This document provides specifications for the LC500 health kiosk model from Lifeclinic International. It describes the kiosk's physical dimensions, input power requirements, and measurement capabilities for blood pressure, weight, body fat, and pulse oximetry. Additional features include a 10.4-inch touchscreen display, optional wheelchair accessibility and printer, and integration capabilities for real-time data collection and management. Pricing and lease options are provided for the LC500 as well as other Lifeclinic kiosk models.
This is a presentation of our final year project of Biomedical Engineering course on Cuffless blood pressure monitoring. A new technology recently developed. We have tried to develop a model for the same.
Cuffless differential blood pressure estimation using smart phonesTaslima Projucti
Smart phones today have become increasingly popular
with the general public for their diverse functionalities such
as navigation, social networking, and multimedia facilities. These
phones are equipped with high-end processors, high-resolution
cameras, and built-in sensors such as accelerometer, orientationsensor,
and light-sensor. According to comScore survey, 26.2% of
U.S. adults use smart phones in their daily lives. Motivated by
this statistic and the diverse capability of smart phones, we focus
on utilizing them for biomedical applications. We present a
new application of the smart phone with its built-in camera and
microphone replacing the traditional stethoscope and cuff-based
measurement technique, to quantify vital signs such as heart rate
and blood pressure. We propose two differential blood pressure
estimating techniques using the heartbeat and pulse data. The first
method uses two smart phoneswhereas the second method replaces
one of the phones with a customized external microphone. We estimate
the systolic and diastolic pressure in the two techniques
by computing the pulse pressure and the stroke volume from the
data recorded. By comparing the estimated blood pressure values
with those measured using a commercial blood pressure meter, we
obtained encouraging results of 95–100% accuracy.
This is a presentation of our final year project of Biomedical Engineering course on Cuffless blood pressure monitoring. A new technology recently developed. We have tried to develop a model for the same.
Cuffless differential blood pressure estimation using smart phonesTaslima Projucti
Smart phones today have become increasingly popular
with the general public for their diverse functionalities such
as navigation, social networking, and multimedia facilities. These
phones are equipped with high-end processors, high-resolution
cameras, and built-in sensors such as accelerometer, orientationsensor,
and light-sensor. According to comScore survey, 26.2% of
U.S. adults use smart phones in their daily lives. Motivated by
this statistic and the diverse capability of smart phones, we focus
on utilizing them for biomedical applications. We present a
new application of the smart phone with its built-in camera and
microphone replacing the traditional stethoscope and cuff-based
measurement technique, to quantify vital signs such as heart rate
and blood pressure. We propose two differential blood pressure
estimating techniques using the heartbeat and pulse data. The first
method uses two smart phoneswhereas the second method replaces
one of the phones with a customized external microphone. We estimate
the systolic and diastolic pressure in the two techniques
by computing the pulse pressure and the stroke volume from the
data recorded. By comparing the estimated blood pressure values
with those measured using a commercial blood pressure meter, we
obtained encouraging results of 95–100% accuracy.
As Digital and AI are now the new "buz word" vendors and consulting organizations use to advertise their services CIO must grow their understanding of how business capabilities can be transformed with the use of technology to improve efficiency and profitability across the value chain. This presentation addresses how CIOs must earn the respect of the business and be recognized as their Chief Digital Officer as well.
Alex Thissen "I don't feel so well… Integrating health checks in your .NET Co...Fwdays
Do you have any idea how your ASP.NET Web Apps and APIs are functioning? Are they behaving healthily or in a degraded state? You might be able to tell from log information and telemetry data, but why not have them tell you how healthy they are themselves? ASP.NET Core 2.2 introduces health endpoints that let your apps and APIs do just that.
In this session, you will learn how to make health checks an integral part of your solution. We will cover various types of health checks ranging from internal status, such as memory thresholds, to health based on external dependencies, such as databases and HTTP endpoints. Finally, you are going to see how this all can be used in a container cluster to allow the orchestrator to check for liveliness and readiness based on your health endpoints.
