ANALYSIS OF PANCHAKARMA RESEARCHES DONE IN THE MANAGEMENT OF GRIDHRASI
Presented by Dr.Annie sebastien ,PG Scholar, Department of Panchakarma, SDMCAH Hassan
Kayachikitsa IMP Schlok – Part 7 - PPT
By Prof. Dr. R. R. Deshpande
• This PPT has following features –
• Imp Contents – Vata Vyadhi Chikitsa,Gudagat-Aamashayagat –Pakwashayagat – Siragat, Asthi Majjagat –Vata ,Ardit or Facial Palsy ,Pakshaghat or Hemiplegia, Grudhrasi or Sciatica ,Pashangardabha or Mumps, Kadar or corn ,Indralupta or Alopecia areata ,Darunak or Dandruff, Niruddha Prakash or Phimosis ,Unmad or Hysteria ,Apasmar or Epilepsy ,
• Visit – www.ayurvedicfriend.com
Phone – 922 68 10 630
ANALYSIS OF PANCHAKARMA RESEARCHES DONE IN THE MANAGEMENT OF GRIDHRASI
Presented by Dr.Annie sebastien ,PG Scholar, Department of Panchakarma, SDMCAH Hassan
Kayachikitsa IMP Schlok – Part 7 - PPT
By Prof. Dr. R. R. Deshpande
• This PPT has following features –
• Imp Contents – Vata Vyadhi Chikitsa,Gudagat-Aamashayagat –Pakwashayagat – Siragat, Asthi Majjagat –Vata ,Ardit or Facial Palsy ,Pakshaghat or Hemiplegia, Grudhrasi or Sciatica ,Pashangardabha or Mumps, Kadar or corn ,Indralupta or Alopecia areata ,Darunak or Dandruff, Niruddha Prakash or Phimosis ,Unmad or Hysteria ,Apasmar or Epilepsy ,
• Visit – www.ayurvedicfriend.com
Phone – 922 68 10 630
this is an ppt presentation by dr.b.arun kumar, who is working as a lecturer in MNR ayurvedic medical college, sangareddy, near hyderabad. in this presentation i given all details of virechana karma.
Asrigdara is an Ayurvedic term for Abnormal Uterine Bleeding. It is one of the most common gynecological problems found in Stri Rog OPD. I have tried to compile all the important points mentioned in various Ayurveda Literatures regarding Asrigdara.
KANKSHI - USE OF POTASH ALUM IN AYURVEDADr Anitha M
Kankshi or potash alum is one among the uparasas mentioned in Rasashastra textbooks. Ayurveda explains wide range of therapeutic properties of kankshi both internally or externally.
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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
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
ARTIFICIAL INTELLIGENCE IN HEALTHCARE.pdfAnujkumaranit
Artificial intelligence (AI) refers to the simulation of human intelligence processes by machines, especially computer systems. It encompasses tasks such as learning, reasoning, problem-solving, perception, and language understanding. AI technologies are revolutionizing various fields, from healthcare to finance, by enabling machines to perform tasks that typically require human intelligence.
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.
Tom Selleck Health: A Comprehensive Look at the Iconic Actor’s Wellness Journeygreendigital
Tom Selleck, an enduring figure in Hollywood. has captivated audiences for decades with his rugged charm, iconic moustache. and memorable roles in television and film. From his breakout role as Thomas Magnum in Magnum P.I. to his current portrayal of Frank Reagan in Blue Bloods. Selleck's career has spanned over 50 years. But beyond his professional achievements. fans have often been curious about Tom Selleck Health. especially as he has aged in the public eye.
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Introduction
Many have been interested in Tom Selleck health. not only because of his enduring presence on screen but also because of the challenges. and lifestyle choices he has faced and made over the years. This article delves into the various aspects of Tom Selleck health. exploring his fitness regimen, diet, mental health. and the challenges he has encountered as he ages. We'll look at how he maintains his well-being. the health issues he has faced, and his approach to ageing .
Early Life and Career
Childhood and Athletic Beginnings
Tom Selleck was born on January 29, 1945, in Detroit, Michigan, and grew up in Sherman Oaks, California. From an early age, he was involved in sports, particularly basketball. which played a significant role in his physical development. His athletic pursuits continued into college. where he attended the University of Southern California (USC) on a basketball scholarship. This early involvement in sports laid a strong foundation for his physical health and disciplined lifestyle.
Transition to Acting
Selleck's transition from an athlete to an actor came with its physical demands. His first significant role in "Magnum P.I." required him to perform various stunts and maintain a fit appearance. This role, which he played from 1980 to 1988. necessitated a rigorous fitness routine to meet the show's demands. setting the stage for his long-term commitment to health and wellness.
Fitness Regimen
Workout Routine
Tom Selleck health and fitness regimen has evolved. adapting to his changing roles and age. During his "Magnum, P.I." days. Selleck's workouts were intense and focused on building and maintaining muscle mass. His routine included weightlifting, cardiovascular exercises. and specific training for the stunts he performed on the show.
Selleck adjusted his fitness routine as he aged to suit his body's needs. Today, his workouts focus on maintaining flexibility, strength, and cardiovascular health. He incorporates low-impact exercises such as swimming, walking, and light weightlifting. This balanced approach helps him stay fit without putting undue strain on his joints and muscles.
