Cleveland Clinic Innovations in Cerebrovascular Care 2025
A comprehensive Cleveland Clinic cerebrovascular care program focused on the latest clinical breakthroughs, endovascular advances, venous disorders, intracerebral hemorrhage, stroke prevention, acute stroke treatment, neurocritical care, artificial intelligence, wearable devices, and multidisciplinary strategies to improve outcomes for patients with complex cerebrovascular conditions.
Course Details:
Cleveland Clinic Innovations in Cerebrovascular Care 2025 includes 38 recorded videos and 42 PDF resources, offering a multidisciplinary update for clinicians treating patients with stroke, venous disorders, intracranial hemorrhage, aneurysms, arteriovenous malformations, neurocritical care needs, and complex cerebrovascular disease.
Focus: Cerebral venous anatomy, pulsatile tinnitus, idiopathic intracranial hypertension, venous stenting, cerebral venous sinus thrombosis, CSF-venous fistulas, glymphatics, cerebrovascular disease in women, stroke in the young, artificial intelligence in ischemic stroke, AI in ICH prediction, wearable devices, ICH evacuation, post-ICH anticoagulation, neurocritical care, multimodal monitoring, delayed cerebral ischemia, transcranial doppler, EEG, carotid webs, lipid management, new thrombolytics, medium vessel occlusion, blood pressure lowering in acute stroke, aneurysms, AVMs, AV fistulas, and complex endovascular decision-making.
About This Course
Cerebrovascular care is evolving rapidly, with major advances in imaging, endovascular devices, venous interventions, artificial intelligence, neurocritical care monitoring, acute stroke therapy, and minimally invasive approaches to intracerebral hemorrhage.
Cleveland Clinic Innovations in Cerebrovascular Care 2025 highlights the newest clinical breakthroughs and technological innovations while emphasizing multidisciplinary discussion of the most urgent challenges in patient care.
The course is designed for practitioners across neurosciences and related specialties who want to strengthen diagnostic reasoning, procedural decision-making, evidence interpretation, and collaborative care for patients with complex cerebrovascular conditions.
Why Choose This Course
- Cleveland Clinic 2025 course focused on innovations in cerebrovascular care
- Includes 38 recorded videos and 42 PDF resources
- Designed for emergency medicine physicians, fellows, neurointensivists, neurointerventionalists, neurologists, neuroradiologists, neurosurgeons, nurses, NPs, PAs, primary care physicians, and residents
- Reviews venous anatomy, venous disorders, IIH, pulsatile tinnitus, cerebral venous sinus thrombosis, and venous stenting
- Covers artificial intelligence, wearable devices, neurocritical care technology, multimodal monitoring, TCD, EEG, and innovation strategy
- Includes acute stroke treatment, new thrombolytics, medium vessel occlusion debates, blood pressure strategies, ICH evacuation, and anticoagulation after ICH
- Provides complex case-based discussions in aneurysms, AVMs, AV fistulas, stroke prevention, neurocritical care, and endovascular decision-making
Core Learning Areas
Venous Disorders
Cerebral venous anatomy, pulsatile tinnitus, IIH, venous stenting, CSF-venous fistulas, cerebral venous sinus thrombosis, thrombectomy timing, and glymphatics.
Stroke & ICH Care
Acute ischemic stroke, new thrombolytics, medium vessel occlusion, intracerebral hemorrhage, BP control, ICH prediction, ICH evacuation, and anticoagulation decisions.
AI & Technology
Artificial intelligence in ischemic stroke and ICH prediction, wearable devices, innovation strategy, neurocritical care technology, multimodal monitoring, TCD, and EEG.
Complex Neurovascular Cases
Aneurysms, AVMs, AV fistulas, carotid webs, stroke prevention, lipid management, women’s cerebrovascular disease, stroke in the young, and endovascular decision-making.
