A real-time analysis of intraoperative interruptions in relation to use of simple preventive measures including a sign on the door and a checklist-based team brief

2021 ◽  
pp. 175045892110244
Author(s):  
Mehmet Akif Aydin ◽  
Gungor Gul ◽  
Muhammet Fatih Aydin ◽  
Yesim Tunc

This study aimed to evaluate intraoperative interruptions by frequency, type, interference and source, and preventive measures. The interruptions in the operating theatre were evaluated for 52 surgical procedures based on real-time recordings and divided into routine operative procedures (ROP, n = 26, without intervention) and intervened operative procedures (IOP, n = 26, observed after team brief and placement of a warning sign for unnecessary door openings) groups. Intervened operative procedures vs. routine operative procedures was associated with a significantly lower number of interruptions (p = 0.014). Implementation of preventive measures was associated with a significantly lower number of entrances and exits (p = 0.001) and equipment issues (p = 0.003), interruptions that affected the circulating nurse or anaesthesia technician/associate (p = 0.003) and those caused by team members other than assisting surgeon and scrub nurse (p-value ranged from 0.015 to 0.009). Our findings revealed significantly reduced interruptions after a simple preventive measure including team brief and the placement of a warning sign for unnecessary door openings.

Author(s):  
R.P. Goehner ◽  
W.T. Hatfield ◽  
Prakash Rao

Computer programs are now available in various laboratories for the indexing and simulation of transmission electron diffraction patterns. Although these programs address themselves to the solution of various aspects of the indexing and simulation process, the ultimate goal is to perform real time diffraction pattern analysis directly off of the imaging screen of the transmission electron microscope. The program to be described in this paper represents one step prior to real time analysis. It involves the combination of two programs, described in an earlier paper(l), into a single program for use on an interactive basis with a minicomputer. In our case, the minicomputer is an INTERDATA 70 equipped with a Tektronix 4010-1 graphical display terminal and hard copy unit.A simplified flow diagram of the combined program, written in Fortran IV, is shown in Figure 1. It consists of two programs INDEX and TEDP which index and simulate electron diffraction patterns respectively. The user has the option of choosing either the indexing or simulating aspects of the combined program.


2020 ◽  
Vol 67 (4) ◽  
pp. 1197-1205 ◽  
Author(s):  
Yuki Totani ◽  
Susumu Kotani ◽  
Kei Odai ◽  
Etsuro Ito ◽  
Manabu Sakakibara

2021 ◽  
Vol 2021 (4) ◽  
pp. 7-16
Author(s):  
Sivaraman Eswaran ◽  
Aruna Srinivasan ◽  
Prasad Honnavalli

2021 ◽  
Vol 57 (28) ◽  
pp. 3430-3444
Author(s):  
Vinod Kumar

This article describes our journey and success stories in the development of chemical warfare detection, detailing the range of unique chemical probes and methods explored to achieve the specific detection of individual agents in realistic environments.


2021 ◽  
Vol 77 (2) ◽  
pp. 98-108
Author(s):  
R. M. Churchill ◽  
C. S. Chang ◽  
J. Choi ◽  
J. Wong ◽  
S. Klasky ◽  
...  

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