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1,329 calculators and references across 60 specialties, with each tool type shown up front.

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Primary Aldosteronism Cardiovascular Trait Score (PACT Score) Calculator

Primary Aldosteronism Cardiovascular Trait (PACT) Score: Explanation and Clinical Context The PACT Score is designed to quantify the cardiovascular risk in patients suspected of primary aldosteronism, integrating key clinical and biochemical traits such as blood pressure, serum potassium, plasma aldosterone concentration, and plasma renin activity. It calculates the Aldosterone-to-Renin Ratio (ARR) and assigns weight

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Procalcitonin Cardiac Sepsis Index (PCSI) Calculator

Procalcitonin Cardiac Sepsis Index (PCSI): Explanation and Clinical Context The Procalcitonin Cardiac Sepsis Index (PCSI) is a novel composite score designed to stratify risk in patients with suspected cardiac sepsis. It integrates three critical parameters: serum procalcitonin (PCT), a marker of systemic bacterial infection; NT-proBNP, an indicator of cardiac stress; and the Sequential Organ Failure Assessment (SOFA

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PROCAM Risk Score Calculator

Explanation: The PROCAM (Prospective Cardiovascular Münster) Risk Score estimates the 10-year risk of acute coronary events, such as myocardial infarction or sudden cardiac death, in adults without established cardiovascular disease. It incorporates key metabolic and lifestyle factors—age, LDL, HDL, triglycerides, systolic blood pressure, smoking, diabetes, and family history—to generate a personalized risk profile.

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Prognostic Nutritional Index (PNI) Calculator

Prognostic Nutritional Index (PNI): Explanation and Clinical Context Prognostic Nutritional Index (PNI) is a clinical tool used to assess the nutritional and immunological status of patients, originally developed by Onodera et al. in 1984. It is calculated using serum albumin concentration and total lymphocyte count. PNI has been validated as a predictor of postoperative complications, surgical outcomes, and prognosi

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PROGRESS-CTO Success Index Calculator

PROGRESS-CTO Success Index: Explanation and Clinical Context The PROGRESS-CTO (Prospective Global Registry for the Study of Chronic Total Occlusion Intervention) Success Index is a validated scoring system that predicts the likelihood of successful percutaneous coronary intervention (PCI) in patients with chronic total occlusion (CTO). This score incorporates five angiographic variables that independently predict pro

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PROLONG Study ICD Monitoring Algorithm

: Explanation and Clinical Context The PROLONG study examined patients with newly diagnosed heart failure and an initial left ventricular ejection fraction (LVEF) ≤35% who were protected temporarily by a wearable cardioverter-defibrillator (WCD) while guideline-directed medical therapy was initiated and optimized. The study defined criteria under which prolongation of the WCD wearing period — rather than immediate im

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PROMISS Score (Postoperative Mortality) Calculator

PROMISS Score (Postoperative Mortality): Explanation and Clinical Context The PROMISS score is a validated tool to predict 30-day postoperative mortality in adult surgical patients. It incorporates patient age, ASA physical status, emergency surgery, cardiac failure, and renal failure. The model uses logistic regression to calculate the predicted probability of postoperative death, allowing clinicians to identify hig

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PROSPECT Echo Score (CRT Responder) Calculator

PROSPECT Echo Score: Explanation and Clinical Context The PROSPECT Echo Score is designed to predict the likelihood of a positive response to cardiac resynchronization therapy (CRT) based on echocardiographic and electrocardiographic parameters. Key variables include LVESV reduction percentage, QRS duration, mitral regurgitation severity, and left ventricular dyssynchrony index. Each parameter that meets a threshold

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PROTECHT Score Calculator

PROTECHT Score: Explanation and Clinical Context The PROTECHT Score is a validated risk assessment model for predicting chemotherapy-associated venous thromboembolism (VTE) in patients with active cancer. It incorporates three key variables: primary tumor site (high-risk: pancreatic or gastric), history of previous VTE, and use of platinum-based or gemcitabine chemotherapy. Points are assigned to each variable (tumor

