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Ann Surg Open
Ann Surg Open
AS9
Annals of Surgery Open
2691-3593
Wolters Kluwer Health, Inc. Two Commerce Square, 2001 Market Street, Philadelphia, PA 19103

AOSO-D-24-00042
00021
10.1097/AS9.0000000000000463
3
Original Study
Visual Mapping of Operating Theater Team Dynamics and Communication for Reflexive Feedback and Surgical Practice Optimization
Surendran Surya MA *†
Bonaconsa Candice MSc ‡
Nampoothiri Vrinda PharmD *
Mbamalu Oluchi PhD ‡
George Anu PGDip *
Mallick Swetha MCh §
OV Sudheer MCh §
Holmes Alison MD ‖¶
Mendelson Marc PhD ‡
Singh Sanjeev PhD *
Birgand Gabriel PhD ‖#
Charani Esmita PhD ‡¶
* From the Department of Infection Control and Epidemiology, Amrita Institute of Medical Sciences, Amrita Vishwa Vidyapeetham University, Kochi, Kerala, India
† Health Systems and Equity, The George Institute for Global Health, New Delhi, India
‡ Division of Infectious Diseases and HIV Medicine, Department of Medicine, Groote Schuur Hospital, University of Cape Town, Cape Town, South Africa
§ Department of Gastrointestinal Surgery, Amrita Institute of Medical Sciences, Amrita Vishwa Vidyapeetham University, Kochi, Kerala, India
‖ Department of Medicine, National Institute for Health Research Health Protection Research Unit in Healthcare Associated Infections and Antimicrobial Resistance, Imperial College London, London, United Kingdom
¶ Faculty of Life and Health Sciences, University of Liverpool, Liverpool, England
# Regional Center for Infection Prevention and Control, Region of Pays de la Loire, Nantes University Hospital, Nantes, France.
Reprints: Esmita Charani, PhD, Division of Infectious Diseases and HIV Medicine, Department of Medicine, University of Cape Town, G26/68 Groote Schuur Hospital Observatory, 7925, Cape Town, South Africa. Email: esmita.charani@uct.ac.za.
17 7 2024
9 2024
5 3 e463e463
15 2 2024
17 6 2024
Copyright © 2024 The Author(s). Published by Wolters Kluwer Health, Inc.
2024
https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License 4.0 (CCBY), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Background:

Effective operating theater (OT) communication and teamwork are essential to optimal surgical outcomes. We mapped the OT team dynamics and infection control practices using visual methods to guide reflexive feedback and optimize perioperative practices.

Methods:

Data were gathered from adult gastrointestinal surgical teams at a tertiary hospital in India using observations, sociograms (communication mapping tool), and focus group discussions (FGDs). Our methods aimed to map team communication, roles and responsibilities in infection-related practices, and door openings. Qualitative data were thematically analyzed. Quantitative data were analyzed using descriptive statistics.

Results:

Data were gathered from 10 surgical procedures (over 51 hours) using 16 sociograms, 15 traffic flow maps, and 3 FGDs. Senior surgeons directly influence team hierarchies, dynamics, and communication. While the surgeons, anesthetic residents, and technicians lead most tasks during procedures, the scrub nurse acts as a mediator coordinating activity among role players across hierarchies. Failing to provide the scrub nurse with complete details of the planned surgery leads to multiple door openings to fetch equipment and disposables. Traffic flow observed in 15-minute intervals corresponds to a mean frequency of 56 door openings per hour (min: 16; max: 108), with implications for infection control. Implementing the World Health Organization surgical safety checklist was inconsistent across pathways and does not match reported compliance data.

