#ProtectiveHemodynamics
June 14, 2025 at 2:49 PM
L’ischemia degli arti nello shock con vasopressori viene spesso attribuita alla dose. Questa review rilegge la SPG come trombosi microvascolare tromboinfiammatoria, tipicamente con DIC e shock liver. #ProtectiveHemodynamics #CriticalCare
https://doi.org/10.1093/ehjcvp/pvag078
pendingpublications
Pending Publication
doi.org
September 20, 2026 at 8:31 AM
CENSER is often remembered as an early-norepinephrine trial. More useful today: both groups aimed for MAP ≥65; what changed was when vasoactive support entered resuscitation. Same target, different sequence. Timing is part of hemodynamic strategy. #ProtectiveHemodynamics
https://doi.org/10.1164/rccm
Error: DOI Not Found
doi.org
September 24, 2026 at 5:01 PM
CENSER viene ricordato come il trial della noradrenalina precoce. Più utile oggi: entrambi i gruppi miravano a PAM ≥65; cambiava quando il supporto vasoattivo entrava nella rianimazione. Stesso target, sequenza diversa. Il timing è parte della strategia. #ProtectiveHemodynamics
https://doi.org/10.11
DOI Name 10.11 Values
doi.org
September 24, 2026 at 6:31 PM
Il punto non è sostituire la PAM con un target microcircolatorio. È smettere di chiedere a una sola variabile di certificare la perfusione: pressione, flusso e segnali tissutali possono divergere. La coerenza emodinamica va verificata, non presunta. #ProtectiveHemodynamics
https://doi.org/10.1186/s1
Error: DOI Not Found
doi.org
September 24, 2026 at 8:31 AM
ANDROMEDA-SHOCK va riletto dopo ANDROMEDA-SHOCK-2. L’idea chiave non era “CRT batte lattato”: un endpoint rapido può dirci quando smettere di aumentare fluidi e vasoattivi. La rianimazione ha bisogno di stopping rules, non solo target. #ProtectiveHemodynamics
https://doi.org/10.1001/jama.2019.0071
doi.org
September 22, 2026 at 1:31 PM
ANDROMEDA-SHOCK is worth rereading after ANDROMEDA-SHOCK-2. Its key idea was not “CRT beats lactate”: a fast endpoint can tell us when to stop escalating fluids and vasoactives. Resuscitation needs stopping rules, not only targets. #ProtectiveHemodynamics
https://doi.org/10.1001/jama.2019.0071
doi.org
September 22, 2026 at 12:01 PM
Pressure is not flow. This review recasts circulation around cardiac energy, mean systemic pressure and inlet impedance: pressure reports system state; stroke-volume response tests whether an intervention actually increases flow. #ProtectiveHemodynamics
https://doi.org/10.1111/anae.70238
Just a moment...
doi.org
September 15, 2026 at 7:01 AM
Una pressione più alta e la terapia per ottenerla non sono la stessa esposizione. La nostra metanalisi 2024 favoriva target inferiori sulla mortalità, soprattutto in ICU. Il target deve giustificare la terapia. #ProtectiveHemodynamics

https://pubmed.ncbi.nlm.nih.gov/38656245/
pubmed.ncbi.nlm.nih.gov
pubmed.ncbi.nlm.nih.gov
September 10, 2026 at 6:31 PM
The point is not to replace MAP with a microcirculatory target. It is to stop asking one variable to certify perfusion: pressure, flow and tissue signals can disagree. Hemodynamic coherence must be tested, not assumed. #ProtectiveHemodynamics
https://doi.org/10.1186/s13054-026-06353-7
Beyond macrocirculatory targets: a multimodal framework for microcirculatory and organ perfusion monitoring in sepsis - Critical Care
Background Microcirculatory dysfunction may persist despite restoration of conventional macrocirculatory targets in sepsis, reflecting loss of hemodynamic coherence. This review synthesizes current microcirculatory monitoring approaches according to the physiological information they provide and examines how complementary modalities may be integrated to characterize persistent or regional tissue hypoperfusion. Main body A narrative review of PubMed-indexed literature was conducted, with emphasis on bedside peripheral perfusion assessment, tissue oxygenation and superficial perfusion imaging, direct microvascular visualization, and organ- or tissue-specific monitoring. Recent studies were prioritized together with landmark methodological and validation studies. Available techniques interrogate distinct but overlapping components of the circulation. Bedside peripheral measures provide rapid information on skin reperfusion and vascular tone; spectroscopic and optical techniques characterize tissue oxygenation, reactivity, and spatial perfusion heterogeneity; direct microvascular imaging enables assessment of microvascular density and flow; and organ-specific approaches provide information on renal, cerebral, or retinal perfusion and oxygenation. Discordance between these domains may persist despite improvement in blood pressure or cardiac output, supporting serial multimodal rather than single-variable interpretation. However, substantial heterogeneity in acquisition protocols, measurement sites, devices, analytical methods, and proposed thresholds limits comparability and clinical implementation. Conclusion Microcirculatory monitoring should currently be viewed as a complementary framework for identifying persistent or heterogeneous tissue hypoperfusion beyond conventional macrocirculatory targets. Its integration into individualized resuscitation remains promising but requires standardized methodology, external validation, and prospective interventional evidence before any single modality or multimodal strategy can be adopted as a validated resuscitation endpoint.