Importance of Flexibility and Mobility
In recent years, Selleck has emphasized the importance of flexibility and mobility in his fitness regimen. Understanding the natural decline in muscle mass and joint flexibility with age. he includes stretching and yoga in his routine. These practices help prevent injuries, improve posture, and maintain mobilit
- 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
Lung Cancer: Artificial Intelligence, Synergetics, Complex System Analysis, S...Oleg Kshivets
RESULTS: Overall life span (LS) was 2252.1±1742.5 days and cumulative 5-year survival (5YS) reached 73.2%, 10 years – 64.8%, 20 years – 42.5%. 513 LCP lived more than 5 years (LS=3124.6±1525.6 days), 148 LCP – more than 10 years (LS=5054.4±1504.1 days).199 LCP died because of LC (LS=562.7±374.5 days). 5YS of LCP after bi/lobectomies was significantly superior in comparison with LCP after pneumonectomies (78.1% vs.63.7%, P=0.00001 by log-rank test). AT significantly improved 5YS (66.3% vs. 34.8%) (P=0.00000 by log-rank test) only for LCP with N1-2. Cox modeling displayed that 5YS of LCP significantly depended on: phase transition (PT) early-invasive LC in terms of synergetics, PT N0—N12, cell ratio factors (ratio between cancer cells- CC and blood cells subpopulations), G1-3, histology, glucose, AT, blood cell circuit, prothrombin index, heparin tolerance, recalcification time (P=0.000-0.038). Neural networks, genetic algorithm selection and bootstrap simulation revealed relationships between 5YS and PT early-invasive LC (rank=1), PT N0—N12 (rank=2), thrombocytes/CC (3), erythrocytes/CC (4), eosinophils/CC (5), healthy cells/CC (6), lymphocytes/CC (7), segmented neutrophils/CC (8), stick neutrophils/CC (9), monocytes/CC (10); leucocytes/CC (11). Correct prediction of 5YS was 100% by neural networks computing (area under ROC curve=1.0; error=0.0).
CONCLUSIONS: 5YS of LCP after radical procedures significantly depended on: 1) PT early-invasive cancer; 2) PT N0--N12; 3) cell ratio factors; 4) blood cell circuit; 5) biochemical factors; 6) hemostasis system; 7) AT; 8) LC characteristics; 9) LC cell dynamics; 10) surgery type: lobectomy/pneumonectomy; 11) anthropometric data. Optimal diagnosis and treatment strategies for LC are: 1) screening and early detection of LC; 2) availability of experienced thoracic surgeons because of complexity of radical procedures; 3) aggressive en block surgery and adequate lymph node dissection for completeness; 4) precise prediction; 5) adjuvant chemoimmunoradiotherapy for LCP with unfavorable prognosis.
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
micro teaching on communication m.sc nursing.pdfAnurag Sharma
Microteaching is a unique model of practice teaching. It is a viable instrument for the. desired change in the teaching behavior or the behavior potential which, in specified types of real. classroom situations, tends to facilitate the achievement of specified types of objectives.
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.
2. INTRODUCTION
• Amritadi kwata is an important formulation for the
management of sheetapitta
• Sheetapitta is a common skin disease described in Āyūrveda.
• Amrutadi kwath is specifically mentioned in Bhaishajya
Ratnavali and Yogratnakar as Sheetapittaghna.
• It contains
Amruta,
Haridra
Nimba
Dhamasa
11. SHEETAPITTA
Snighda, Madhura, Pishita, Guru, Pichila, Abhishyandi guna are
increased in the body due to Nidana sevana
This leads to VATA and KAPHA prakopa
This impairs Rasa and Rakta dhatu
Does Avarodha of rasa and raktavaha srotas
Leads to Vimargagamana of dosha
Sheetapitta
12. MODE OF ACTION
AT THE LEVEL OF
AGNI (AMA)
AT THE LEVEL OF
SANCHAYA (GUNA)
AT THE LEVEL OF
PRAKOPA (DOSHA)
AT THE LEVEL OF
PRASARAAND
STHANASAMSRAYA (
DHATU)
13. AT THE LEVEL OF AMA
Tikta,
Kashaya,
Katu rasa
are Agni
deepana
Ushna verya
of Haridra and
Guduchi also
helps in Agni
deepana
There by
Ama
pachana
will be
happening
This will lead
to reduction
in Aruchi,
Angamarda,
Chardi, and
Jwara
16. AT LEVEL OF DHATU
RASA DHATU
(Twak)
• Tikta rasa has twak
sthirikarana property
• This will indeed lead to
Rasa dhatu Prasadana
• Tikta rasa does Agni
deepana and Ama pachana,
these also will contribute
for Rasa dhatu prasadana
RAKTA DHATU
• Sheeta virya does the Pitta
prashamana
• Pitta and Rakta has
Ashraya Ashrayi bhava
• Kashaya rasa reduces the
dhatu shaithilyatha
18. OTHER PLANTS WHICH CAN BE USED
FOR SHEETAPITTA
• Manjishta – Rubia cordifolia
• Devadaru – Cedrus deodara
• Vacha – Acorus calamus
• Katuki – Picrorhiza kurrora
• Amlaki – Embilia ribes
• Haritaki – Terminalia chebula
• Vibeetaki – Terminalia bellarica
Rakta shodhana, Vatanulomana,Pittakaphaprasamana,
Deepana, Pachana properties of these drugs may also help in the
management of Sheetapitta.
19. RESEARCH PAPERS
• Tinospora cordifolia has mast cell stabilizing effect as well as
H1 anti Histamine effect on allergic disorders
• Hydroxy groups of curcumin may play a significant role in
both anti oxidative and anti allergic activities. Curcumine does
the inhibition of Protien kinase C, Phospholipase A2 which
are responsible for histamine production.
• Aqueous extract of Azadiracta indica stimulates immune
response by stimulating mast cell, Humoral and cell mediated
response
20. CONCLUSION
• Amritadi kwatha has significant effect on controlling
Sheetapitta
• Combined effect of Amrita, Nimba, Haridra and Dhamasa act
in different levels of the Samprapti and does the vighatana
• Many researches has been proved the anti inflammatory, anti
allergic and anti oxidant properties of these plant extracts