Conclusions:

Human factors research is important in optimizing surgical teamwork. Using visual methods to provide feedback to perioperative teams on their communication patterns and behaviors, provided an opportunity for contextualized enhancement of infection prevention and control practices.

human factors
infection
surgery
Wellcome Trust 10.13039/100010269 225960/Z/22Z Esmita CharaniOPEN-ACCESSTRUE
SDCT
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pmcINTRODUCTION

The operating theater (OT) is a closed clinical environment where professionals from multiple disciplines and with various training are required to work in a closely coordinated manner. Despite significant improvement in safety, errors routinely occur in surgical care, including in the OT. Around 14% of patients suffer an adverse event during an episode of surgical care with 40% of these events deemed preventable.1 Among these, postoperative infections are the most common complications in surgery, with the highest incidence rates reported after open abdominal procedures.2,3

The complex OT environment provides multiple opportunities for errors, not only from technical incompetence but also from poor interpersonal skills. Disruptions in the flow of an operation, due to teamwork and communication failures, significantly contribute to such adverse events.4 Current efforts for the prevention of postoperative infections focus on technical measures, with less attention paid to teamwork and communication in the OT to improve the uptake of preventive measures.5 Nontechnical skills for surgeons including situation awareness, decision-making, communication and teamwork, and leadership are key to the prevention of adverse events, including infection across the surgical pathway.

Interprofessional collaboration in surgical teams has been widely studied due to the impact of human factors on patient safety. Professional power, hierarchy, patriarchy, and gender norms have been described as factors influencing interprofessional collaboration, creating barriers to communication between surgeons and nurses.6–8 Currently, despite evidence suggesting a strong element of interprofessional teamwork in the OT, the roles and responsibilities between OT team members seem ill-defined.8,9 The OT also presents opportunities for effective leadership to generate a supportive environment and better use of resources.7,8 Communication skills are the vehicle to establish effective team working.10 Teams should have a shared understanding of the current situation, immediate and upcoming tasks, and the ultimate goal.4,11 Patterns of communication in the OT are complex, socially motivated, and usually setting specific.12–14 Common team communication failures in the OT demonstrate visible effects on system processes such as inefficiency, team tension, resource waste and delay, and patient inconvenience.15 Distractions (such as noise and traffic flow) may also compromise performance.16,17 Previous studies have found that more distractions and higher noise levels are related to poorer teamwork in the OT18 and that more lapses in discipline (operationalized as traffic, noise, and visitors) are related to a higher incidence of postoperative complications,19 such as surgical site infections.20 Moreover, door opening affects the efficacy of the ventilation system and increases the risk of postoperative infections and complications.21–23

The implementation of methods or techniques developed to structure and optimize communication and improve surgical teamwork24 often encounters multiple barriers. For example, gaps remain in compliance and engagement with the World Health Organization (WHO) surgical safety checklist25 despite a flexible design and context-fit implementation.26 Monitoring and feedback on teamwork and communication are critical for effective and continuous quality improvement of nontechnical skills in the OT.27 We investigated how ethnographic research can be used to map the OT team dynamic with a focus on infection-related practices to aid reflexive visual feedback to teams.

METHODS

Study Design

The work formed a part of the multisite study where we applied ethnographic observations to identify contextual factors that influenced antibiotic decision-making and infection management practices across surgical pathways.28–33 The novel application of sociograms to capture ward-round communication on infection care was developed during the project at one site30 and was then transferred to the second site. We identified an opportunity to work with surgical teams and investigate team dynamics in the OT. We used 3 methods to map and describe teamwork and communication related to infection prevention and control (IPC) practices during surgical procedures: (1) nonparticipant observations using a data collection guide, developed through a review of the literature and previous work of the research team,29,34 (2) sociograms to map IPC focused communication patterns and team dynamics in the OT, and (3) counts of door openings to capture traffic flow. Focus group discussions (FGDs) with OT participants were conducted for reflexive feedback discussions, using the data gathered. A researcher with a social science background (S. Surendran) and an understanding of surgical settings, IPC, and antimicrobial stewardship practices led the data collection, analysis, and feedback.

Setting

Between November 2021 and February 2022, data were gathered from observations in the gastrointestinal (GI) surgical department of a 1350 bedded not-for-profit, tertiary hospital in south India. This specialty was chosen due to the high turnover of patients, variable operating procedure times, and high infection-risk surgical procedures.