Complete Curriculum
- Latest clinical breakthroughs in cerebrovascular medicine
- Technological innovations changing stroke and neurovascular care
- Multidisciplinary strategies for complex cerebrovascular patients
- Evidence-based updates from major cerebrovascular meetings
- Case-based learning in aneurysms, AVMs, stroke, and neurocritical care
- New devices, procedures, and monitoring strategies
- Practical updates for improving patient outcomes across care settings
- Cerebral venous anatomy and its clinical relevance
- Venous anatomy implications for venous disorders and stroke
- Clinical recognition of venous cerebrovascular disease
- Venous flow patterns and pathophysiology
- How venous anatomy affects diagnostic decision-making
- Imaging considerations in venous disease
- Practical implications for multidisciplinary cerebrovascular care
- Venous etiology and treatment of pulsatile tinnitus
- Idiopathic intracranial hypertension and venous disease
- Debate: venous stenting versus medical therapy for IIH
- Current and new devices in venous sinus stenting
- Patient selection for venous interventions
- Risks, benefits, and limitations of venous stenting
- Practical management of complex venous stenosis cases
- Approaches to cerebral venous sinus thrombosis
- Medical management strategies for CVST
- Debate: timing of venous thrombectomy
- Early endovascular thrombectomy considerations
- Medical management first versus thrombectomy later
- Clinical factors influencing intervention timing
- Evidence-based decision-making in severe venous thrombosis
- How to approach CSF-venous fistulas
- Clinical presentation and diagnostic challenges
- Imaging and evaluation strategies
- Glymphatics in cerebrovascular pathologies
- Emerging understanding of brain fluid dynamics
- Relationship between venous systems and cerebrovascular disease
- Practical clinical implications for neurovascular specialists
- Case-based discussion of complex aneurysms
- Arteriovenous malformation management challenges
- Arteriovenous fistulas and neurovascular decision-making
- Endovascular techniques and device selection
- Surgical, medical, and interventional considerations
- Complication recognition and management strategies
- Multidisciplinary planning for high-risk neurovascular lesions
- Latest updates from major cerebrovascular conferences
- Key trial results and evidence summaries
- Stroke care developments from WSO, ISC, and ESOC
- Interpretation of new clinical data
- Practical implications for daily clinical practice
- Emerging controversies in cerebrovascular medicine
- How new evidence may affect patient selection and treatment pathways
- Cerebrovascular diseases in women
- Sex-specific and gender-related considerations in stroke care
- Stroke in the young
- Risk factors and diagnostic considerations in younger patients
- Clinical patterns that require special attention
- Prevention and treatment strategies for special populations
- Case-based approach to complex demographic-specific stroke care
- Middle meningeal artery as a new target for endovascular intervention
- Emerging neurointerventional strategies
- Device and technique considerations
- Patient selection for newer endovascular approaches
- Clinical and imaging criteria for intervention
- Potential benefits and limitations of new targets
- Future directions in cerebrovascular endovascular care
- AI developments in ischemic stroke
- AI-based models in stroke detection and workflow
- AI in intracerebral hemorrhage prediction and beyond
- Potential use of predictive analytics in neurovascular care
- Clinical integration of AI-based tools
- Benefits, limitations, and safety considerations
- Future role of AI in improving cerebrovascular outcomes
- Navigating ECMO in cerebrovascular and neurocritical care contexts
- Code ICH as a novel approach to intracerebral hemorrhage care
- Minimally invasive intracerebral hemorrhage evacuation
- Issues supporting ICH evacuation strategies
- Rapid stabilization and coordinated response models
- Evidence-based discussion of ICH treatment pathways
- Clinical workflow improvement for hemorrhagic stroke care
- Aggressive versus conservative anticoagulation after ICH
- Atrial fibrillation management after intracerebral hemorrhage
- Balancing recurrent stroke risk and bleeding risk
- Timing and strategy for restarting anticoagulation
- Risk stratification and patient selection
- Clinical debate and practical decision-making frameworks
- Multidisciplinary management of complex post-ICH patients
- Wearable devices in stroke care
- Technology for monitoring recovery and outcomes
- Stroke recovery rising to prime time
- Patient-centered recovery tracking and rehabilitation integration
- Use of digital tools to improve cerebrovascular outcomes