Driving Value: Boosting Clinical Registry Value Using ARMUS SolutionsHealth Catalyst
Many hospitals today face a perfect storm of operational and financial challenges. With increasing competition from outpatient facilities and rising care costs negatively impacting budgets, now is the time to boost your clinical registry’s value. However, collecting and analyzing data can be time-consuming and costly without the right tools. During this webinar, we will share insights and best practices for increasing the value of registry participation and how it’s possible to reduce costs while improving outcomes using the ARMUS Product Suite.
I dont feel so well. Integrating health checks in your .NET Core solutions - ...Alex Thissen
Conference: Techorama NL 2019
Location: Ede, The Netherlands
Abstract: Do you have any idea how your ASP.NET Web Apps and APIs are functioning? Are they behaving healthily or in a degraded state? You might be able to tell from log information and telemetry data, but why not have them tell you how healthy they are themselves? ASP.NET Core 2.2 introduces health endpoints that let your apps and APIs do just that. In this session you will learn how to make health checks an integral part of your solution. We will cover various types of health checks ranging from internal status, such as memory thresholds, to health based on external dependencies, such as databases and HTTP endpoints. Finally, you are going to see how this all can be used in a container cluster to allow the orchestrator to check for liveliness and readiness based on your health endpoints.
Enhancing Reproducibility and Transparency in Clinical Research through Seman...Mark Wilkinson
We were interested in whether we could model well-established clinical risk guidelines in OWL, and use these to automatically classify patient data v.v. "risk" (e.g. using the Framingham risk categories). What we ended-up doing, however, was wandering down a very interesting path of attempting to model clinical intuition! This reports the first phase of the experiment. A subsequent SlideShare will give part II of this investigation.
This is the work of Soroush Samadian, Ph.D. Candidate at the University of British Columbia Bioinformatics Graduate Programme.
- Video recording of this lecture in English language: https://youtu.be/lK81BzxMqdo
- Video recording of this lecture in Arabic language: https://youtu.be/Ve4P0COk9OI
- Link to download the book free: https://nephrotube.blogspot.com/p/nephrotube-nephrology-books.html
- Link to NephroTube website: www.NephroTube.com
- Link to NephroTube social media accounts: https://nephrotube.blogspot.com/p/join-nephrotube-on-social-media.html
Title: Sense of Smell
Presenter: Dr. Faiza, Assistant Professor of Physiology
Qualifications:
MBBS (Best Graduate, AIMC Lahore)
FCPS Physiology
ICMT, CHPE, DHPE (STMU)
MPH (GC University, Faisalabad)
MBA (Virtual University of Pakistan)
Learning Objectives:
Describe the primary categories of smells and the concept of odor blindness.
Explain the structure and location of the olfactory membrane and mucosa, including the types and roles of cells involved in olfaction.
Describe the pathway and mechanisms of olfactory signal transmission from the olfactory receptors to the brain.
Illustrate the biochemical cascade triggered by odorant binding to olfactory receptors, including the role of G-proteins and second messengers in generating an action potential.
Identify different types of olfactory disorders such as anosmia, hyposmia, hyperosmia, and dysosmia, including their potential causes.
Key Topics:
Olfactory Genes:
3% of the human genome accounts for olfactory genes.
400 genes for odorant receptors.
Olfactory Membrane:
Located in the superior part of the nasal cavity.
Medially: Folds downward along the superior septum.
Laterally: Folds over the superior turbinate and upper surface of the middle turbinate.
Total surface area: 5-10 square centimeters.
Olfactory Mucosa:
Olfactory Cells: Bipolar nerve cells derived from the CNS (100 million), with 4-25 olfactory cilia per cell.
Sustentacular Cells: Produce mucus and maintain ionic and molecular environment.
Basal Cells: Replace worn-out olfactory cells with an average lifespan of 1-2 months.
Bowman’s Gland: Secretes mucus.
Stimulation of Olfactory Cells:
Odorant dissolves in mucus and attaches to receptors on olfactory cilia.
Involves a cascade effect through G-proteins and second messengers, leading to depolarization and action potential generation in the olfactory nerve.
Quality of a Good Odorant:
Small (3-20 Carbon atoms), volatile, water-soluble, and lipid-soluble.