doi.org
September 24, 2026 at 7:01 AM
Ischemic limbs during vasopressor-treated shock are often blamed on drug dose. This review reframes SPG as thromboinflammatory microvascular thrombosis—typically with DIC and shock liver. #ProtectiveHemodynamics #CriticalCare
https://doi.org/10.1093/ehjcvp/pvag078
pendingpublications
Pending Publication
doi.org
September 20, 2026 at 8:15 AM
Risparmiare catecolamine non è solo aggiungere un vasopressore. Significa anche evitare target pressori che aumentano l’esposizione senza migliorare la perfusione. Target personalizzati e farmaci non adrenergici sono complementari. #ProtectiveHemodynamics
https://doi.org/10.1186/s13054-026-06109-3
Current and future strategies aiming at reducing catecholamine exposure in septic shock - Critical Care
Norepinephrine is the first-line vasopressor in septic shock, yet prolonged catecholamine exposure is associated with adverse effects that have prompted growing interest in catecholamine-sparing strategies. This review highlights current evidence on the rationale for catecholamine use, the burden of sustained adrenergic exposure, and current and emerging sparing strategies. Early norepinephrine initiation, including via peripheral access, shortens hypotension duration and reduces fluid requirements. However, catecholamine exposure can carry dose-dependent cardiac, metabolic, and immunological consequences. Perfusion-guided strategies, including individualization of blood pressure targets and titration of vasopressor use based on capillary refill time, represent the cornerstone of reduction of catecholamines. Among alternative non-adrenergic vasopressors, vasopressin reduces catecholamine exposure and the risk of atrial fibrillation, with potential renal benefits. Angiotensin II represents an option in catecholamine-refractory shock, with post-hoc evidence suggesting benefit in patients with acute kidney injury or elevated renin concentrations. Inhibition of circulating dipeptidyl peptidase 3, which degrades angiotensin II, is an emerging therapeutic strategy. Corticosteroids restore vasopressor sensitivity and accelerate catecholamine weaning. Short-acting β1-blockers have shown hemodynamic promise but inconsistent outcomes, underscoring the need for better patient selection. Methylene blue, targeting the vasodilatory nitric oxide pathway, represents another strategy. Finally, emerging immunomodulatory approaches, including extracellular histone neutralization and polymyxin B hemoperfusion in endotoxin phenotypes, aim to attenuate the dysregulated host response driving vasopressor dependency. A personalized and multimodal approach, including perfusion-guided targets, non-adrenergic vasopressors, and phenotype-based patient selection, represents the most promising strategy to reduce potential consequences of adrenergic burden while maintaining tissue perfusion.