Data Collection

All healthcare workers (HCWs) directly or indirectly involved in the surgical care of the patient, entering the OT at the time of observation, were included in the study. Prior to the data collection, consent was obtained from the GI chief surgeon and the head of anesthesia and the nurse in charge. Verbal consent was obtained from HCWs present in the OT on the days of data collection after informing them about the study and the broad objectives of the researcher’s presence.

Ethnographic observations captured all clinical activities and communication between role players (including the patient) along a timeline from the patient in the preoperative room to the postoperative recovery room (Fig. 1). Roles played by each HCW regarding preoperative (communication with patient/carer, intubation, surgical antibiotic prophylaxis, catheter insertions, and patient positioning and draping), intraoperative (main surgical tasks including surgical incision and closure, availability of supplies, and monitoring of parameters), and postoperative activities (extubations, communication with patient/carer, and cleaning) were observed.

FIGURE 1. Illustration of data collection methods along the patient’s surgical pathway.

Team communications regarding IPC-related interactions were captured using sociograms on a prevalidated data collection sheet, based on existing research carried out by the team.30 We focused on 3 specific components: (1) team interactions during patient intubation which included insertion of central lines and Foley`s urinary catheters, (2) the surgical incision, and (3) the WHO checklist discussion.

Counts of door openings to capture traffic flow were performed in 15-minute episodes every hour from the time of surgical incision until wound closure using a validated tool to guide data collection.35 Time in minutes and hours was used as a reference to relay events. Details on the role player and the reason for movement were documented through observed actions or communication. Nonidentifiable reasons for doors opening were categorized as “unknown.”

Ethnographic observations were conducted across 4 surgical procedures to generate a contextual understanding of the current team practices. Door openings and mapping of sociograms commenced from the fourth and fifth observations, respectively. The result was a structured and standardized data collection process. We used convenience sampling and collected ethnographic data until saturation was reached and no new themes emerged. Figure 1 illustrates the data collection plan and application of methods along the patient’s surgical pathway.

Thereafter, FGDs were organized with members of the OT teams for reflexive feedback. The main purpose was to provide teams with visual data on their practices and facilitate a discussion to gain their thoughts and insights. A discussion guide, drawn up by the researchers, aimed to elicit information on the rationale to practice that was observed in the OT. Recordings from FGDs were transcribed and reviewed.

Data Analysis

Iterative data analysis, drawing on elements of grounded theory,36 explored themes and relationships within the data collected, aided by NVivo V.12 software (Lumivero, Denver, CO) and commenced shortly after the ethnographic data collection started. Two researchers (S. Surendran and C.B.) began by each independently coding the same subset of data and comparing the coding, and through regular discussion and consensus, developed a draft framework of the emerging themes. This framework was then used to code the remaining data. Constant comparison enabled within-narrative and between-narrative comparison of the emerging data and the identification of key themes.34,37 Cross-cutting themes relevant to communication on IPC were identified within the framework. The themes identified through the qualitative framework allowed for contextual analysis of the sociogram data. Sociograms were interrogated to extract the topic of individual interactions initiated by OT staff members. In preparation for the FGDs, data analysis was completed 2 weeks after the last patient pathway observation.

Ethical Approval

Ethical approval for the study was granted by the Institutional Ethics Committee at Amrita Institute of Medical Sciences (IEC-AIMS-2018-INF.CONT-005A).

RESULTS

We conducted over 51 hours of direct observations in the OT across 10 surgical procedures (Table 1). Sixteen sociograms were generated to map team communication regarding IPC-related interactions in 7 surgical procedures. The team dynamic through intraoperative door openings in the operating room was assessed during 15-minute time points across 7 surgical procedures. Finally, 3 FGDs were held with surgeons and surgical residents (6 participants); anesthetists and anesthesia technicians (3 participants); and nurses and surgical technicians (7 participants).

