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- Cancer and Oncology
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1. Current & emerging therapies for the management of patients with endometrial cancer
- Prof. Brian Slomovitz
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2. Liquid biopsy
- Dr. Fabio Del Ben
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3. Endometrial cancer: integrating molecular insights into personalized care
- Dr. Gemma Eminowicz
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6. Latest advances in the development of CAR & TCR T-cell treatments for solid tumours
- Dr. Else Marit Inderberg
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7. Immunotherapy: insights from advanced disease
- Dr. Sara M. Tolaney
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8. Recent advances in the field of non-coding RNAs in cancer
- Prof. George Calin
- Dr. Maitri Shah
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9. How tumor-microenvironment interactions drive or inhibit metastasis
- Prof. Isaac P. Witz
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10. A novel cancer therapy to stimulate oncogenic ERK signalling
- Prof. Reiko Sugiura
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11. MRD-driven multiple myeloma treatment: next step forward
- Prof. Ola Landgren
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12. Germinal centre lymphomas: advances in diagnostic and therapeutic intervention
- Dr. Koorosh Korfi
- Prof. Jude Fitzgibbon
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13. Immunotherapy in lung cancer
- Dr. Mark M. Awad
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14. Preservation of fertility in cancer patients: the impact of chemotherapy
- Prof. Kutluk H. Oktay
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16. Solution proposed to a 2000 year old problem in oncology
- Dr. Michael Retsky
- Clinical Practice
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18. Comprehensive sickle cell care in the era of gene therapy
- Prof. Sophie Lanzkron
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19. Stillbirth: diagnosis, investigation and aftercare
- Prof. Alexander E. P. Heazell
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20. Analyzing the medical relevance of skin care trends
- Prof. Zoe Draelos
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21. Genetic counseling: preconception, prenatal, perinatal
- Prof. Aubrey Milunsky
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22. The past, present & future of ANA testing: history and challenges of ANA
- Prof. Marvin J. Fritzler
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23. The past, present & future of ANA testing: changing bandwidth and future of ANA
- Prof. Marvin J. Fritzler
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25. Mitochondrial diseases: an update
- Dr. Ayesha Saleem
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26. Hemophilia A
- Dr. Snejana Krassova
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29. Recent advances in diagnosis and interventions in ophthalmology
- Dr. Rebecca Kaye
- Prof. Andrew Lotery
- Gastroenterology
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30. Building implantable human liver tissue from pluripotent stem cells
- Prof. David C. Hay
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31. Microbiome therapies to treat gastrointestinal diseases
- Dr. Patricia Bloom
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32. Drug-induced liver injury: importance, epidemiology, and mechanisms of DILI
- Prof. James H. Lewis
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33. Drug-induced liver injury: risk factors and drug development in DILI
- Prof. James H. Lewis
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34. Drug-induced liver injury: HDS, diagnosing, treating and preventing DILI
- Prof. James H. Lewis
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35. An update on the multiple faces of celiac disease
- Prof. Aaron Lerner
- Immunology
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36. The impact of diet on natural killer cell metabolism and anti-tumor function
- Dr. Rebecca Delconte
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37. Next-generation RNA vaccines
- Dr. Anna Blakney
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38. Harnessing the immune system for cancer therapy
- Dr. Raghav Sundar
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39. Rac-enhanced CAR immunotherapy: RaceCAR
- Prof. Denise Montell
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40. Enhancing innate anti-tumour immunity: lessons from virotherapy and STING agonism 1
- Prof. Kevin Harrington
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41. Enhancing innate anti-tumour immunity: lessons from virotherapy and STING agonism 2
- Prof. Kevin Harrington
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42. Drug allergy: new knowledge
- Prof. Mariana C. Castells
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43. Biologics as a treatment strategy in food allergy
- Prof. Sayantani B. Sindher
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44. B cells at the crossroads of autoimmune diseases
- Dr. Xiang Lin
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45. Studying immune responses “one cell at a time”
- Dr. Mir-Farzin Mashreghi
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46. Mathematical modeling in immunology
- Prof. Ruy M. Ribeiro
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47. Therapeutic antibody development
- Prof. Dr. Katja Hanack
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48. Understanding treatment coverage in mass drug administrations
- Dr. Margaret Baker
-
49. The thymus and T cell development: a primer
- Prof. Georg Holländer
- Infectious Diseases
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51. HCV resistance
- Prof. John Dillon
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52. The Global Virus Network: collaboration to address pandemic and regional threats
- Prof. Sten H. Vermund
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53. New concepts in the management of CAP: a focus on severe illness - treatment and therapies
- Prof. Michael S. Niederman
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54. New concepts in the management of CAP: a focus on severe illness - MRSA and MDR pathogens
- Prof. Michael S. Niederman
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55. CRISPR-based suppression drives for vector control
- Prof. Andrea Crisanti
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56. HIV cure: harnessing innate and adaptive strategies
- Prof. Luis Montaner
- Cardiovascular, Metabolism & Nutrition
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57. Cow’s milk allergy: the future
- Dr. Carina Venter
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58. Cow's milk allergy: management
- Dr. Carina Venter
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59. X-linked hypophosphataemia: genetics, diagnosis and management
- Prof. Thomas O. Carpenter
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60. What is new in type 1 diabetes?