doi.org
September 17, 2026 at 6:31 PM
Fluidi personalizzati non significa “darne meno”: significa somministrarli quando c’è ipoperfusione, una risposta plausibile e un bilancio beneficio–danno favorevole. La competenza chiave è sapere quando fermarsi. #ProtectiveHemodynamics
https://doi.org/10.1016/j.aicoj.2026.100142
Redirecting
doi.org
September 19, 2026 at 8:31 AM
Personalized fluids are not “give less”: they mean giving fluid only when there is evidence of hypoperfusion, a plausible response, and a favorable benefit–harm balance. The key skill is knowing when to stop. #ProtectiveHemodynamics
https://doi.org/10.1016/j.aicoj.2026.100142
Redirecting
doi.org
September 19, 2026 at 7:45 AM
La sorpresa è il closed loop: nello shock endotossinico un computer ha titolato fluidi, noradrenalina e vasopressina usando feedback continui di PAM e portata cardiaca. Sperimentale, ma è un assaggio di rianimazione automatizzata. #ProtectiveHemodynamics
https://doi.org/10.1186/s40635-026-00977-3
Automated hemodynamic resuscitation system for computer-controlled norepinephrine, vasopressin, and fluid therapy in endotoxin-induced shock: a feasibility and physiological proof-of-concept study - Intensive Care Medicine Experimental
Background To support hemodynamic management in vasoplegic shock, we previously developed a closed-loop automated infusion system of norepinephrine (NE) and fluid to automatically restore arterial pressure (AP) and cardiac output (CO). To enhance the practical feasibility and efficacy of the system, we integrated a minimally invasive CO monitor and a closed-loop control of vasopressin (AVP) infusion to the system and validated the integrated system in dogs with endotoxin-induced shock. Methods Based on the circulatory equilibrium framework, the system directly controls systemic vascular resistance and stressed blood volume by titrating NE and Ringer’s acetate solution (RiA), respectively, thereby restoring AP and CO. AVP is automatically initiated once infusion rate of NE is increased higher than 1 μg·kg⁻1·min⁻1. The minimally invasive CO monitor estimates CO (COes) by a machine-learning analysis of the peripheral AP contour. In eight anesthetized dogs, the system was implemented, and reference CO (COref) was measured using an aortic flow probe to calibrate COes and track reference hemodynamics. Endotoxin shock was induced via intravenous lipopolysaccharide infusions. After the target AP and COes were set to 70 mmHg and 132 (132–133) mL·min−1·kg−1, respectively, the system was activated. Results The lipopolysaccharide infusion significantly reduced AP from 82 (80–85) to 52 (50–56) mmHg and COref from 132 (125–146) to 90 (80–103) mL·min−1·kg−1, and increased the blood lactate level (LAC) from 21 (21–23) to 36 (32–38) mg·dL−1. Once the system was activated, infusions of NE and RiA were automatically initiated. Infusion of AVP initiated during the system control was associated with significant reduction in NE dose while maintaining AP. Within 5 min after system activation, AP and COes were recovered to >65 mmHg and >122 (122–123) ml·min−1·kg−1, respectively. The median absolute performance errors for AP and COes were <5%. At 60 min after system activation, AP and COref significantly increased to 72 (68–75) mmHg and 130 (127–137) ml·min−1·kg−1 and LAC significantly decreased to 26 (25–28) mg·dL−1 relative to the values observed at endotoxin shock. COes tracked directional changes in COref reasonably well. Conclusions This proof-of-concept study validates the feasibility and physiological performance of the system for the hemodynamic management of vasoplegic shock.