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PROVE-HF Biomarker Improvement Algorithm (PROVE-HF Calculator)

PROVE-HF Biomarker Improvement Algorithm — Explanation and Clinical Context The PROVE-HF (Prospective Study of Biomarkers, Symptom Improvement, and Ventricular Remodeling During Sacubitril/Valsartan Therapy for Heart Failure) program examined whether changes in NT-proBNP after initiation of sacubitril/valsartan are associated with reverse cardiac remodeling and improvements in LV function. In the published cohort (Ja

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Pulmonary Arterial Compliance Index (PACi) Calculator

Pulmonary Arterial Compliance Index (PACi): Explanation and Clinical Context Pulmonary arterial compliance reflects the pulsatile component of right ventricular afterload, calculated as stroke volume divided by pulmonary arterial pulse pressure (sPAP − dPAP). Indexing to body surface area yields the Pulmonary Arterial Compliance Index (PACi): SVI/(sPAP − dPAP), expressed in mL·m-2 per mmHg. Compliance represents the

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Pulmonary Artery Diameter Enlargement Ratio (CT-based) Calculator

Ascending Aorta (AA) diameter — same slice/level (mm) Sex (for sex-specific mPA normal limits) -- choose -- Male Female Pulmonary Artery Diameter Enlargement Ratio (CT-based): Explanation and Clinical Context The pulmonary artery–to–ascending aorta diameter ratio (PA/Ao) is obtained from axial chest CT at the level of the main pulmonary artery bifurcation, measuring the short-axis diameters of the main PA and ascendi

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Pulmonary Artery Systolic Pressure (PASP) Estimate Calculator

Pulmonary Artery Systolic Pressure (PASP) Estimate: Explanation and Clinical Context The PASP estimate is derived from Doppler echocardiography using the peak tricuspid regurgitation (TR) velocity and an estimate of right atrial (RA) pressure. The formula 4 × (TR velocity)^2 + RA pressure provides an approximation of pulmonary artery systolic pressure in mmHg. Elevated PASP may indicate pulmonary hypertension, right

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Pulmonary Capillary Wedge Pressure (PCWP) Calculator

Pulmonary Capillary Wedge Pressure Calculator: Explanation and Clinical Context Pulmonary capillary wedge pressure is a hemodynamic parameter that reflects left atrial pressure and is widely used as an indirect measure of left ventricular filling pressure. In clinical practice, PCWP plays an essential role in the evaluation of patients with suspected heart failure, assessment of hemodynamic congestion, and differenti

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Pulmonary Embolism Severity Index (PESI) Calculator

Pulmonary Embolism Severity Index (PESI): Explanation and Clinical Context PESI is a validated risk stratification tool designed to estimate 30-day mortality in patients with acute pulmonary embolism. It incorporates 11 variables, including age, sex, comorbidities (cancer, heart failure, chronic lung disease), vital signs (heart rate, blood pressure, respiratory rate, temperature), altered mental status, and oxygen s

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Pulmonary Hypertension in Left Heart Disease (PH-LHD) Differentiation Index

: Explanation and Clinical Context This calculator integrates non-invasive evidence to help differentiate pulmonary arterial hypertension (PAH) from PH due to left heart disease (PH-LHD). The H2FPEF score (Reddy et al., 2018) estimates HFpEF probability using atrial fibrillation (3), BMI >30 (2), ≥2 antihypertensives (1), age >60 (1), E/e' >9 (1), and PASP >35 (1). Scores ≥6 indicate a high likelihood of HFpEF, which

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Pulmonary Valve Annulus (PVA) Z-score Calculator

Pulmonary Valve Annulus (PVA) Z-score — explanation and clinical context this calculator uses the regression equations published by Pettersen et al. (J Am Soc Echocardiogr 2008) to compute a z-score for the pulmonary valve annulus relative to body size. Pettersen and colleagues derived nonlinear polynomial regression models on the natural-log transformed echocardiographic measurements against body surface area

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Pulmonary Vascular Resistance (PVR) Calculator

Pulmonary Vascular Resistance Calculator Explanation and Clinical Context Pulmonary vascular resistance describes the afterload that the right ventricle must overcome to eject blood into the pulmonary circulation. It is derived from a hemodynamic relationship that integrates pressure gradients across the pulmonary vasculature and the magnitude of pulmonary blood flow. PVR reflects the degree of vasoconstriction, remo

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Pulmonary Vascular Resistance (PVR) Calculator

Pulmonary Vascular Resistance Calculator Explanation and Clinical Context Pulmonary vascular resistance describes the afterload that the right ventricle must overcome to eject blood into the pulmonary circulation. It is derived from a hemodynamic relationship that integrates pressure gradients across the pulmonary vasculature and the magnitude of pulmonary blood flow. PVR reflects the degree of vasoconstriction, remo

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Pulmonary Vascular Resistance (PVR) Estimate Calculator

Pulmonary Vascular Resistance (PVR) Estimate Using TRV/VTIRVOT: Explanation and Clinical Context Pulmonary vascular resistance (PVR) is a critical parameter in assessing pulmonary hypertension. The TRV/VTIRVOT method provides a non-invasive echocardiographic estimate of PVR, based on the relationship between the peak tricuspid regurgitation velocity (TRV) and the right ventricular outflow tract time-velocity integral

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Pulmonary Vascular Resistance (PVR) Risk Tier Calculator

Pulmonary Vascular Resistance (PVR) Risk Tier: Explanation and Clinical Context Pulmonary Vascular Resistance (PVR) represents the afterload faced by the right ventricle and is calculated from the transpulmonary gradient (mean pulmonary artery pressure minus pulmonary artery wedge pressure) divided by cardiac output. It reflects the degree of obstruction within the pulmonary vasculature, primarily from remodeling or

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Pulmonary Vasoreactivity Test Response Prediction Model (AVT Response Predictor)

Pulmonary Vasoreactivity Test Response Prediction Model: Explanation and Clinical Context This tool integrates a heuristic pre-test probability of a positive acute vasoreactivity test (AVT) response with established adult response criteria (Sitbon and Barst). Classic AVT response is defined by a ≥10 mmHg fall in mPAP to ≤40 mmHg without a drop in cardiac output (Sitbon), or ≥20% decrease in both mPAP and PVR with unc

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Pulmonary-to-Systemic Flow Ratio (Qp/Qs) Calculator

Pulmonary-to-Systemic Flow Ratio (Qp/Qs): Explanation and Clinical Context The Pulmonary-to-Systemic Flow Ratio (Qp/Qs) is a hemodynamic index derived from the Fick principle that quantifies the relative blood flow between the pulmonary and systemic circulations. It is essential for the assessment of cardiac shunts such as atrial septal defect (ASD), ventricular septal defect (VSD), and patent ductus arteriosus (PDA)

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Pulse Pressure Calculator

Pulse Pressure: Explanation and Clinical Context Pulse pressure is the numerical difference between systolic and diastolic blood pressure. It reflects the interaction between stroke volume, aortic compliance, and ventricular function. A normal pulse pressure in healthy adults is approximately forty millimeters of mercury, although this value may vary with age. A widened pulse pressure may indicate increased arterial

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Pulse Pressure Index (PPI) Calculator

Pulse Pressure Index (PPI): Explanation and Clinical Context Pulse Pressure Index (PPI) is the ratio of pulse pressure (PP) to systolic blood pressure (SBP), calculated as (SBP – DBP) / SBP. It provides a standardized measure of arterial stiffness and cardiovascular risk. Pulse pressure reflects the difference between systolic and diastolic blood pressure and serves as a surrogate for arterial compliance. Higher PPI