- Opportunities and limitations of wearable technology
- Future directions in post-stroke monitoring and recovery support
- How to approach innovation in clinical care
- Evaluating new technologies in cerebrovascular practice
- Balancing innovation with evidence and patient safety
- Implementation challenges in real-world health systems
- Clinical workflow integration of new tools
- Team-based evaluation of devices and digital platforms
- Responsible adoption of emerging cerebrovascular innovations
- Rapid and stable blood pressure control in ICH
- New paradigms in hemorrhagic stroke management
- Aggressive versus conservative BP lowering in acute stroke
- Clinical considerations for BP targets
- Balancing hematoma expansion prevention and perfusion risk
- Protocols for safe and effective BP management
- Decision-making in complex acute stroke scenarios
- Neurophysiological early detection of delayed cerebral ischemia
- Monitoring in subarachnoid hemorrhage
- Transcranial doppler and EEG applications
- Standard care versus multimodal monitoring debates
- New devices in neurocritical care
- Improving detection and response to cerebral ischemia
- Practical NICU management of high-risk cerebrovascular patients
- Neuro rapid response team concepts
- Future of critical care response focused on neurologic patients
- Complex dynamics of NICU management
- Case-based neurocritical care decision-making
- Team-based response for neurologic deterioration
- Coordination of intensive care, neurology, neurosurgery, and interventional teams
- Improving systems of care for high-risk cerebrovascular patients
- Cervical carotid webs and stroke prevention
- Medical therapy versus intervention for carotid webs
- Optimal use of interventional therapies in clinical practice
- Novel agents for lipid management
- Challenging cases in stroke prevention
- Risk reduction strategies for recurrent cerebrovascular events
- Evidence-based prevention planning for complex patients
- Novel treatments for acute stroke therapy
- New thrombolytics and evolving treatment pathways
- Evidence updates in acute ischemic stroke management
- Patient selection for thrombolytic therapy
- Time-sensitive decision-making in acute stroke
- Balancing benefit, risk, and eligibility criteria
- Practical integration of new acute stroke therapies into clinical workflows
- Medical management versus endovascular thrombectomy
- Medium vessel occlusion and distal vessel occlusion in acute stroke
- Endovascular versus medical therapy debates
- Selection criteria for intervention
- Clinical and imaging factors guiding treatment decisions
- Risks and benefits of thrombectomy in smaller vessels
- Case-based decision-making in acute stroke intervention
- Panel discussion on acute stroke decision-making
- Complex case scenarios in stroke treatment
- Choosing medical, thrombolytic, and endovascular strategies
- Blood pressure management in acute stroke
- Clinical controversy and evidence interpretation
- Multidisciplinary emergency stroke workflows
- Practical takeaways for improving acute stroke outcomes
Learning Objectives
- Discuss the relevance of venous anatomy and its implications for venous disorders and stroke
- Debate the role of venous stenting versus medical therapy in patients with idiopathic intracranial hypertension
- Critically review approaches to treating cerebral venous sinus thrombosis, including the timing and role of thrombectomy versus medical therapy
- Review key advances in cerebrovascular care, including new technologies and artificial intelligence, and describe their clinical applications
- Summarize the latest updates and trial results from major cerebrovascular conferences
- Explain key issues supporting minimally invasive intracerebral hemorrhage evacuation
- Debate aggressive versus conservative anticoagulation for atrial fibrillation after intracerebral hemorrhage
- Describe how AI-based models and wearable devices may improve cerebrovascular outcomes
- Review neurocritical care technologies including multimodal monitoring, transcranial doppler, and EEG for delayed cerebral ischemia
- Evaluate medical versus interventional therapies for cervical carotid webs and define their optimal use in practice
- Compare endovascular versus medical therapy for medium vessel occlusion and aggressive versus permissive BP-lowering strategies in acute stroke
- Analyze complex cases involving aneurysms, AVMs, AV fistulas, atherosclerotic disease, stroke, and other cerebrovascular disorders
Who Should Take This Course
This course is designed for emergency medicine physicians, fellows, neurointensivists, neurointerventionalists, neurologists, neuroradiologists, neurosurgeons, nurse practitioners, nurses, physician assistants, primary care physicians, and residents who treat cerebrovascular patients.