- Prof. Åke Lernmark
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61. Current concepts for the management of patients with osteoporosis
- Dr. Michael Lewiecki
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62. Antibodies to control or prevent type 1 diabetes
- Dr. Robert Hilbrands
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63. Peptide YY (PYY) in obesity and diabetes
- Dr. Nigel Irwin
- Microbiology
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64. Vaccines and the fight against antimicrobial resistance 1
- Dr. Annaliesa S. Anderson
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65. Vaccines and the fight against antimicrobial resistance 2
- Dr. Annaliesa S. Anderson
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66. Vaccines as a weapon against antibiotic resistance
- Dr. Pumtiwitt McCarthy
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67. PathoLive: pathogen detection while sequencing
- Dr. Simon Tausch
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69. Successes and failures with vaccines
- Prof. Stanley Plotkin
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70. Immunology, the microbiome and future perspectives
- Prof. Sheena Cruickshank
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71. Impact of the HPV vaccine programme – a changing landscape
- Dr. Kevin Pollock
- Neurology and Neuroscience
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72. Digital health technologies (DHTs) for drug development in CNS diseases
- Dr. Diane T. Stephenson
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74. Huxley’s science fiction: ion channels in pain, pain resilience, and beyond
- Prof. Stephen Waxman
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75. Advances in the diagnosis and treatment of tardive dyskinesia
- Prof. Emeritus Stanley N. Caroff
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76. Cellular therapies for neurological Injuries: bioreactors, potency, and coagulation
- Prof. Charles S. Cox, Jr.
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77. Cardiovascular involvement in Parkinson’s disease
- Dr. David S. Goldstein
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78. Current thinking in pain medicine and some thoughts on back pain
- Dr. Nick Hacking
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79. Bioelectronic medicine: immunomodulation by vagus nerve stimulation
- Prof. Paul Peter Tak
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80. Developments & future directions in the management of chronic pain
- Prof. Simon Haroutounian
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81. Deep Brain Stimulation (DBS) neuromodulation for Schizophrenia
- Prof. Judith Gault
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82. Parkinson’s at 200 years: an update on Parkinson’s research in 2017
- Prof. Patrick A. Lewis
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83. Alzheimer's disease: where are we up to?
- Prof. John Hardy
- Pharmaceutical Sciences
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84. Gene manipulation applications in autoimmune diseases 1
- Dr. Leonardo M. R. Ferreira
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85. Gene manipulation applications in autoimmune diseases 2
- Dr. Leonardo M. R. Ferreira
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86. Gene manipulation applications in autoimmune diseases 3
- Dr. Leonardo M. R. Ferreira
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87. Leveraging healthcare data through artificial intelligence
- Prof. Soma Sengupta
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88. Integration of multi-omics data
- Prof. Ana Conesa
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89. Bone marrow mesenchymal cells 1
- Prof. Arnold I. Caplan
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90. Bone marrow mesenchymal cells 2
- Prof. Arnold I. Caplan
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91. Peptide-drug conjugates as therapeutic modality in drug development 1
- Dr. Syed Faheem Askari Rizvi
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92. Peptide-drug conjugates as therapeutic modality in drug development 2
- Dr. Syed Faheem Askari Rizvi
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93. Pharmacokinetics, -dynamics and dosing considerations in children
- Prof. Dr. Karel Allegaert
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94. Why in vitro permeation test – and not in vivo?
- Prof. Howard Maibach
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95. The future of plasma-derived medicinal products (PDMP)
- Dr. Daniele Focosi
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96. RNA therapeutics: clinical applications and methods of delivery
- Prof. John P. Cooke
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97. Recent advances in the development of gene delivery technologies
- Dr. Takis Athanasopoulos
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98. Preclinical translation of mesenchymal stem cell therapies
- Dr. Peter Childs
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99. Modulating gene expression to treat diseases
- Dr. Navneet Matharu
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100. Accelerating drug discovery with machine learning and AI
- Dr. Olexandr Isayev
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101. Emerging big data in medicinal chemistry: promiscuity analysis as an example
- Prof. Dr. Jürgen Bajorath
- Dr. Ye Hu
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102. Binding kinetics in drug discovery
- Dr. Rumin Zhang
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103. Modeling of antibody-drug conjugate pharmacokinetics
- Dr. Dhaval K. Shah
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104. Antibody engineering: beginnings to bispecifics and beyond
- Dr. Ian Wilkinson
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105. Current challenges in the design of antibody-drug conjugates
- Prof. L. Nathan Tumey
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106. Inorganic nanostructured interfaces for therapeutic delivery
- Prof. Tejal Desai
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107. Latest development in therapy-related autophagy research
- Dr. Vignir Helgason
- Respiratory Diseases
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108. Diagnosis of tuberculosis and drug resistant tuberculosis 1
- Dr. Daniela Cirillo
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109. Diagnosis of tuberculosis and drug resistant tuberculosis 2
- Dr. Daniela Cirillo
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110. Respiratory syncytial virus vaccination
- Prof. Peter Openshaw
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111. Advances in gene therapy for respiratory diseases 1
- Prof. John F. Engelhardt
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112. Advances in gene therapy for respiratory diseases 2
- Prof. John F. Engelhardt
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113. Asthma
- Prof. William Busse
- Dr. Amanda McIntyre
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114. New drugs for asthma
- Prof. Peter Barnes
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115. CompEx asthma: a novel composite exacerbation endpoint
- Dr. Carla A. Da Silva
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116. Updates in chronic obstructive pulmonary disease (COPD)
- Dr. Omar S. Usmani
- Genetics & Genomics
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117. An introduction to genetic association analysis
- Dr. Mark Iles
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118. Moving from GWAS hits to functional variants
- Prof. Steve Humphries
- Archived Lectures *These may not cover the latest advances in the field
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120. AI and big data in drug discovery
- Mr. Ed Addison
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121. Molecular brain imaging (PET) in diseases with dementia
- Prof. Emeritus Karl Herholz
Printable Handouts
Navigable Slide Index
- Introduction
- Nervous system disorders are complex and in urgent need of effective treatments
- Urgent change is needed for successful drug approvals of nervous system disorders
- Incentivizing early intervention is key for brain diseases
- How can Critical Path (C-Path) Institute help?