TABLE 1. Characteristics of Patients, Surgical Procedure, and OT Included in the Study

Surgical Case Number	Patient Details (Age/Gender)	Surgery	Duration of Observation	Number of Focused Observations to Tally OT Door Openings	Number of Sociograms	
1	60/Female	Transverse colectomy	6 h 37 min	0	0	
2	63/Male	Sigmoid colectomy	6 h 46 min	0	0	
3	55/Female	Laparoscopic hernia repair with mesh	2 h 50 min	0	0	
4	50/Female	Laparoscopic hernia repair with mesh	3 h 16 min	2	0	
5	51/Male	Hernia repair with mesh (open)	5 h 12 min	3	2	
6	59/Male	Laparoscopic cholecystectomy	3 h 50 min	3	4	
7	66/Female	Diagnostic laparoscopy sleeve resection of gastrointestinal stromal tumor	3 h 38 min	2	2	
8	49/Female	Transanal endoscopic operation	3 h 17 min	1	3	
9	66/Male	Laparoscopic cholecystectomy	2 h 25 min	2	2	
10	80/Male	Diagnostic laparoscopy and partial colectomy	3 h 00 min	2	3	

Roles, Tasks, and Practice Domains Within the OT Teams

Surgical care of the patient requires an overlap of various activities by multiple role players across surgical, anesthesia, and nursing teams. Table 2 maps the explicit roles and responsibilities of various HCWs as identified by the observations. HCWs share an understanding about roles, associated tasks, and domains of practice that are identified through repeated observed routine activities. The coordination of specific surgical tasks is usually activated through a verbal directive.

TABLE 2. Roles and Responsibilities of Different Stakeholders, as Identified During Observations

Activities	Senior Surgeon	Surgical Resident	Surgical Technician	Anesthetist	Anesthesia Resident	Anesthesia Technician	Scrub Nurse	Circulating Nurse	
Preoperative									
 Communication with patient/carer			▲	⚪	▲	⚪		⚪	
 Intubation				⚪	▲	▲			
 Administering antibiotic prophylaxis				⚪	▲	▲			
 Foley’s insertion		▲	⚪						
 Intravenous line insertion				⚪	▲	▲			
 Central line insertion				⚪	▲	▲			
 Patient positioning		▲	▲		⚪	⚪		⚪	
 Draping patient		▲	⚪			⚪	▲		
Perioperative									
 Wound incision		▲							
 Assuring the availability of surgical instruments in OT			▲			⚪	▲	▲	
 Performing the surgery	▲	▲							
 Surgical assistant		▲					▲		
 Monitoring patient parameters					▲				
 Wound closure		▲							
WHO checklist								▲	
Documentation-on board, papers/forms		⚪			▲			▲	
Postoperative									
 Extubation			⚪	⚪	▲	▲		⚪	
 Communication with patient/carer			⚪	⚪	▲	⚪			
 Cleaning the OT			⚪			⚪	⚪	⚪	
▲, primary role; ⚪, secondary role.

Shifts in leadership and communication on the direction of care are noted between teams throughout surgical procedures. Nurses and surgical technicians prepare the OT for the surgical procedure. The anesthesia team leads the preparatory phase that includes intubation. After intubation, the command shifts to the surgical residents. As a norm, the senior surgeons enter the OT after the surgical incision. After surgical closure and during extubation, the anesthetist resumes leadership of the surgical process. Nurses and technicians are present throughout and the scrub nurse maintains a pivotal role in directing activities requested by the surgeon or anesthetist.

During the feedback discussion, team members concurred with the role allocations observed. The surgeons explained that the communication pathway was intentionally designed to keep/maintain focus on the patient undergoing surgery (X1, Table 3).