Facilitated by odorant-binding proteins in mucus.
Membrane Potential and Action Potential:
Resting membrane potential: -55mV.
Action potential frequency in the olfactory nerve increases with odorant strength.
Adaptation Towards the Sense of Smell:
Rapid adaptation within the first second, with further slow adaptation.
Psychological adaptation greater than receptor adaptation, involving feedback inhibition from the central nervous system.
Primary Sensations of Smell:
Camphoraceous, Musky, Floral, Pepperminty, Ethereal, Pungent, Putrid.
Odor Detection Threshold:
Examples: Hydrogen sulfide (0.0005 ppm), Methyl-mercaptan (0.002 ppm).
Some toxic substances are odorless at lethal concentrations.
Characteristics of Smell:
Odor blindness for single substances due to lack of appropriate receptor protein.
Behavioral and emotional influences of smell.
Transmission of Olfactory Signals:
From olfactory cells to glomeruli in the olfactory bulb, involving lateral inhibition.
Primitive, less old, and new olfactory systems with different path
As Digital and AI are now the new "buz word" vendors and consulting organizations use to advertise their services CIO must grow their understanding of how business capabilities can be transformed with the use of technology to improve efficiency and profitability across the value chain. This presentation addresses how CIOs must earn the respect of the business and be recognized as their Chief Digital Officer as well.
Alex Thissen "I don't feel so well… Integrating health checks in your .NET Co...Fwdays
Do you have any idea how your ASP.NET Web Apps and APIs are functioning? Are they behaving healthily or in a degraded state? You might be able to tell from log information and telemetry data, but why not have them tell you how healthy they are themselves? ASP.NET Core 2.2 introduces health endpoints that let your apps and APIs do just that.
In this session, you will learn how to make health checks an integral part of your solution. We will cover various types of health checks ranging from internal status, such as memory thresholds, to health based on external dependencies, such as databases and HTTP endpoints. Finally, you are going to see how this all can be used in a container cluster to allow the orchestrator to check for liveliness and readiness based on your health endpoints.
Driving Value: Boosting Clinical Registry Value Using ARMUS SolutionsHealth Catalyst
Many hospitals today face a perfect storm of operational and financial challenges. With increasing competition from outpatient facilities and rising care costs negatively impacting budgets, now is the time to boost your clinical registry’s value. However, collecting and analyzing data can be time-consuming and costly without the right tools. During this webinar, we will share insights and best practices for increasing the value of registry participation and how it’s possible to reduce costs while improving outcomes using the ARMUS Product Suite.
I dont feel so well. Integrating health checks in your .NET Core solutions - ...Alex Thissen
Conference: Techorama NL 2019
Location: Ede, The Netherlands
Abstract: Do you have any idea how your ASP.NET Web Apps and APIs are functioning? Are they behaving healthily or in a degraded state? You might be able to tell from log information and telemetry data, but why not have them tell you how healthy they are themselves? ASP.NET Core 2.2 introduces health endpoints that let your apps and APIs do just that. In this session you will learn how to make health checks an integral part of your solution. We will cover various types of health checks ranging from internal status, such as memory thresholds, to health based on external dependencies, such as databases and HTTP endpoints. Finally, you are going to see how this all can be used in a container cluster to allow the orchestrator to check for liveliness and readiness based on your health endpoints.
Enhancing Reproducibility and Transparency in Clinical Research through Seman...Mark Wilkinson
We were interested in whether we could model well-established clinical risk guidelines in OWL, and use these to automatically classify patient data v.v. "risk" (e.g. using the Framingham risk categories). What we ended-up doing, however, was wandering down a very interesting path of attempting to model clinical intuition! This reports the first phase of the experiment. A subsequent SlideShare will give part II of this investigation.
This is the work of Soroush Samadian, Ph.D. Candidate at the University of British Columbia Bioinformatics Graduate Programme.