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Pulse Wave Velocity (PWV) Calculator

Pulse Wave Velocity (PWV): Explanation and Clinical Context Pulse Wave Velocity is a non-invasive measure of arterial stiffness and a strong independent predictor of cardiovascular events and mortality. It reflects the speed at which the blood pressure pulse propagates through the arterial tree, with higher values indicating stiffer arteries. Clinical assessment of PWV provides early detection of vascular aging and h

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PURSUIT Risk Score Mortality Calculator

Explanation and Clinical Context The PURSUIT risk score was derived from a large international randomized trial of patients with unstable angina and non ST elevation myocardial infarction who received standard care with or without the glycoprotein two b three a inhibitor eptifibatide. It combines five bedside clinical features age sex worst Canadian Cardiovascular Society angina class in the preceding six weeks clini

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PVC Burden Percentage Calculator

PVC Burden Percentage: Explanation and Clinical Context PVC Burden Percentage represents the proportion of premature ventricular contractions (PVCs) relative to the total number of heartbeats over a 24-hour period as recorded by Holter monitoring or similar continuous ECG monitoring. A low PVC burden (<1%) is generally considered clinically insignificant, moderate burden (1–10%) may warrant follow-up in symptomatic p

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PVI Mortality Score Calculator

PVI Mortality Score: Explanation and Clinical Context The PVI Mortality Score is a clinical tool used to estimate the risk of mortality in patients undergoing Peripheral Vascular Intervention (PVI). It incorporates factors such as age, creatinine levels, hemoglobin levels, diabetes, and smoking status to stratify patients into low, moderate, or high-risk categories. This score aids clinicians in decision-making, prio

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PVI-ICD Mortality Risk Calculator

PVI-ICD Mortality Risk Score: Explanation and Clinical Context The PACE risk score is a validated tool to estimate 1-year mortality risk for patients with an Implantable Cardioverter-Defibrillator (ICD) implanted for primary prevention. It incorporates four clinical variables: age >70 years, creatinine >2.0 mg/dL, ejection fraction <20%, and the presence of peripheral arterial disease (PAD). A total score of >3 indic

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PYP Quantitative Uptake Index (QUI) Calculator

PYP Quantitative Uptake Index (QUI): Explanation and Clinical Context The PYP Quantitative Uptake Index (QUI) is a ratio of the radiotracer counts measured in the myocardial region of interest (ROI) to the contralateral chest ROI during 99mTc-Pyrophosphate (PYP) scintigraphy. It is used to quantify myocardial uptake and improve the diagnostic accuracy for transthyretin cardiac amyloidosis (ATTR-CA). A higher QUI valu

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QDiabetes Risk Calculator

QDiabetes Risk Algorithm: Explanation and Clinical Context QDiabetes is a validated risk prediction tool designed to estimate the 10-year risk of developing type 2 diabetes in adults. It uses demographic and clinical variables readily available in primary care, including age, sex, BMI, family history of diabetes, smoking status, ethnicity, and deprivation score. The algorithm applies a logistic regression model to co

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Qp/Qs Ratio Calculator

Qp Qs Ratio Calculator Summary and Clinical Context The Qp Qs ratio is a Doppler based calculation used to quantify the relationship between pulmonary blood flow and systemic blood flow. It is an essential parameter when evaluating patients with suspected intracardiac shunts such as atrial septal defect, ventricular septal defect, or patent ductus arteriosus. Doppler echocardiography provides a noninvasive method to

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QRISK3 Cardiovascular Risk Calculator

QRISK3: Comprehensive Explanation and Clinical Context The QRISK3 score is a predictive algorithm designed to estimate the 10-year risk of developing a cardiovascular event (such as myocardial infarction or stroke). It represents the third-generation update of the QRISK series developed in the United Kingdom by Hippisley-Cox and Coupland. QRISK3 integrates both classical and novel risk factors including age, sex, sys