doi.org
September 21, 2026 at 8:31 AM
The surprise is the closed loop: in endotoxin shock, a computer titrated fluids, norepinephrine and vasopressin from continuous MAP and cardiac-output feedback. Experimental, but a glimpse of automated resuscitation. #ProtectiveHemodynamics
https://doi.org/10.1186/s40635-026-00977-3
Automated hemodynamic resuscitation system for computer-controlled norepinephrine, vasopressin, and fluid therapy in endotoxin-induced shock: a feasibility and physiological proof-of-concept study - Intensive Care Medicine Experimental
Background To support hemodynamic management in vasoplegic shock, we previously developed a closed-loop automated infusion system of norepinephrine (NE) and fluid to automatically restore arterial pressure (AP) and cardiac output (CO). To enhance the practical feasibility and efficacy of the system, we integrated a minimally invasive CO monitor and a closed-loop control of vasopressin (AVP) infusion to the system and validated the integrated system in dogs with endotoxin-induced shock. Methods Based on the circulatory equilibrium framework, the system directly controls systemic vascular resistance and stressed blood volume by titrating NE and Ringer’s acetate solution (RiA), respectively, thereby restoring AP and CO. AVP is automatically initiated once infusion rate of NE is increased higher than 1 μg·kg⁻1·min⁻1. The minimally invasive CO monitor estimates CO (COes) by a machine-learning analysis of the peripheral AP contour. In eight anesthetized dogs, the system was implemented, and reference CO (COref) was measured using an aortic flow probe to calibrate COes and track reference hemodynamics. Endotoxin shock was induced via intravenous lipopolysaccharide infusions. After the target AP and COes were set to 70 mmHg and 132 (132–133) mL·min−1·kg−1, respectively, the system was activated. Results The lipopolysaccharide infusion significantly reduced AP from 82 (80–85) to 52 (50–56) mmHg and COref from 132 (125–146) to 90 (80–103) mL·min−1·kg−1, and increased the blood lactate level (LAC) from 21 (21–23) to 36 (32–38) mg·dL−1. Once the system was activated, infusions of NE and RiA were automatically initiated. Infusion of AVP initiated during the system control was associated with significant reduction in NE dose while maintaining AP. Within 5 min after system activation, AP and COes were recovered to >65 mmHg and >122 (122–123) ml·min−1·kg−1, respectively. The median absolute performance errors for AP and COes were <5%. At 60 min after system activation, AP and COref significantly increased to 72 (68–75) mmHg and 130 (127–137) ml·min−1·kg−1 and LAC significantly decreased to 26 (25–28) mg·dL−1 relative to the values observed at endotoxin shock. COes tracked directional changes in COref reasonably well. Conclusions This proof-of-concept study validates the feasibility and physiological performance of the system for the hemodynamic management of vasoplegic shock.
doi.org
September 21, 2026 at 7:01 AM
A 75% drop in intraoperative crystalloid was not accompanied by more hypotension or AKI in 38,976 patients. Not “restrict everyone”: routine fluid volume is a treatment exposure that should earn its indication. #ProtectiveHemodynamics
https://doi.org/10.1001/jamanetworkopen.2026.34064
Just a moment...
doi.org
September 16, 2026 at 7:01 AM
Una riduzione del 75% dei cristalloidi intraoperatori non si è accompagnata a più ipotensione o AKI in 38.976 pazienti. Non è “restrizione per tutti”: anche i fluidi abituali sono un’esposizione terapeutica da giustificare. #ProtectiveHemodynamics
https://doi.org/10.1001/jamanetworkopen.2026.34064
Just a moment...
doi.org
September 16, 2026 at 8:30 AM
Catecholamine sparing is not only about adding another vasopressor. It also means avoiding pressure targets that increase drug exposure without improving perfusion. Individualized targets and non-adrenergic agents are complementary. #ProtectiveHemodynamics
https://doi.org/10.1186/s13054-026-06109-3
Current and future strategies aiming at reducing catecholamine exposure in septic shock - Critical Care
Norepinephrine is the first-line vasopressor in septic shock, yet prolonged catecholamine exposure is associated with adverse effects that have prompted growing interest in catecholamine-sparing strategies. This review highlights current evidence on the rationale for catecholamine use, the burden of sustained adrenergic exposure, and current and emerging sparing strategies. Early norepinephrine initiation, including via peripheral access, shortens hypotension duration and reduces fluid requirements. However, catecholamine exposure can carry dose-dependent cardiac, metabolic, and immunological consequences. Perfusion-guided strategies, including individualization of blood pressure targets and titration of vasopressor use based on capillary refill time, represent the cornerstone of reduction of catecholamines. Among alternative non-adrenergic vasopressors, vasopressin reduces catecholamine exposure and the risk of atrial fibrillation, with potential renal benefits. Angiotensin II represents an option in catecholamine-refractory shock, with post-hoc evidence suggesting benefit in patients with acute kidney injury or elevated renin concentrations. Inhibition of circulating dipeptidyl peptidase 3, which degrades angiotensin II, is an emerging therapeutic strategy. Corticosteroids restore vasopressor sensitivity and accelerate catecholamine weaning. Short-acting β1-blockers have shown hemodynamic promise but inconsistent outcomes, underscoring the need for better patient selection. Methylene blue, targeting the vasodilatory nitric oxide pathway, represents another strategy. Finally, emerging immunomodulatory approaches, including extracellular histone neutralization and polymyxin B hemoperfusion in endotoxin phenotypes, aim to attenuate the dysregulated host response driving vasopressor dependency. A personalized and multimodal approach, including perfusion-guided targets, non-adrenergic vasopressors, and phenotype-based patient selection, represents the most promising strategy to reduce potential consequences of adrenergic burden while maintaining tissue perfusion.
doi.org
September 17, 2026 at 5:01 PM
La pressione non è il flusso. La review rilegge la circolazione con energia cardiaca, pressione sistemica media e impedenza d’ingresso: la pressione descrive il sistema; la risposta di gittata mostra se l’intervento aumenta il flusso. #ProtectiveHemodynamics
https://doi.org/10.1111/anae.70238
Just a moment...
doi.org
September 15, 2026 at 8:31 AM
In 18 RCT/16.573 pazienti, target pressori intraoperatori più alti o individualizzati non hanno ridotto danno miocardico, AKI o mortalità. Il delirium è diminuito, ma non prova che una PAM più alta sia protettiva in generale. #ProtectiveHemodynamics
https://doi.org/10.1007/s44254-026-00188-9
Intraoperative blood pressure management strategies and postoperative outcomes in patients undergoing noncardiac surgery: a systematic review and meta-analysis - Anesthesiology and Perioperative Science
Background Current recommendations for intraoperative blood pressure management suggest maintaining mean arterial pressure (MAP) at ≥ 60–65 mmHg to avoid hypotension. However, controversy remains regarding whether higher or individualized MAP targets improve clinically important outcomes in surgical patients. We aimed to determine whether intensive intraoperative blood pressure management, defined as higher fixed or individualized MAP targets, reduces major postoperative morbidity compared with standard management (MAP ≥ 60–65 mmHg). Methods We systematically searched PubMed, Embase, the Cochrane Library, and Web of Science for randomized controlled trials (RCTs) comparing intensive and standard intraoperative blood pressure management in adults undergoing noncardiac surgery. The primary outcomes were postoperative myocardial injury, postoperative delirium (POD), and acute kidney injury (AKI). Secondary outcomes included postoperative mortality, stroke, heart failure, acute respiratory distress syndrome (ARDS), pneumonia, intensive care unit (ICU) admission, surgical site infection (SSI), and hospital length of stay (LOS). Data were pooled using a random-effects model with the Hartung–Knapp adjustment. Risk ratios (RR) were calculated for dichotomous outcomes, and mean differences (MD) were calculated for continuous outcomes. Trial sequential analysis (TSA) was performed to control for random error and assess the conclusiveness of the available evidence. Results Eighteen RCTs involving 16,573 patients were included. Compared with standard management, intensive management was associated with lower risks of POD (10 studies; RR = 0.72, 95% CI [0.55, 0.93]; P = 0.019; moderate-certainty evidence) and SSI (5 studies; RR = 0.64, 95% CI [0.53, 0.76]; P = 0.002; moderate-certainty evidence). However, no significant between-group differences were observed in postoperative myocardial injury (9 studies; RR = 1.02, 95% CI [0.92, 1.13]), AKI (13 studies; RR = 0.92, 95% CI [0.79, 1.06]), or mortality (13 studies; RR = 0.99, 95% CI [0.83, 1.17]). TSA supported a beneficial effect of intensive management on POD, and indicated that a clinically meaningful benefit of the prespecified magnitude was unlikely for myocardial injury and AKI. No significant between-group differences were observed in postoperative stroke, pneumonia, heart failure, ICU admission, or hospital LOS. Conclusions In this systematic review and meta-analysis, intensive intraoperative blood pressure management may reduce the risks of POD and SSI in adults undergoing noncardiac surgery. However, it was not associated with significant differences in postoperative myocardial injury, AKI or mortality. Protocol registration PROSPERO: CRD420261323873.