It is especially useful for clinicians involved in stroke care, neurocritical care, neurointervention, neurosurgery, cerebrovascular imaging, acute stroke workflows, venous disease, aneurysm care, ICH management, and multidisciplinary neurovascular treatment planning.
Delivery & Access
38 Videos
Recorded cerebrovascular care sessions covering stroke, venous disease, neurocritical care, and innovation.
42 PDFs
Supporting PDF materials included for review, study, and clinical reference.
3.42 GB
Complete recorded course package with video and PDF learning materials.
Support
Course Highlights
Advanced Stroke Care
Covers acute ischemic stroke, ICH, new thrombolytics, medium vessel occlusion, blood pressure strategies, and stroke prevention.
Neurointervention Focus
Includes venous stenting, thrombectomy debates, aneurysm and AVM cases, carotid webs, new devices, and endovascular decision-making.
Innovation & Technology
Reviews AI in stroke and ICH prediction, wearable devices, multimodal monitoring, TCD, EEG, and neurocritical care innovation.
FAQ
Who is this course best suited for?
This course is best suited for emergency medicine physicians, fellows, neurointensivists, neurointerventionalists, neurologists, neuroradiologists, neurosurgeons, nurse practitioners, nurses, physician assistants, primary care physicians, and residents who treat cerebrovascular patients.
What is included in this course?
The course includes 38 recorded videos and 42 PDF resources, with a total package size of 3.42 GB.
What topics are covered?
Topics include cerebral venous anatomy, pulsatile tinnitus, IIH, venous stenting, cerebral venous sinus thrombosis, CSF-venous fistulas, glymphatics, stroke in women, stroke in the young, AI in ischemic stroke, AI in ICH prediction, wearable devices, ICH evacuation, post-ICH anticoagulation, neurocritical care, delayed cerebral ischemia, TCD, EEG, carotid webs, lipid management, new thrombolytics, medium vessel occlusion, blood pressure lowering, aneurysms, AVMs, AV fistulas, and endovascular treatment.
Does this course cover venous cerebrovascular disorders?
Yes. The course includes cerebral venous anatomy, pulsatile tinnitus, idiopathic intracranial hypertension, venous stenting, cerebral venous sinus thrombosis, thrombectomy timing, CSF-venous fistulas, and glymphatics.
Does this course cover artificial intelligence in stroke care?
Yes. The course covers AI developments in ischemic stroke, AI in ICH prediction, wearable devices, innovation strategy, and the potential role of technology in improving cerebrovascular outcomes.
Does this course cover acute stroke treatment?
Yes. The course includes novel treatments and new thrombolytics for acute stroke therapy, medium and distal vessel occlusion, endovascular versus medical management, and blood pressure strategies in acute stroke.
Is this a recorded course?
Yes. This product is provided as recorded course access so you can review the material at your own pace.
Does this course include CME or a certificate?
No. CME credits and certificates are not included with this course package.
Who can I contact for support?
You can contact support at [email protected].








Dr. Anya Sharma, Vascular Neurologist –
“The ability to stream these recordings directly from Google Drive was a game-changer. Dr. Chen’s lecture on wake-up stroke protocols was a masterclass. I could pause and rewind the complex sections, which helped me immediately update our department’s imaging decision tree.”
