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Baxter Healthcare arterial blood pressure abp
PSI in relation to perfusion and intracranial compliance. These GAMs illustrate the potentially non-linear relationships between PSI and <t>ABP,</t> ICP, AmpICP, and RAP. Each analysis was performed within physiologically relevant ranges: PSI 1–4, ABP 40–120 mmHg, ICP 0–40 mmHg, AmpICP 0–15 mmHg, and RAP 0.0 to + 1.0. AmpICP = peak-to-peak ICP pulse amplitude. ABP <t>=</t> <t>Arterial</t> blood pressure. GAM = Generalised additive models. ICP = Intracranial pressure. RAP = the correlation (r) between ICP amplitude and ICP
Arterial Blood Pressure Abp, supplied by Baxter Healthcare, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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1) Product Images from "Intracranial compliance monitoring using pulse shape index in traumatic brain injury: relation to cerebral physiology and clinical outcome"

Article Title: Intracranial compliance monitoring using pulse shape index in traumatic brain injury: relation to cerebral physiology and clinical outcome

Journal: Critical Care

doi: 10.1186/s13054-026-06071-0

PSI in relation to perfusion and intracranial compliance. These GAMs illustrate the potentially non-linear relationships between PSI and ABP, ICP, AmpICP, and RAP. Each analysis was performed within physiologically relevant ranges: PSI 1–4, ABP 40–120 mmHg, ICP 0–40 mmHg, AmpICP 0–15 mmHg, and RAP 0.0 to + 1.0. AmpICP = peak-to-peak ICP pulse amplitude. ABP = Arterial blood pressure. GAM = Generalised additive models. ICP = Intracranial pressure. RAP = the correlation (r) between ICP amplitude and ICP
Figure Legend Snippet: PSI in relation to perfusion and intracranial compliance. These GAMs illustrate the potentially non-linear relationships between PSI and ABP, ICP, AmpICP, and RAP. Each analysis was performed within physiologically relevant ranges: PSI 1–4, ABP 40–120 mmHg, ICP 0–40 mmHg, AmpICP 0–15 mmHg, and RAP 0.0 to + 1.0. AmpICP = peak-to-peak ICP pulse amplitude. ABP = Arterial blood pressure. GAM = Generalised additive models. ICP = Intracranial pressure. RAP = the correlation (r) between ICP amplitude and ICP

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PSI in relation to perfusion and intracranial compliance. These GAMs illustrate the potentially non-linear relationships between PSI and <t>ABP,</t> ICP, AmpICP, and RAP. Each analysis was performed within physiologically relevant ranges: PSI 1–4, ABP 40–120 mmHg, ICP 0–40 mmHg, AmpICP 0–15 mmHg, and RAP 0.0 to + 1.0. AmpICP = peak-to-peak ICP pulse amplitude. ABP <t>=</t> <t>Arterial</t> blood pressure. GAM = Generalised additive models. ICP = Intracranial pressure. RAP = the correlation (r) between ICP amplitude and ICP
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PSI in relation to perfusion and intracranial compliance. These GAMs illustrate the potentially non-linear relationships between PSI and ABP, ICP, AmpICP, and RAP. Each analysis was performed within physiologically relevant ranges: PSI 1–4, ABP 40–120 mmHg, ICP 0–40 mmHg, AmpICP 0–15 mmHg, and RAP 0.0 to + 1.0. AmpICP = peak-to-peak ICP pulse amplitude. ABP = Arterial blood pressure. GAM = Generalised additive models. ICP = Intracranial pressure. RAP = the correlation (r) between ICP amplitude and ICP

Journal: Critical Care

Article Title: Intracranial compliance monitoring using pulse shape index in traumatic brain injury: relation to cerebral physiology and clinical outcome

doi: 10.1186/s13054-026-06071-0

Figure Lengend Snippet: PSI in relation to perfusion and intracranial compliance. These GAMs illustrate the potentially non-linear relationships between PSI and ABP, ICP, AmpICP, and RAP. Each analysis was performed within physiologically relevant ranges: PSI 1–4, ABP 40–120 mmHg, ICP 0–40 mmHg, AmpICP 0–15 mmHg, and RAP 0.0 to + 1.0. AmpICP = peak-to-peak ICP pulse amplitude. ABP = Arterial blood pressure. GAM = Generalised additive models. ICP = Intracranial pressure. RAP = the correlation (r) between ICP amplitude and ICP

Article Snippet: Arterial blood pressure (ABP) was recorded from the radial or femoral artery (Baxter Healthcare, Deerfield, Illinois), with zero calibration at the level of the heart (2002–2015) and the tragus (2015–2022).

Techniques: