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The toroidal-lens embedded catheter design is proposed to reduce the cylindrical lens effect induced by the cylindrical shape tube.
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This variability might be reduced by improved catheter design.
We studied how catheter design and catheter location influence the temperature readings, and thus its capacity to detect vulnerable plaques.
Herein, we present a novel method for controlling the catheter system and a new ionic polymer-metal composite (IPMC) catheter design.
Ten years after validation of the catheter design and implantation technique by Moncrief and Popovich, various clinical studies confirm that this new technique of catheter implantation increases catheter life expectancy and reduces pericatheter infections in PD.
Background and Objectives: There is no formal evaluation method used to relate epidural catheter design and manufacture to clinical outcomes, such as subarachnoid or intravascular catheter placement.
Improved catheter design and techniques have reduced, but not eliminated, hazards associated with renovascular stenting.
The catheter design has been claimed as an option in reducing these complications.
The inconsistency can be significantly reduced by a change in catheter design.
Future research strategies and innovations in catheter design are also addressed.
High heart rates, large dilated hearts, and problems with catheter design prevented visualization in all patients.
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