Results 121 to 130 of about 44,727 (264)
Simplified schematic for generation of the subcutaneous air pouch model in the rodent. On day 0 and 4, air is injected into the subcutaneous space on the dorsal surface of the rodent to generate a cavity analogous to a synovial joint. On day 6, monosodium urate (MSU) or calcium pyrophosphate (CPP) crystals are injected into the pouch to stimulate ...
Wenu Hewage+4 more
wiley +1 more source
Comparison of postoperative outcomes after cranial neurosurgery using propofol-based total intravenous anesthesia versus inhalation anesthesia: a nationwide cohort study in South Korea. [PDF]
Oh TK, Song IA, Jeon YT.
europepmc +1 more source
Wavelet and pain rating index for inhalation anesthesia: A randomized controlled trial. [PDF]
Zhang JW+4 more
europepmc +1 more source
Development of an efficient mice model of cancer‐associated cardiac cachexia
This work establishes a preclinical framework for targeting ubiquitin pathways to mitigate the morbidity of cancer‐related cardiopathy. Our integrated approach delineates a hierarchical progression from subcellular dysfunction to macroscopic cardiac deterioration. These findings mechanistically link tumor‐induced cachexia to cardiac dysfunction through
Shijie Xiong+9 more
wiley +1 more source
Propofol total intravenous anesthesia vs. sevoflurane inhalation anesthesia: Effects on post‑operative cognitive dysfunction and inflammation in geriatric patients undergoing laparoscopic surgery. [PDF]
Yao J, Gao Z, Qu W, Li J.
europepmc +1 more source
A New Method of Inhalation Anesthesia with Nasopharyngeal Insufflation in Rat Experiment.
Konosuke Yamasaki+2 more
openalex +2 more sources
This study demonstrates that intranasal Wharton's jelly‐derived mesenchymal stem cell (WJ‐MSC) administration at 3 or 10 days post‐insult reduced the lesion size and sensorimotor impairment following neonatal hypoxic‐ischemic (HI) brain injury in mice. WJ‐MSCs expressed receptors for HI‐upregulated chemokines and migrated from the nasal cavity into the
Caroline G. M. de Theije+9 more
wiley +1 more source
All Organisms Can Be Anesthetized, but There's No Point?
ABSTRACT Because of their interest in medicine, most studies on anesthesia have historically focused on the nervous systems of animals. This has often led to the neglect of the fact that all life forms have the potential to be anesthetized. Anesthetics target proteins, such as four‐domain voltage‐dependent Na+/Ca2⁺ channels (4D‐NaV/CaV) and glutamate ...
Lucia Sylvain‐Bonfanti+7 more
wiley +1 more source