TABLE 3. Illustrative Excerpts From Field Notes and Focus Group Discussions to Support the Key Emerging Themes

Theme	ID	Quote	
Roles, tasks, and practice domains within the OT teams	X1	“That is how the system is designed. The scrub nurse is the point of communication for all things. The surgeon is supposed to be only focused on the field. He is not supposed to be trying to talk to the circulating [nurse]. The scrub nurse’s job is the point of communication and like our team manager, kind of all instruments, all materials, organizing...” Focus group discussion, Surgeon	
Team dynamics and flow of communication in the OT	X2	The surgical resident said, “Get ready for local anesthesia.” The anesthetic registrar filled a syringe and gave it to the scrub nurse. Observation notes, Observation number 4	
X3	The needle fell off while the surgical resident was trying to make the stitch inside the wound. The scrub nurse said “Don’t hold so firmly. Hold it gently”. The resident nodded and tried again. Observation notes, Observation number 3	
X4	Surgeons left the OT mid-procedure to attend to something else and the nurses and technicians were having a conversation. The scrub nurse said, “Don’t know what they will be doing next and how much more time they will take…” Observation notes, Observation number 2	
Uptake and application of the WHO safety checklist	X5	While the surgery was underway, I saw the anesthetic resident signing some forms. One of the forms included the WHO checklist. Except for the completion of the patient demographics, the rest of the form was blank. The checklist was not discussed today. Observation notes, Observation number 7	
X6	“I think sometimes the circulating nurse is the junior person and at times when they start it (WHO checklist) at the very beginning of the surgery, anesthetists are hectic, surgeons are hectic and they are a little scared to tell everybody to stop, finish the checklist, and then proceed. So, that is not happening, so everybody is overriding this one. I have seen it a few times including when I was operating. They will start and we will be opening like you said” Focus group discussion, Surgeon	
Traffic flow in the OT environment and their reasons	X7	“We only have one mesh for hernia, and we found out that it is not kept in the OT, also things were taken and misplaced, and items were charged to certain staff or just charged to the patient unnecessarily. Those kinds of issues have made the system such that certain items are only fetched when they are asked for during the operation.” Focus group discussion, Surgeon	
X8	“We do not have a storeroom- a common place to keep, what we do have, you know, all the serial forms are kept in OT 11. It is like that. The glucometer is kept in OT 14. Anybody needs from that corner will come to that OT” Focus group discussion, Anesthetist	
X9	“Each time, you know, somebody has to come in to relieve. Because our days are long. So, they need to be relieved to go the toilet, to go for a cup of coffee or you know those things, someone has to come in for that.” Focus group discussion, Anesthetist	

Team Dynamics and Flow of Communication in the OT

Communication is generally direct and between role players in the OT. Surgeons and anesthetists communicate clear requests that are directed at specific role players (X2, Table 3). A delay in response is noted where requests or instructions are not directed at specific role players. The scrub nurse, who assists the surgeon in the procedure, acts as a mediator for the flow of communication between the surgical team and the supporting staff in the OT. Requests or instructions to arrange materials are directed at the scrub nurse, who in turn, redirects these to the surgical technician or the circulating nurse. Initiation of communication is usually top-down where nurses and technicians mostly respond to communication initiated by surgeons and anesthetists. Positive team dynamics are noted by support staffs’ response to a nonverbal request for equipment, such as an “out-stretched palm” or “pointed with their eyes.” Figure 2 illustrates communication patterns through a sociogram, alongside a description.

FIGURE 2. Sociogram illustrating the communication during a patient intubation.

Verbal communication during routine tasks, such as administering antibiotic prophylaxis and inserting invasive devices, was minimal, posing a challenge in mapping the sociograms. Sociograms did, however, aid in identifying HCWs involved in the procedures and the communication direction during these procedures, even when the dialogue was not necessarily specific to infection care. Before the procedure, the senior surgeon communicated the required antibiotic choice with the resident. Typically, the resident announced the first dose administration, but not the second. At the procedure’s end, the circulating nurse asked the resident for the timing of the second administration to complete details on the anesthetic records.