doi.org
September 16, 2026 at 1:31 PM
Across 18 RCTs and 16,573 patients, higher or individualized intraoperative BP targets did not reduce myocardial injury, AKI or mortality. Delirium fell, but this does not show that a higher MAP is generally organ-protective. #ProtectiveHemodynamics
https://doi.org/10.1007/s44254-026-00188-9
Intraoperative blood pressure management strategies and postoperative outcomes in patients undergoing noncardiac surgery: a systematic review and meta-analysis - Anesthesiology and Perioperative Science
Background Current recommendations for intraoperative blood pressure management suggest maintaining mean arterial pressure (MAP) at ≥ 60–65 mmHg to avoid hypotension. However, controversy remains regarding whether higher or individualized MAP targets improve clinically important outcomes in surgical patients. We aimed to determine whether intensive intraoperative blood pressure management, defined as higher fixed or individualized MAP targets, reduces major postoperative morbidity compared with standard management (MAP ≥ 60–65 mmHg). Methods We systematically searched PubMed, Embase, the Cochrane Library, and Web of Science for randomized controlled trials (RCTs) comparing intensive and standard intraoperative blood pressure management in adults undergoing noncardiac surgery. The primary outcomes were postoperative myocardial injury, postoperative delirium (POD), and acute kidney injury (AKI). Secondary outcomes included postoperative mortality, stroke, heart failure, acute respiratory distress syndrome (ARDS), pneumonia, intensive care unit (ICU) admission, surgical site infection (SSI), and hospital length of stay (LOS). Data were pooled using a random-effects model with the Hartung–Knapp adjustment. Risk ratios (RR) were calculated for dichotomous outcomes, and mean differences (MD) were calculated for continuous outcomes. Trial sequential analysis (TSA) was performed to control for random error and assess the conclusiveness of the available evidence. Results Eighteen RCTs involving 16,573 patients were included. Compared with standard management, intensive management was associated with lower risks of POD (10 studies; RR = 0.72, 95% CI [0.55, 0.93]; P = 0.019; moderate-certainty evidence) and SSI (5 studies; RR = 0.64, 95% CI [0.53, 0.76]; P = 0.002; moderate-certainty evidence). However, no significant between-group differences were observed in postoperative myocardial injury (9 studies; RR = 1.02, 95% CI [0.92, 1.13]), AKI (13 studies; RR = 0.92, 95% CI [0.79, 1.06]), or mortality (13 studies; RR = 0.99, 95% CI [0.83, 1.17]). TSA supported a beneficial effect of intensive management on POD, and indicated that a clinically meaningful benefit of the prespecified magnitude was unlikely for myocardial injury and AKI. No significant between-group differences were observed in postoperative stroke, pneumonia, heart failure, ICU admission, or hospital LOS. Conclusions In this systematic review and meta-analysis, intensive intraoperative blood pressure management may reduce the risks of POD and SSI in adults undergoing noncardiac surgery. However, it was not associated with significant differences in postoperative myocardial injury, AKI or mortality. Protocol registration PROSPERO: CRD420261323873.
doi.org
September 16, 2026 at 12:01 PM
Il 65 Trial ha cambiato la domanda: non solo “quanto alta deve essere la PAM?”, ma “quanto vasopressore spendiamo per arrivarci?”. In 2.600 anziani, PAM 60–65 ha ridotto l’esposizione ai vasopressori senza eccesso di mortalità. #ProtectiveHemodynamics
https://doi.org/10.1001/jama.2020.0930
Just a moment...
doi.org
September 14, 2026 at 1:30 PM
The 65 Trial changed the question: not only “how high should MAP be?”, but “how much vasopressor should we spend to get there?” In 2,600 older patients, MAP 60–65 reduced vasopressor exposure without excess mortality. #ProtectiveHemodynamics
https://doi.org/10.1001/jama.2020.0930
Just a moment...
doi.org
September 14, 2026 at 12:01 PM
Vasopressors are moving from “which drug wins?” to “which combination fits this patient, now?”. This review captures the shift toward multimodal, perfusion-aware, de-catecholaminizing shock care. #ProtectiveHemodynamics #CriticalCare

https://doi.org/10.1097/SHK.0000000000002781
Vasoactive Agent Therapy in Septic Shock: From... : Shock
Hemodynamic stabilization and preservation of organ perfusion are central elements in the management of septic shock. This is achieved by fluid...
doi.org
September 13, 2026 at 5:01 PM