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https://github.com/gauvainboiche/ketapk.git
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refacto: Making Tailwind offline + making it Tauri compatible for compilation
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-1
@@ -1,4 +1,4 @@
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import { MODES, PK_MODELS, CLINICAL_THRESHOLDS, generateSimulationData } from '/pkCore.js';
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import { MODES, PK_MODELS, CLINICAL_THRESHOLDS, generateSimulationData } from './pkCore.js';
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import { adjustChartYScale } from './chartManager.js';
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import { initCalculatorUI } from './calculator.js';
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import { generatePDFReport } from './pdfExport.js';
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@@ -1,4 +1,4 @@
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import { CalculatorEngine } from '/pkCore.js';
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import { CalculatorEngine } from './pkCore.js';
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export function initCalculatorUI() {
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const modal = document.getElementById('modalCalc');
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@@ -1,4 +1,4 @@
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import { CLINICAL_THRESHOLDS } from '/pkCore.js';
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import { CLINICAL_THRESHOLDS } from './pkCore.js';
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import { t } from './i18n.js';
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export function updateChartAnnotations(chart, mode, currentYMax) {
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@@ -0,0 +1,123 @@
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/**
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* ============================================================================
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* KétaPK - Moteur Pharmacocinétique (PK/PD)
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* Modèles : Domino (1982), Clements (1981), Kamp (2020)
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* ============================================================================
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*/
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export const MODES = {
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ESKETAMINE: 'ESKETAMINE',
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RACEMIQUE: 'RACEMIQUE'
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};
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// Modèles Multi-exponentiels
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export const PK_MODELS = {
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DOMINO: {
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name: "Domino (1982)",
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refDose: 2.0,
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A: 14300, alpha: 1.35167,
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B: 2340, beta: 0.09517,
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C: 197, gamma: 0.00378,
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color: '#ff9933'
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},
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CLEMENTS: {
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name: "Clements (1981)",
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refDose: 0.25,
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A: 108, alpha: 0.03940,
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B: 39, beta: 0.00380,
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C: 0, gamma: 0,
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color: '#6ec46c'
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},
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KAMP: {
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name: "Kamp (2020)",
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refDose: 0.5,
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A: 1332, alpha: 0.24658,
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B: 155, beta: 0.03845,
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C: 69, gamma: 0.00409,
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color: '#4fafe3'
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}
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};
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// Zones d'effets cliniques et seuils (ng/mL)
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export const CLINICAL_THRESHOLDS = {
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[MODES.ESKETAMINE]: {
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maxScale: 500,
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defaultConcentration: 5,
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zones: [
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{ zoneKey: "inactive", min: 0, max: 10, color: "rgba(249, 252, 126, 0.4)", textHex: "#8a8d00" },
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{ zoneKey: "anti_hyperalgesic", min: 10, max: 50, color: "rgba(218, 247, 166, 0.4)", textHex: "#417505" },
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{ zoneKey: "analgesia", min: 50, max: 150, color: "rgba(255, 195, 0, 0.4)", textHex: "#b78100" },
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{ zoneKey: "psychedelic", min: 150, max: 350, color: "rgba(242, 160, 223, 0.4)", textHex: "#a2137f" },
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{ zoneKey: "emergence", min: 350, max: 500, color: "rgba(89, 196, 240, 0.4)", textHex: "#0c6796" },
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{ zoneKey: "narcosis", min: 500, max: 1000, color: "rgba(43, 122, 244, 0.4)", textHex: "#0a3c8a" },
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{ zoneKey: "excessive", min: 1000, max: Infinity, color: "rgba(255, 87, 51, 0.4)", textHex: "#a81300" }
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]
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},
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[MODES.RACEMIQUE]: {
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maxScale: 1000,
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defaultConcentration: 10,
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zones: [
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{ zoneKey: "inactive", min: 0, max: 20, color: "rgba(249, 252, 126, 0.4)", textHex: "#8a8d00" },
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{ zoneKey: "anti_hyperalgesic", min: 20, max: 100, color: "rgba(218, 247, 166, 0.4)", textHex: "#417505" },
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{ zoneKey: "analgesia", min: 100, max: 300, color: "rgba(255, 195, 0, 0.4)", textHex: "#b78100" },
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{ zoneKey: "psychedelic", min: 300, max: 700, color: "rgba(242, 160, 223, 0.4)", textHex: "#a2137f" },
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{ zoneKey: "emergence", min: 700, max: 1000, color: "rgba(89, 196, 240, 0.4)", textHex: "#0c6796" },
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{ zoneKey: "narcosis", min: 1000, max: 2000, color: "rgba(43, 122, 244, 0.4)", textHex: "#0a3c8a" },
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{ zoneKey: "excessive", min: 2000, max: Infinity, color: "rgba(255, 87, 51, 0.4)", textHex: "#a81300" }
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]
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}
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};
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/**
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* Calcul d'un bolus unique à l'instant t
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*/
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export function calculateBolusCp(model, doseMg, weightKg, timeElapsedMin) {
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if (timeElapsedMin < 0 || weightKg <= 0) return 0;
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const dosePerKg = doseMg / weightKg;
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const { A, alpha, B, beta, C, gamma } = model;
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const termA = A * Math.exp(-alpha * timeElapsedMin);
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const termB = B * Math.exp(-beta * timeElapsedMin);
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const termC = C * (gamma ? Math.exp(-gamma * timeElapsedMin) : 0);
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return dosePerKg * (termA + termB + termC);
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}
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/**
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* Superposition Linéaire des Bolus et Perfusions sur 300 min
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*/
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export function generateSimulationData({ model, weightKg, timelineInputs }) {
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const timeGrid = Array.from({ length: 61 }, (_, i) => i * 5);
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const cpResults = new Array(61).fill(0);
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timeGrid.forEach((targetTime, targetIndex) => {
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let totalCp = 0;
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for (let i = 0; i <= targetIndex; i++) {
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const deltaTime = targetTime - timeGrid[i];
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const input = timelineInputs[i] || { bolusMg: 0, perfRateMgKgH: 0 };
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if (input.bolusMg > 0) {
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totalCp += calculateBolusCp(model, input.bolusMg, weightKg, deltaTime);
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}
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if (input.perfRateMgKgH > 0) {
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const perfDoseMg = (input.perfRateMgKgH * weightKg) * (5 / 60);
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totalCp += calculateBolusCp(model, perfDoseMg, weightKg, deltaTime);
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}
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}
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cpResults[targetIndex] = Math.round(totalCp * 100) / 100;
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});
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return cpResults;
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}
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// Moteur de conversion de doses
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export const CalculatorEngine = {
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mgToMgKg: (mg, weight) => (weight > 0 ? mg / weight : 0),
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mgKgToMg: (mgKg, weight) => mgKg * weight,
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mgKgHToMicrogKgMin: (mgKgH) => (mgKgH * 1000) / 60,
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microgKgMinToMgKgH: (microg) => (microg * 60) / 1000
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};
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