The presence of a senior surgeon alters the patterns and the ease of HCW communication in the OT. In their absence, the flow of communication is casual and open. In contrast, when the senior surgeon is present, the room is quieter and spontaneous conversations between HCWs are less likely. In their absence, the scrub nurse plays a lead role in supporting the surgical resident (X3, Table 3).

The scrub nurse ensures that sufficient equipment and consumables are available for planned and unplanned patient-specific surgical needs. However, they are not always informed on the next steps in surgery in a timely manner. While routine procedures and their experience enable some level of planning, instances are noted where they receive late unanticipated instructions. This impacts the ready availability of required materials and instruments. Last-minute runs to procure required items delay and slow down the surgical process (X4, Table 3).

Uptake and Application of the WHO Safety Checklist

While completing the WHO checklist25 during the patient’s surgery is a requirement, it is rarely discussed in practice. The checklist is referred to in 3 of the 10 observed surgical procedures (X5, Table 3). Within this small sample, practices to complete the checklist varied. In one observation, the form was completed in silence with no verbal check-in from the team members, while in another, the circulating nurse read out the various sections. Figure 3 illustrates a WHO checklist check-in, led by the circulating nurse.

FIGURE 3. Communication surrounding WHO checklist before surgical incision.

The sociogram data on WHO checklist communication were presented to the HCWs during the feedback meetings to gauge their response to the inconsistent checklist utilization. While expressing surprise, the participants linked the poor compliance to a lack in nurse confidence (X6, Table 3). The high turnover of nursing staff was also referred to as a contributing factor especially when newly joined nurses were tasked to lead the check-in. A strategy suggested during the FGD was to empower the nurses.

Traffic Flow in the OT Environment and Their Reasons

Among the 15 observations of staff traffic flow captured across 7 surgical procedures, a mean of 14 door openings in a 15-minute slot is observed, corresponding to an average frequency of 56 door openings per hour. The frequency varies between 19.2 and 52.8 door openings per hour, with a range between 4 and 27 door openings. During these transits, sometimes, the door is unintentionally left half open. Doors are mostly opened by the outside staff (42.1%) followed by surgical technicians (19.1%) and nurses (16.3%). Figure 4 provides a visual illustration of the frequency of door openings in one procedure from incision to closure and demonstrates staff movement (by category) in 5-minute time intervals.

FIGURE 4. Illustration of the number of door openings per 5 minutes and categories of staff identified in the traffic flow from the incision (10:25 am) to closure (1:05 pm) from one-bed space observation.

Figure 4 was presented to the OT teams to provide an opportunity to reflect on and analyze their own practices. OT members explained that senior surgeons made decisions on specific surgical equipment or supplies. Since they generally only arrived after incision, there was a delay in procuring what was needed, often resulting in increased traffic flow and further door openings (X7, Table 3).

The surgical and nursing team considered introducing a checklist of required items for each procedure to ensure timely procurement ahead of the surgery.

HCWs or others who were not involved in the patient’s surgery largely contributed to the flow of traffic through the theater. A lack of central storage meant that surgical equipment and supplies were kept in cupboards across various OTs causing traffic flow (X8, Table 3). Additionally, intraoperative replacement staff to enable short relief breaks during longer procedures or, informal check-ins with colleagues and patients in neighboring OTs, generally for matters unrelated to the patient also contributed to frequent door openings (X9, Table 3).

On reflection, the anesthesia team proposed a dedicated storage space closer to the OTs and the surgical team recommended adaptions to the design of a new OT that was underway. The adaption was to change the position of the bed to reduce the disturbance in airflow caused by door openings. Since most of the anesthetist’s work was concentrated at the head-end of the bed, having the head of the bed closest to the door meant that traffic flow for anesthesia-related equipment was reduced through the rest of the theater.

