicine to include fields such as cardiology, ophthalmology, dermatology, surgery, gastroenterology, obstetrics, gynecology and pathology, the advances in Imaging Informatics are also being tested and applied in other areas of medicine. Various industry players and vendors involved with medical imaging, along with IT experts and other biomedical informatics professionals, are contributing and getting involved in this expanding field.
Key areas relevant to medical Imaging includes:
- Track 20-1Picture archiving and communication system (PACS) and element systems
- Track 20-2Imaging information science for the enterprise
- Track 20-3Image-enabled electronic medical records
- Track 20-4Image-enabled electronic medical records
- Track 20-5Radiology info Systems (RIS) and Hospital info Systems (HIS)
- Track 20-6Digital image acquisition
- Track 20-7Image process and sweetening
- Track 20-8Image information compression
- Track 20-93D visualization and multimedia system
- Track 20-10Speech recognition
- Track 20-11Computer-aided diagnosis (CAD).
- Track 20-12Imaging facilities style
- Track 20-13Imaging vocabularies and ontologies
- Track 20-14Data mining from medical pictures databases
- Track 20-15Transforming the radiological Interpretation process (TRIP)
Dental Informatics is a specialization inside Health Informatics, a multi-disciplinary field that looks to improve healthcare through the utilization of Health Information Technology (HIT) and information science to health care delivery, health information management, health care administration, explore, data get-together and blend, and knowledge sharing. Dental informatics is a quick rising zone of dental science, with an expanding number of utilizations and instruments that could help dental clinical practice the field of Dental Informatics is worried about the crossing point of Health Informatics and Dentistry as a whole Dental informatics involves the use of computers and information technology to:
- Track 21-1Improve dental practice
- Track 21-2Improve management in dental healthcare
- Track 21-3Improve academic programs in dental sciences
- Track 21-4Develop core literature which will be created available worldwide
- Track 21-5Develop core literature which will be created available worldwide
- Track 21-6Help dentists and alternative specialists create wise to selections
- Track 21-7Improve research in dental sciences
\r\n Clinical Informatics is concerned with the use of information in health care by and clinicians. Clinicians collaborate with other health care and information technology professionals to develop health informatics tools which promote patient care that is safe, efficient, effective, timely, patient-centered, and equitable. Clinical informaticians transform health care by analyzing, designing, implementing, and evaluating information and communication systems that enhance individual and population health outcomes, improve patient care, and strengthen the clinician-patient relationship. Clinical informaticians use their knowledge of patient care combined with their understanding of informatics concepts, methods, and health informatics.
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\r\n Nursing Informatics (NI) is the specialty that integrates nursing science with multiple information management and analytical sciences to identify, define, manage, and communicate data, information, knowledge, and wisdom in nursing practice. NI supports nurses, consumers, patients, the inter professional healthcare team, and other stakeholders in their decision-making in all roles and settings to achieve desired outcomes. This support is accomplished through the use of information structures, information processes, and information technology.
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