Citation: E. Seifert et T. Trippenbach, EFFECTS OF BACLOFEN ON THE HERING-BREUER INSPIRATORY-INHIBITORY AND DEFLATION REFLEXES IN RATS, American journal of physiology. Regulatory, integrative and comparative physiology, 43(2), 1998, pp. 462-469
Citation: Sa. Deuchars et al., RESPONSES OF DORSAL COLUMN NUCLEI (DCN) NEURONS TO DORSAL-ROOT STIMULATION IN A BRAIN-STEM-SPINAL CORD PREPARATION, Journal of physiology, 504P, 1997, pp. 102-103
Citation: E. Seifert et T. Trippenbach, BACLOFEN INJECTION TO THE NUCLEUS-TRACTUS-SOLITARII (NTS) ATTENUATES THE DEFLATION REFLEX IN THE RAT, The FASEB journal, 10(3), 1996, pp. 3670-3670
Citation: T. Trippenbach et Sa. Duchars, EFFECTS OF BACLOFEN ON THE RESPONSES EVOKED BY VAGAL-STIMULATION IN NEURONS OF THE DORSOMEDIAL MEDULLA IN A NEONATAL RAT BRAIN-STEM-SPINAL CORD PREPARATION, Journal of physiology, 494P, 1996, pp. 102-102
Citation: T. Trippenbach, BACLOFEN-INDUCED BLOCK OF THE HERING-BREUER EXPIRATORY-PROMOTING REFLEX IN RATS, Canadian journal of physiology and pharmacology, 73(6), 1995, pp. 706-713
Citation: E. Seifert et T. Trippenbach, BACLOFEN ATTENUATES CARDIORESPIRATORY EFFECTS OF VAGAL C-FIBER STIMULATION IN RATS, Canadian journal of physiology and pharmacology, 73(10), 1995, pp. 1485-1494
Citation: T. Trippenbach et N. Lake, EXCITATORY CARDIOVASCULAR AND RESPIRATORY EFFECTS OF BACLOFEN IN INTACT RATS, Canadian journal of physiology and pharmacology, 72(10), 1994, pp. 1200-1207
Citation: T. Trippenbach, VENTILATORY AND METABOLIC EFFECTS OF REPEATED HYPOXIA IN CONSCIOUS NEWBORN RABBITS, The American journal of physiology, 266(5), 1994, pp. 180001584-180001590
Citation: T. Trippenbach et G. Kelly, EFFECTS OF ACUTE AND CHRONIC COCAINE ON BREATHING AND CHEMOSENSITIVITY IN AWAKE RATS, The American journal of physiology, 266(3), 1994, pp. 180000696-180000701
Citation: T. Trippenbach, EFFECTS OF HYPOXIA ON PHRENIC NEUROGRAM RESPONSE TO VAGAL AND SOMATICSTIMULATION IN NEWBORN RABBITS, Biology of the neonate, 63(6), 1993, pp. 380-388
Citation: Me. Morris et T. Trippenbach, CHANGES IN EXTRACELLULAR [K+] AND [CA2+] INDUCED BY ANOXIA IN NEONATAL RABBIT MEDULLA, The American journal of physiology, 264(4), 1993, pp. 761-769