Reseña del libro "Critical Care in Patient Transport (en Inglés)"
Critical care transport operates inside the narrowest margin in medicine: the interval between a sending ICU and a receiving one, where a ventilated, vasopressor-dependent, or hemodynamically fragile patient must be sustained with fewer hands, less monitoring redundancy, and an environment - altitude, vibration, acceleration - that acts on an already unstable physiology in ways a bedside training never addresses. This reference connects the gas-law and hemodynamic principles that govern that environment to the organ-system management decisions made during transit, building every chapter on the same foundation: the disease determines the baseline vulnerability, and the transport environment determines whether it is safely navigated or tipped into a preventable deterioration. What This Book Puts in Your Hands - Predict altitude-driven device and physiologic behavior - gas-expansion effects on cuffs, pleural air, and VAD flow mapped to specific cabin-altitude ranges and corrective interventions. - Manage ventilators, vasoactives, and multi-line infusions under transport constraints - mode translation across devices, concentration-mismatch prevention, and battery-reserve planning that eliminates preventable mid-transport failures. - Recognize the 26 named In-Transit Deterioration Signatures - each pattern names the movement trigger, the earliest detectable tell, the trap logic that leads to misattribution, and the decisive intervention that resolves it. - Stabilize cardiogenic shock, STEMI, massive PE, and MCS-device patients through altitude and deceleration hemodynamic shifts that bedside protocols do not address.- Transport the neurologic emergency - ICP waveform interpretation, position-triggered herniation prevention, and stroke-transfer activation sequences that preserve minutes the receiving team depends on. - Manage neonatal, pediatric, obstetric, burn, and toxicologic emergencies with population-specific dosing, equipment sizing, and transport-adapted clinical decision pathways. - Apply crew resource management, go/no-go frameworks, and fatigue countermeasures that reduce the human-factors errors transport environments are designed to produce. Open it before your next mission - the clinical decisions every patient depends on between wheels-up and handoff, in one reference.