Intrathoracic blood volume index measured by thermodilution for preload monitoring after cardiac surgery
Reuter DA, Felbinger TW, Moerstedt K, et al. Intrathoracic blood volume index measured by thermodilution for preload monitoring after cardiac surgery. J Cardiothorac Vasc Anesth. 2002;16:191-195.
Comparison between intrathoracic blood volume and cardiac filling pressures in the early phase of hemodynamic instability of patients with sepsis or septic shock
Sakka SG, Bredle DL, Reinhart K, et al. Comparison between intrathoracic blood volume and cardiac filling pressures in the early phase of hemodynamic instability of patients with sepsis or septic shock. J Crit Care. 1999;14:78-83.
Increases in cardiac output can reverse flow deficits from vasospasm independent of blood pressure: A study using xenon computed tomographic measurement of cerebral blood flow
Joseph M, Ziadi S, Nates J, et al. Increases in cardiac output can reverse flow deficits from vasospasm independent of blood pressure: A study using xenon computed tomographic measurement of cerebral blood flow. Neurosurgery. 2003;53:1044-1051.
The effectiveness of right heart catheterization in the initial care of critically ill patients
Connors AF Jr, Speroff T, Dawson NV, et al. The effectiveness of right heart catheterization in the initial care of critically ill patients. JAMA. 1996;276:889-897.
Complications of Swan-Ganz catheterization for hemodynamic monitoring in patients with subarachnoid hemorrhage
Rosenwasser RH, Jallo JI, Getch CC, et al. Complications of Swan-Ganz catheterization for hemodynamic monitoring in patients with subarachnoid hemorrhage. Neurosurgery. 1995;37:872-875.
Accuracy of transpulmonary thermodilution versus gravimetric measurement of extravascular lung water
Katzenelson R, Perel A, Berkenstadt H, et al. Accuracy of transpulmonary thermodilution versus gravimetric measurement of extravascular lung water. Crit Care Med. 2004;32:1550-1554.