- Video recording of this lecture in English language: https://youtu.be/lK81BzxMqdo
- Video recording of this lecture in Arabic language: https://youtu.be/Ve4P0COk9OI
- Link to download the book free: https://nephrotube.blogspot.com/p/nephrotube-nephrology-books.html
- Link to NephroTube website: www.NephroTube.com
- Link to NephroTube social media accounts: https://nephrotube.blogspot.com/p/join-nephrotube-on-social-media.html
Title: Sense of Smell
Presenter: Dr. Faiza, Assistant Professor of Physiology
Qualifications:
MBBS (Best Graduate, AIMC Lahore)
FCPS Physiology
ICMT, CHPE, DHPE (STMU)
MPH (GC University, Faisalabad)
MBA (Virtual University of Pakistan)
Learning Objectives:
Describe the primary categories of smells and the concept of odor blindness.
Explain the structure and location of the olfactory membrane and mucosa, including the types and roles of cells involved in olfaction.
Describe the pathway and mechanisms of olfactory signal transmission from the olfactory receptors to the brain.
Illustrate the biochemical cascade triggered by odorant binding to olfactory receptors, including the role of G-proteins and second messengers in generating an action potential.
Identify different types of olfactory disorders such as anosmia, hyposmia, hyperosmia, and dysosmia, including their potential causes.
Key Topics:
Olfactory Genes:
3% of the human genome accounts for olfactory genes.
400 genes for odorant receptors.
Olfactory Membrane:
Located in the superior part of the nasal cavity.
Medially: Folds downward along the superior septum.
Laterally: Folds over the superior turbinate and upper surface of the middle turbinate.
Total surface area: 5-10 square centimeters.
Olfactory Mucosa:
Olfactory Cells: Bipolar nerve cells derived from the CNS (100 million), with 4-25 olfactory cilia per cell.
Sustentacular Cells: Produce mucus and maintain ionic and molecular environment.
Basal Cells: Replace worn-out olfactory cells with an average lifespan of 1-2 months.
Bowman’s Gland: Secretes mucus.
Stimulation of Olfactory Cells:
Odorant dissolves in mucus and attaches to receptors on olfactory cilia.
Involves a cascade effect through G-proteins and second messengers, leading to depolarization and action potential generation in the olfactory nerve.
Quality of a Good Odorant:
Small (3-20 Carbon atoms), volatile, water-soluble, and lipid-soluble.
Facilitated by odorant-binding proteins in mucus.
Membrane Potential and Action Potential:
Resting membrane potential: -55mV.
Action potential frequency in the olfactory nerve increases with odorant strength.
Adaptation Towards the Sense of Smell:
Rapid adaptation within the first second, with further slow adaptation.
Psychological adaptation greater than receptor adaptation, involving feedback inhibition from the central nervous system.
Primary Sensations of Smell:
Camphoraceous, Musky, Floral, Pepperminty, Ethereal, Pungent, Putrid.
Odor Detection Threshold:
Examples: Hydrogen sulfide (0.0005 ppm), Methyl-mercaptan (0.002 ppm).
Some toxic substances are odorless at lethal concentrations.
Characteristics of Smell:
Odor blindness for single substances due to lack of appropriate receptor protein.
Behavioral and emotional influences of smell.
Transmission of Olfactory Signals:
From olfactory cells to glomeruli in the olfactory bulb, involving lateral inhibition.
Primitive, less old, and new olfactory systems with different path
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Pulmonary Thromboembolism - etilogy, types, medical- Surgical and nursing man...VarunMahajani
Disruption of blood supply to lung alveoli due to blockage of one or more pulmonary blood vessels is called as Pulmonary thromboembolism. In this presentation we will discuss its causes, types and its management in depth.
Report Back from SGO 2024: What’s the Latest in Cervical Cancer?bkling
Are you curious about what’s new in cervical cancer research or unsure what the findings mean? Join Dr. Emily Ko, a gynecologic oncologist at Penn Medicine, to learn about the latest updates from the Society of Gynecologic Oncology (SGO) 2024 Annual Meeting on Women’s Cancer. Dr. Ko will discuss what the research presented at the conference means for you and answer your questions about the new developments.