DISCUSSION

In this study, we used innovative tools to investigate team dynamics and practices in the OT to understand its influence on IPC outcomes and to provide reflexive feedback opportunity to surgical team members. Data methods employed highlighted (1) the strong influence of the senior surgeon in the team hierarchies, dynamics, and communication, (2) the place of nonverbal communication in routine activities, (3) the role of the scrub nurse as a mediator, coordinating tasks/activities across hierarchies, (4) the lack of anticipation and communication on the plan of events generating a high traffic flow, and (5) the poor communication around the WHO checklist. The presentation of these results via visual methods provided reflexive feedback discussion leading to actions for improvement such as nurse empowerment, a proposal for a new storage room for anesthesia equipment, and a change in the design of the OT structure itself.

The role played by HCWs in the operation theater is critical for the successful outcome of surgical procedures.38 Role demarcation across staff members was previously considered to be one of the elements of “good” teamwork, with team members’ ability to effectively fulfill their separate roles contributing to efficient team functioning.8 During the surgical procedure observed in the present study, individual roles, associated tasks, and domains of IPC practice on routine activities were shared between role players. Team dynamics in the OT was altered by the presence of the senior surgeon with changes observed in the level of spontaneity between all categories of HCW communication and initiators of communication. The influence of hierarchy on team dynamics has been reported by several other studies.6,39–41 In a qualitative study from Sri Lanka, professional power, hierarchy, socialization, patriarchy, and gender norms influenced interprofessional collaboration and created barriers to communication between surgeons and nurses.8 As junior surgeons derive their understanding of appropriate practices mainly from observing senior surgeons, the development of nontechnical skills by senior surgeons through reflexive feedback of observations on that domain appears critical to improve communication in future generations. The identification of key stakeholders may lead to targeted interventions to improve communication and promote patient safety. By providing targeted training, organizations can ensure that their staff members are equipped with the necessary knowledge and skills to carry out their roles effectively.

Communication plays an important and complex role in the OT. Without effective communication to create inclusive environments, and coordinate the multiplicity of tasks involved in surgery, teamwork cannot be successful. An ethnographic study conducted in Denmark described the silent and ordinary communication pattern as guided by shared goals and characterized by mutual respect, among teams performing routine surgical procedures of short duration.14 In our study, nonverbal communication highlighted responsive teamwork and the experience of working together. However, in some cases, such as teams with large turnover, nonverbal communication may lead to breaches in the multiplicity of tasks involved in surgery and unsuccessful teamwork. As performed in the present study, the use of nonverbal communication can be examined by direct observations of work practices in the OT,10 for reflexive feedback on the efficacy and ways to improve clinical practice and feed into training and education.

A qualitative evaluation of the WHO checklist described how utilization is influenced by a range of organizational, system, team, and checklist-specific factors.42 A lack of buy-in and insight into the relevance of the tool (which was also noted in our study) and staff feeling that it is a time-consuming exercise creating inefficiencies in the running of operating lists are some of the reasons for suboptimal use.42 Identifying setting specific challenges requires locally collected data that is personally relevant and persuasive to local teams. A gap remains in developing methods by which the impact of the checklist on case-by-case team performance can be captured and fed back to teams.42

The traffic flow may appear as a surrogate of the discipline and teamwork in the OT but also of the infectious risk and overall patient safety. Among the 10 observations, the frequency varied between 19.2 and 52.8 per hour while the analysis of published studies described a frequency varying from 5 to 102 per hour.27 The main documented reasons for door openings were a need for supplies or information, but the reason remains unknown in half of these openings. Door openings adversely affect air exchange, air quality, and positive pressure in the OT compared with adjacent rooms,43 but also increase interruptions and distractions.19,44 As found in the present study, the unnecessary entries/exits, estimated in the literature to be approximately 60% of the total, are mainly due to a lack of preparation and organization. Several easy elements could lead to improvement: the storage of components and frequently used instruments in the OT, a clear and advanced communication strategy, a shift change of the surgical team prepared in advance, a sign on the door advising caution, proper education of OT team and visitors, and a robust audit process. The leadership of the surgeon and the head nurse is probably the cornerstone of the discipline and the organization in the OT. The awareness and improvement process through regular audit and feedback may lead to decreased risks associated with the traffic flow during procedures.

