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RecruitingNCT04641286

Clinical Outcome Modelling of Rapid Dynamics in Acute Stroke

Clinical Outcome Modelling of Rapid Dynamics in Acute Stroke With Joint-detail, Remote, Body Motion Analysis

Status
Recruiting
Phase
Study type
Observational
Enrollment
8,000 (estimated)
Sponsor
King's College Hospital NHS Trust · Academic / Other
Sex
All
Age
18 Years
Healthy volunteers
Not accepted

Summary

Stroke - still the second commonest cause of death and principal cause of adult neurological disability in the Western World - is characterised by rapid changes over time and marked variability in outcomes. A patient may improve or deteriorate over minutes, and the resultant disability may range from an obvious complete paralysis to subtle, task dependent incoordination of a single limb. Unlike many other neurological disorders, stroke can be exquisitely sensitive to prompt and intelligently tailored treatment, rewarding innovation in the delivery of care with real-world, tangible impact on patient outcomes. Optimal treatment therefore requires both detailed characterisation of the patient's clinical picture and its pattern of change over time. Arguably the most important aspect of the patient's clinical picture -- body movement -- remains remarkably poorly documented: quantified only subjectively and at infrequent intervals in the patient's clinical evolution. The combination of artificial intelligence with high-performance computing now enables automatic extraction of a patient's skeletal frame resolved down to major joints, like that of a stick-man, to be delivered simply, safely, and inexpensively, without the use of cumbersome body worn markers. Central to this technology is patient privacy, with the skeletal frame extracted in real time, ensuring no video data, from which patients can be identified, to be stored or transmitted by the device. Our motion categorisation system -- MoCat -- will be used to study the rapid dynamics of acute stroke, seamlessly embedded in the clinical stream. By quantifying the change in motor deficit over time we shall examine the relationship between these trajectories with clinical outcomes and develop predictive models that can support clinical management and optimise service delivery.

Conditions

Interventions

TypeNameDescription
OTHERBody motion categorisationAll patients will receive passive motion categorisation monitoring

Timeline

Start date
2021-07-07
Primary completion
2028-02-01
Completion
2028-02-01
First posted
2020-11-23
Last updated
2024-10-24

Locations

1 site across 1 country: United Kingdom

Source: ClinicalTrials.gov record NCT04641286. Inclusion in this directory is not an endorsement.

Clinical Outcome Modelling of Rapid Dynamics in Acute Stroke (NCT04641286) · Clinical Trials Directory