- C-Path’s public-private partnership model
- Data and regulatory science improve efficiencies in drug development: C-Path
- Impact of data sharing: Regulatory successes
- DHTs in PD clinical trials
- Why DHTs?
- C-Path for Parkinson’s Consortium
- Using digital health tools to measure function in early PD
- For sponsors embarking on a DHT exploratory study: What are the factors to consider?
- Development of novel digital measures for clinical trials in PD
- WATCH-PD: A precedent setting case study
- Regulatory agencies are the guiding light: Patient focused drug development is key
- Importance of the patient voice
- Mapping tasks to symptoms: WATCH-PD qualitative sub-study
- Tackling clinical meaningfulness by listening to patients: WATCH-PD qualitative sub-study
- WATCH-PD qualitative sub-study: Case study 1
- Sharing of data with participants is transformational
- FDA’s role in driving change
- DHTs hold potential across many neurodegenerative diseases
- C-Path: Rare neurodegenerative disease
- Summary
- Acknowledgements and disclosures
- Thank you
Topics Covered
- Digital health technologies
- CNS
- Parkinson’s disease
- WATCH PD
- Critical Path Institute
- Rare neurodegenerative disease
- Public private partnership model
Links
Series:
Categories:
Therapeutic Areas:
External Links
Talk Citation
Stephenson, D.T. (2026, September 30). Digital health technologies (DHTs) for drug development in CNS diseases [Video file]. In The Biomedical & Life Sciences Collection, Henry Stewart Talks. Retrieved October 1, 2026, from https://doi.org/10.69645/NNLR9471.Export Citation (RIS)
Publication History
- Published on September 30, 2026
Financial Disclosures
- Critical Path Institute is supported by the Food and Drug Administration (FDA) of the Department of Health and Human Services (HHS) and is 56% funded by the FDA/HHS, totaling $23,740,424, and 44% funded by non-government source(s), totaling $18,881,611. The contents are those of the author(s) and do not necessarily represent the official views of, nor an endorsement by, FDA/HHS or the U.S. Government.
A selection of talks on Neuroscience
Transcript
Please wait while the transcript is being prepared...
0:00
Hello, everyone.
Thank you so much to
HSTalks for inviting
me to present
a lecture to you today
around our journey advancing
much needed digital
health technologies for
disorders of the nervous system,
particularly
Parkinson's disease.
By way of background,
I'm currently serving as
the Vice President of Neurology
at the Critical Path Institute,
a non-profit organization
located in Tucson,
Arizona, with global outreach.
I'm honored to speak to you
today around a very
exciting topic
considering my background of
more than 30 years
as a neuroscientist.
0:38
We know today so much more about
the brain than we did
when I started my career.
But we have so much
more to learn.
What's really
interesting now is that
different neuronal
systems are affected in
the brain across different
neurodegenerative disorders,
which leads to a
concept, historically,
that each disease has
a whole distinct unique profile
and need for treatment.
We also know that clinical
trials for brain disorders,
especially neurodegenerative
disorders have
the highest failure
rate of all diseases.
Yet the global burden of disease
is accelerating at
an astonishing rate.
We need new methodologies and
especially we need to leverage
innovative technologies
to help us go
from where we are to where
we need to be to halt,
slow down, or even reverse
the chronic progressive
degeneration of these disorders.
1:31
Interestingly, the number
of failures is astonishing.
But if you look at
the clinical trials
that have been carried
out across age-related
degenerative disorders,
most of the trials are carried
out after people are diagnosed,
when we know that the disease
starts decades before,
and these review articles
really tell us that
we need prevention.
We need to get in and
intervene way early,
when the earliest
signs of the disease
happen prior to onset of
symptoms and to get there,
we need to work together to
shape what does it look like
to target prevention because
no one organization can
do this on their own.
That's where the Critical
Path Institute comes in.