We found the use of visual methods for feedback to be an effective means of promoting team reflection and enhancing awareness of practices among surgical teams.30 This approach facilitates the processing of complex information by presenting it in a visually engaging and easy-to-understand format.45 By using visual aids, such as graphs, charts, and diagrams, surgical teams are better able to comprehend the data and identify areas that require attention. This was also found in a study that used visual tools for flow mapping in the OT.46 The visual feedback approach encourages team collaboration and communication, allowing team members to discuss and analyze the information together. Overall, the use of visual methods for feedback has proven to be an efficient tool for promoting self-reflection and improvement within surgical teams, ultimately contributing to the delivery of high-quality patient care.30,47 Utilizing multiple visual tools to aid reflexive feedback to teams can be readily implemented by hospitals to enhance teamwork and communication among HCWs. In addition to providing specific recommendations to the study setting, Supplemental Table 1, see http://links.lww.com/AOSO/A392, provides recommendations for how other settings could use similar methodologies for quality improvement to map and improve OT theater team dynamics and communication on antimicrobial stewardship and IPC-related practices.

This study has several limitations. First, since there was no standard method in place for such a study, we leveraged our prior experience with data collection at the study site to formulate a data collection strategy. During the initial stages of the study, this approach necessitated a trial-and-error process to refine and standardize our methodology. Second, observations were conducted in one surgical specialty in a single center during surgeries of relatively shorter duration. The findings may not provide a comprehensive understanding of OT practices, which are likely to vary across different surgeries. Third, HCWs were aware of the observations as we asked for their consent, potentially leading to a Hawthorne effect. Fourth, we did not factor in the gender of the team members in the analysis and interpretation of our results. Gendered hierarchies in surgical teams may influence team dynamics and communication. Finally, while our study revealed significant interest among HCWs, the long-term impact and sustainability of these changes could not be ascertained due to the limited duration of our investigation.

In conclusion, the feedback from ethnographic observations through visual representations and FGDs represents an opportunity to routinely improve human factors in the operating room. In this study, this strategy highlighted the influence and roles of stakeholders on the communication, teamwork, and traffic flow guiding meaningful feedback and accurate actions to enhance practices and ensure safe patient outcomes in GI surgery.

ACKNOWLEDGMENTS

The authors wish to thank all the members of the Amrita Institute of Medical Sciences and Amrita Hospital in Kochi Kerala for access to their surgical teams, research support during data collection and for their collaboration and positive contributions to the development of the work and this manuscript.

E.C., G.B., S. Surendran, V.N., and C.B. contributed to the protocol development and design of the study. E.C. and G.B. led the study and S. Surendran collected data. S. Singh enabled access to the teams and the study site and S.M. and S.O. supported the data collection process. E.C., G.B., S. Surendran, S.O., S.M., and C.B. contributed to data analysis. E.C., G.B., S. Surendran, and C.B. wrote the initial manuscript draft, and all authors critically revised the content of the manuscript. All authors and collaborators read and approved the final version.

Supplementary Material

S. Surendran and C.B. are joint first authors.

G.B. and E.C. are joint last authors.

Disclosure: The authors declare that they have nothing to disclose. This study was supported and funded by National Institute for Health Research, UK Department of Health in partnership with Public Health England, Economic and Social Research Council. E.C. is supported by Wellcome Trust Career Development Award 225960/Z/22/Z. M.M. and E.C. acknowledge funding from the Wellcome Trust (226690/Z/22/Z). C.B. and O.M. acknowledge funding from the National Research Foundation Thuthuka grants (TTK220318239 and TTK200414512997).

Supplemental digital content is available for this article. Direct URL citations appear in the printed text and are provided in the HTML and PDF versions of this article on the journal’s Web site (www.annalsofsurgery.com).
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