Explore natural remedies for syphilis treatment in Singapore. Discover alternative therapies, herbal remedies, and lifestyle changes that may complement conventional treatments. Learn about holistic approaches to managing syphilis symptoms and supporting overall health.
These lecture slides, by Dr Sidra Arshad, offer a quick overview of physiological basis of a normal electrocardiogram.
Learning objectives:
1. Define an electrocardiogram (ECG) and electrocardiography
2. Describe how dipoles generated by the heart produce the waveforms of the ECG
3. Describe the components of a normal electrocardiogram of a typical bipolar leads (limb II)
4. Differentiate between intervals and segments
5. Enlist some common indications for obtaining an ECG
Study Resources:
1. Chapter 11, Guyton and Hall Textbook of Medical Physiology, 14th edition
2. Chapter 9, Human Physiology - From Cells to Systems, Lauralee Sherwood, 9th edition
3. Chapter 29, Ganong’s Review of Medical Physiology, 26th edition
4. Electrocardiogram, StatPearls - https://www.ncbi.nlm.nih.gov/books/NBK549803/
5. ECG in Medical Practice by ABM Abdullah, 4th edition
6. ECG Basics, http://www.nataliescasebook.com/tag/e-c-g-basics
MANAGEMENT OF ATRIOVENTRICULAR CONDUCTION BLOCK.pdfJim Jacob Roy
Cardiac conduction defects can occur due to various causes.
Atrioventricular conduction blocks ( AV blocks ) are classified into 3 types.
This document describes the acute management of AV block.
These simplified slides by Dr. Sidra Arshad present an overview of the non-respiratory functions of the respiratory tract.
Learning objectives:
1. Enlist the non-respiratory functions of the respiratory tract
2. Briefly explain how these functions are carried out
3. Discuss the significance of dead space
4. Differentiate between minute ventilation and alveolar ventilation
5. Describe the cough and sneeze reflexes
Study Resources:
1. Chapter 39, Guyton and Hall Textbook of Medical Physiology, 14th edition
2. Chapter 34, Ganong’s Review of Medical Physiology, 26th edition
3. Chapter 17, Human Physiology by Lauralee Sherwood, 9th edition
4. Non-respiratory functions of the lungs https://academic.oup.com/bjaed/article/13/3/98/278874
Flu Vaccine Alert in Bangalore Karnatakaaddon Scans
As flu season approaches, health officials in Bangalore, Karnataka, are urging residents to get their flu vaccinations. The seasonal flu, while common, can lead to severe health complications, particularly for vulnerable populations such as young children, the elderly, and those with underlying health conditions.
Dr. Vidisha Kumari, a leading epidemiologist in Bangalore, emphasizes the importance of getting vaccinated. "The flu vaccine is our best defense against the influenza virus. It not only protects individuals but also helps prevent the spread of the virus in our communities," he says.
This year, the flu season is expected to coincide with a potential increase in other respiratory illnesses. The Karnataka Health Department has launched an awareness campaign highlighting the significance of flu vaccinations. They have set up multiple vaccination centers across Bangalore, making it convenient for residents to receive their shots.
To encourage widespread vaccination, the government is also collaborating with local schools, workplaces, and community centers to facilitate vaccination drives. Special attention is being given to ensuring that the vaccine is accessible to all, including marginalized communities who may have limited access to healthcare.
Residents are reminded that the flu vaccine is safe and effective. Common side effects are mild and may include soreness at the injection site, mild fever, or muscle aches. These side effects are generally short-lived and far less severe than the flu itself.
Healthcare providers are also stressing the importance of continuing COVID-19 precautions. Wearing masks, practicing good hand hygiene, and maintaining social distancing are still crucial, especially in crowded places.
Protect yourself and your loved ones by getting vaccinated. Together, we can help keep Bangalore healthy and safe this flu season. For more information on vaccination centers and schedules, residents can visit the Karnataka Health Department’s official website or follow their social media pages.
Stay informed, stay safe, and get your flu shot today!
Ozempic: Preoperative Management of Patients on GLP-1 Receptor Agonists Saeid Safari
Preoperative Management of Patients on GLP-1 Receptor Agonists like Ozempic and Semiglutide
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