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2 clinical studies listed.
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Tundra lists 2 Near-Infrared Spectroscopy clinical trials. Each listing includes eligibility criteria, study locations, and direct links to research sites in the Tundra directory.
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NCT07720505
COLOFLOW: Laser Speckle Contrast Imaging Versus Near-infrared Fluorescence Imaging With Indocyanine Green
COLOFLOW is a prospective observational study investigating whether Laser Speckle Contrast Imaging (LSCI), a dye-free and objective perfusion imaging technique, corresponds with the currently used subjective assessment of indocyanine green (ICG) fluorescence during colorectal surgery. In approximately 30 patients undergoing elective colon or rectal resection with primary anastomosis, both imaging modalities will be performed intraoperatively. The surgeons will base their clinical decisions solely on standard ICG fluorescence imaging, while LSCI measurements are collected for research purposes and do not influence treatment. Postoperatively, quantitative ICG parameters will be analysed and compared with LSCI perfusion maps to determine whether objective ICG analysis improves agreement with LSCI over subjective interpretation alone. In addition, the study will evaluate the feasibility of using the PerfusiX-IGS LSCI system during open colorectal surgery and describe postoperative outcomes, including anastomotic leakage. The ultimate goal is to contribute to more objective and standardized perfusion assessment during colorectal surgery
Gender: All
Ages: 18 Years - Any
Updated: 2026-07-22
NCT06190210
Predictive Value of Neurovascular Coupling in Infants With COngenital Heart Disease
Infants with congenital heart disease (CHD) are at increased risk for delayed neurodevelopment. Multiple etiological explanations have been proposed, as there seems to be a multifactorial interplay of both prenatal and perioperative factors. The main goal of this research project is to focus on peri-operative physiological risk factors in infants with CHD which impair functional brain maturation or elicit brain injury, and subsequently creating a risk model and guidelines for standardized developmental follow-up in this population. PART 1: investigation of cerebral autoregulation and neurovascular coupling The homeostasis in cerebral blood supply regardless of perfusion pressure, is called Cerebral autoregulation (CAR). Neurovascular coupling (NVC) is the phenomenon in which blood supply increases as a result of increased brain activity in a specific area. At different times in the perioperative phase, these regulatory mechanisms will be estimated based on Electroencephalography (EEG) and Near Infrared Spectroscopy (NIRS), in addition to hemodynamic parameters. PART 2: cell-free DNA (cfDNA) extraction. Non-invasive monitoring of neuronal degeneration can be performed using cfDNA extraction techniques. Serial measurements of neuronal cfDNA will be used to determine whether and when this neuronal damage has occurred. PART 3: Prognosis and outcome. These risk factors, supplemented with demographic factors and medications administered, will be combined in an Artificial Intelligence-driven model, thus establishing a risk model for neurodevelopmental outcome. This model will be compared to the current standard-of-care, both structural imaging (ultrasound and MRI) and a clinical developmental assessment at 9 and 24 months of age (Bayley Scales of Infant Development-III).
Gender: All
Ages: Any - 6 Months
Updated: 2025-04-02
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