Literature DB >> 25565640

Individual-Specific, Beat-to-beat Trending of Significant Human Blood Loss: The Compensatory Reserve.

Victor A Convertino1, Jeffrey T Howard, Carmen Hinojosa-Laborde, Sylvain Cardin, Paul Batchelder, Jane Mulligan, Gregory Z Grudic, Steven L Moulton, David B MacLeod.   

Abstract

Current monitoring technologies are unable to detect early, compensatory changes that are associated with significant blood loss. We previously introduced a novel algorithm to calculate the Compensatory Reserve Index (CRI) based on the analysis of arterial waveform features obtained from photoplethysmogram recordings. In the present study, we hypothesized that the CRI would provide greater sensitivity and specificity to detect blood loss compared with traditional vital signs and other hemodynamic measures. Continuous noninvasive vital sign waveform data, including CRI, photoplethysmogram, heart rate, blood pressures, SpO2, cardiac output, and stroke volume, were analyzed from 20 subjects before, during, and after an average controlled voluntary hemorrhage of ∼1.2 L of blood. Compensatory Reserve Index decreased by 33% in a linear fashion across progressive blood volume loss, with no clinically significant alterations in vital signs. The receiver operating characteristic area under the curve for the CRI was 0.90, with a sensitivity of 0.80 and specificity of 0.76. In comparison, blood pressures, heart rate, SpO2, cardiac output, and stroke volume had significantly lower receiver operating characteristic area under the curve values and specificities for detecting the same volume of blood loss. Consistent with our hypothesis, CRI detected blood loss and restoration with significantly greater specificity than did other traditional physiologic measures. Single measurement of CRI may enable more accurate triage, whereas CRI monitoring may allow for earlier detection of casualty deterioration.

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Year:  2015        PMID: 25565640     DOI: 10.1097/SHK.0000000000000323

Source DB:  PubMed          Journal:  Shock        ISSN: 1073-2322            Impact factor:   3.454


  14 in total

Review 1.  Physiological comparison of hemorrhagic shock and V˙ O2max: A conceptual framework for defining the limitation of oxygen delivery.

Authors:  Victor A Convertino; Kristen R Lye; Natalie J Koons; Michael J Joyner
Journal:  Exp Biol Med (Maywood)       Date:  2019-05-01

2.  Comparison of compensatory reserve during lower-body negative pressure and hemorrhage in nonhuman primates.

Authors:  Carmen Hinojosa-Laborde; Jeffrey T Howard; Jane Mulligan; Greg Z Grudic; Victor A Convertino
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2016-03-30       Impact factor: 3.619

3.  Measurement of compensatory reserve predicts racial differences in tolerance to simulated hemorrhage in women.

Authors:  Megan M Wenner; Kumba Adia Hinds; Jeffrey T Howard; Corinne D Nawn; Nina S Stachenfeld; Victor A Convertino
Journal:  J Trauma Acute Care Surg       Date:  2018-07       Impact factor: 3.313

4.  Integrated Compensatory Responses in a Human Model of Hemorrhage.

Authors:  Victor A Convertino; Carmen Hinojosa-Laborde; Gary W Muniz; Robert Carter
Journal:  J Vis Exp       Date:  2016-11-20       Impact factor: 1.355

5.  The Effect of Passive Heat Stress and Exercise-Induced Dehydration on the Compensatory Reserve During Simulated Hemorrhage.

Authors:  Daniel Gagnon; Zachary J Schlader; Amy Adams; Eric Rivas; Jane Mulligan; Gregory Z Grudic; Victor A Convertino; Jeffrey T Howard; Craig G Crandall
Journal:  Shock       Date:  2016-09       Impact factor: 3.454

6.  Arterial waveform morphomics during hemorrhagic shock.

Authors:  Philip J Wasicek; William A Teeter; Shiming Yang; Peter Hu; William B Gamble; Samuel M Galvagno; Melanie R Hoehn; Thomas M Scalea; Jonathan J Morrison
Journal:  Eur J Trauma Emerg Surg       Date:  2019-04-23       Impact factor: 3.693

7.  State-of-the-art monitoring in treatment of dengue shock syndrome: a case series.

Authors:  Steven L Moulton; Jane Mulligan; Anon Srikiatkhachorn; Siripen Kalayanarooj; Greg Z Grudic; Sharone Green; Robert V Gibbons; Gary W Muniz; Carmen Hinojosa-Laborde; Alan L Rothman; Stephen J Thomas; Victor A Convertino
Journal:  J Med Case Rep       Date:  2016-08-24

8.  Using support vector machines on photoplethysmographic signals to discriminate between hypovolemia and euvolemia.

Authors:  Natasa Reljin; Gary Zimmer; Yelena Malyuta; Kirk Shelley; Yitzhak Mendelson; David J Blehar; Chad E Darling; Ki H Chon
Journal:  PLoS One       Date:  2018-03-29       Impact factor: 3.240

Review 9.  Wearable Sensors Incorporating Compensatory Reserve Measurement for Advancing Physiological Monitoring in Critically Injured Trauma Patients.

Authors:  Victor A Convertino; Steven G Schauer; Erik K Weitzel; Sylvain Cardin; Mark E Stackle; Michael J Talley; Michael N Sawka; Omer T Inan
Journal:  Sensors (Basel)       Date:  2020-11-10       Impact factor: 3.576

10.  Non-linear Heart Rate and Blood Pressure Interaction in Response to Lower-Body Negative Pressure.

Authors:  Ajay K Verma; Da Xu; Amanmeet Garg; Anita T Cote; Nandu Goswami; Andrew P Blaber; Kouhyar Tavakolian
Journal:  Front Physiol       Date:  2017-10-24       Impact factor: 4.566

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