Dr. Ben Carter, Neurointerventional Fellow –
“As a fellow with a hectic call schedule, I can’t travel to every conference. Having lifetime access to this course via Google Drive is the next best thing. Dr. Vance’s advanced thrombectomy techniques, which I reviewed repeatedly, helped me navigate a challenging distal occlusion just last week.”
Dr. Kenji Tanaka, Neurosurgeon –
“The surgical videos for complex aneurysm clipping by Dr. Petro are unparalleled. Downloading the high-definition recordings from the Drive to my tablet allowed me to study the anatomy and technique at my own pace, which has been invaluable for surgical planning.”
Dr. Chloe Davis, Neurointensivist –
“Dr. Ambani’s module on post-procedure neurocritical care is a must-watch. Having the recordings on Google Drive allowed me to take detailed notes on their refined blood pressure management protocols, which have directly improved our ICU outcomes.”
Dr. David Chen, Rural Neurologist –
“This course bridges the gap for those of us in community practice. The Google Drive access is straightforward and reliable. Dr. Foster’s lecture on transfer decision-making is now a resource I revisit frequently for complex consultations.”
Dr. Olivia White, Neurosurgical Resident –
“The lifetime Google Drive access is a resident’s dream. I can revisit Dr. Kumar’s lectures on endovascular complications anytime I’m prepping for a complex case. It’s like having a senior attending on demand.”
Dr. Marcus Jones, Emergency Medicine –
“Dr. Lee’s clear, decisive frameworks for LVO identification in the ED have made me a more confident physician. I downloaded the audio tracks to my phone from the Drive and listened during my commute. Incredibly practical and convenient.”
Dr. Elena Vega, International Clinician (Spain) –
“Accessing this world-class education from Madrid was effortless via Google Drive. Despite the time difference, I had full access. Dr. Vance’s technical insights are already influencing our approach to distal occlusions.”
Dr. Rahul Patel, Neurointerventionalist –
“The video quality of the recordings on Drive is exceptional. Watching Dr. Petro’s hands-on device manipulation in ultra-clear detail revealed subtleties I had never considered. This course pays for itself in improved patient care.”
Dr. Sarah Cohen, Academic Researcher –
“For a clinical researcher like myself, Dr. Ambani’s data-driven approach to neuroprotection trials was critical. Having the recorded lectures on my Drive allows me to accurately cite the latest evidence and clinical context in my grant proposals.”
Dr. Leo Garcia, Chief of Neurology –
“Investing in this course for my entire team has been our best decision this year. Using the shared Google Drive folder, we all learn the same standardized, top-tier protocols from Dr. Chen and colleagues. It elevates our entire department’s standard of care.”
Dr. Hannah Li, Neurohospitalist –
“The flexibility of the recorded format, accessible from any device via Drive, is perfect for a busy hospitalist. I could pause Dr. Foster’s lecture on stroke mimics to handle a page, then return without missing a beat.”
Dr. Caleb Brooks, PA-C in Neurosurgery –
“This course is not just for physicians. The modules on post-op management and complication recognition are perfectly tailored for advanced practice providers. Dr. Kumar’s clear teaching style makes complex topics accessible. The Drive access is very user-friendly.”
Dr. Irene Foster, Rehabilitation Physician –
“Understanding the acute interventions, thanks to Dr. Lee’s brilliant explanations in the recordings, gives me profound insight into my patients’ potential. I can now create more targeted and realistic rehab plans from day one.”
Dr. Thomas Wright, Hospital Administrator –
“From a non-clinical perspective, the course provides a compelling blueprint for excellence. The QI frameworks are worth their weight in gold. The easy access via Google Drive meant our clinical leads could engage with the material without technical hurdles.”
Dr. Alex Zhou, Seasoned Attending –
“After 25 years in practice, it takes a lot to impress me. This course did. The honest discussion of complications and bail-out techniques by Dr. Vance was refreshing and critically important. The recorded format allowed me to digest it all at my own pace.”