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QRS Duration Index (QRSd Index) Calculator

QRS Duration Index: Explanation and Clinical Context The QRS Duration Index (QRSd Index) is a heart rate–corrected measure of ventricular depolarization duration, initially described by Brodie et al. in 1982. It is calculated by dividing the QRS duration (in milliseconds) by the square root of the RR interval (in seconds). This index accounts for heart rate variability when assessing intraventricular conduction and c

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QRS Width > 150 ms Response Ratio Calculator

QRS Width >150 ms Response Ratio: Explanation and Clinical Context The QRS Width >150 ms Response Ratio is derived from the MADIT-CRT trial, which studied the effect of cardiac resynchronization therapy (CRT) in patients with mild heart failure and wide QRS complexes. Patients with a QRS duration greater than 150 ms had a significantly higher likelihood of favorable response to CRT compared to those with narrower QRS

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QRS-T Angle Index Calculator

QRS-T Angle Index: Explanation and Clinical Context The QRS-T angle represents the spatial difference between the depolarization (QRS) and repolarization (T wave) vectors of the heart on a 12-lead ECG. A wider QRS-T angle is associated with abnormal ventricular repolarization and is a strong predictor of adverse cardiovascular events, including sudden cardiac death and all-cause mortality. Normal values are usually <

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QRSD Ratio (Bundle Branch Differentiation) Calculator

QRSD Ratio (Bundle Branch Differentiation): Explanation and Clinical Context The QRSD Ratio is a metric used to differentiate types of bundle branch conduction delays on ECG, especially in borderline QRS prolongation cases. It is calculated by dividing the QRS duration (ms) by the square root of the RR interval (ms), providing heart rate–corrected QRS assessment. A QRSD ratio <1.15 is typically considered normal, ind

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qSOFA Quick Sepsis Assessment Calculator

Respiratory RateEnter 1 if respiratory rate is 22 breaths per minute or higher otherwise enter 0 qSOFA Quick Sepsis Assessment Explanation and Clinical Context qSOFA is a rapid bedside tool designed to identify patients with suspected infection who are at increased risk for adverse outcomes such as prolonged intensive care stay and mortality. The score uses three simple clinical variables which are respiratory rate o

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QTc Bazett Formula Calculator

QTc Bazett Formula: Explanation and Clinical Context The QT interval represents the time from the start of ventricular depolarization to the end of ventricular repolarization on an electrocardiogram (ECG). QT interval duration varies with heart rate, and QTc (corrected QT) is calculated to standardize QT for heart rate. Bazett's formula is the most widely used correction: QTc = QT / √RR, where QT is in milliseconds a

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QTc Fridericia Calculator

QTc Fridericia Correction: Explanation and Clinical Context The Fridericia formula is used to correct the QT interval for heart rate: QTcF = QT / (RR^1/3), where RR is the interval between heartbeats in seconds. It provides a more accurate correction than Bazett's formula, especially at extreme heart rates. QTc prolongation is associated with increased risk of ventricular arrhythmias, including Torsades de Pointes, a

Clinical score

Quick SOFA (qSOFA) Calculator

Quick SOFA (qSOFA) Score: Explanation and Clinical Context The Quick Sequential Organ Failure Assessment (qSOFA) score was proposed by the Sepsis-3 task force (Singer et al., 2016) as a simplified bedside tool to identify patients with suspected infection at greater risk for poor outcomes outside the intensive care unit. It uses three simple clinical criteria: respiratory rate > 22 breaths per minute, systolic blood

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QUICKI Insulin Sensitivity Index Calculator

QUICKI Insulin Sensitivity Index Explanation and Clinical Context QUICKI is a validated surrogate marker to estimate insulin sensitivity that uses fasting glucose and fasting insulin values. It provides a simple and reproducible method to screen metabolic health in clinical and research settings. The mathematical structure of QUICKI gives a continuous scale where lower values reflect diminished insulin sensitivity su