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Catheter‐associated bladder mucosal trauma during intermittent voiding: An experimental study in pigs
by
Andersen, Thomas Emil
, Petersen, Troels
, Nielsen, Lene Feldskov
, Stærk, Kristian
, Schrøder, Brit
, Jensen, Louise Kruse
in
Animals
/ Antibodies
/ Bladder
/ bladder trauma
/ Catheters
/ General anesthesia
/ Granulocytes
/ Health risks
/ Histopathology
/ intermittent catheter
/ Intubation
/ large animal model
/ microhole zone catheter
/ mucosal suction
/ Neutrophils
/ pig
/ Suctioning
/ urinary catheter
/ Urinary tract infections
/ Urine
/ Urogenital system
2024
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Catheter‐associated bladder mucosal trauma during intermittent voiding: An experimental study in pigs
by
Andersen, Thomas Emil
, Petersen, Troels
, Nielsen, Lene Feldskov
, Stærk, Kristian
, Schrøder, Brit
, Jensen, Louise Kruse
in
Animals
/ Antibodies
/ Bladder
/ bladder trauma
/ Catheters
/ General anesthesia
/ Granulocytes
/ Health risks
/ Histopathology
/ intermittent catheter
/ Intubation
/ large animal model
/ microhole zone catheter
/ mucosal suction
/ Neutrophils
/ pig
/ Suctioning
/ urinary catheter
/ Urinary tract infections
/ Urine
/ Urogenital system
2024
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Catheter‐associated bladder mucosal trauma during intermittent voiding: An experimental study in pigs
by
Andersen, Thomas Emil
, Petersen, Troels
, Nielsen, Lene Feldskov
, Stærk, Kristian
, Schrøder, Brit
, Jensen, Louise Kruse
in
Animals
/ Antibodies
/ Bladder
/ bladder trauma
/ Catheters
/ General anesthesia
/ Granulocytes
/ Health risks
/ Histopathology
/ intermittent catheter
/ Intubation
/ large animal model
/ microhole zone catheter
/ mucosal suction
/ Neutrophils
/ pig
/ Suctioning
/ urinary catheter
/ Urinary tract infections
/ Urine
/ Urogenital system
2024
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Catheter‐associated bladder mucosal trauma during intermittent voiding: An experimental study in pigs
Journal Article
Catheter‐associated bladder mucosal trauma during intermittent voiding: An experimental study in pigs
2024
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Overview
Objective The objective of this study is to characterize bladder mucosal trauma associated with intermittent catheterization with conventional eyelet catheters (CECs) and to assess if a microhole zone catheter (MHZC) design concept reduces this adverse effect. Materials and Methods A porcine model was developed to reflect human catheterization and bladder drainage. Nine pigs were randomized for catheterization with CEC (n = 6) or MHZC (n = 3). The bladder was drained repeatedly 20 times through the catheter. Cystoscopy was performed before and after the procedure, and bladders were analysed by histopathology. Two additional pigs were used for cystoscopy visualization of suction events in vivo. Cystoscopy, gross pathology, histopathological score, leucocyte infiltration, and intracatheter pressure at flow stops during voiding were compared for each group. Results A significant higher pressure gradient was measured inside the CECs compared with MHZCs during flow stop. Consequently, CECs resulted in suction events inflicting bladder trauma characterized by loss of epithelium, oedema, haemorrhage, and neutrophil tissue infiltration. No significant trauma was identified when using MHZC. Conclusions Considerable mucosal bladder trauma is inflicted by CECs which may be an overlooked risk factor for urinary tract infection. Catheters can be designed to minimize mucosal suction and reduce associated trauma. This may be a solution to reduce infection frequency and increase user comfort. Furthermore, the study demonstrates the potential of pigs as an attractive animal model for investigating urinary catheter performances.
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