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Vivek Datta

Publications and source records attributed to Vivek Datta.

7 recordsLinked to original sources

Comparison of bench test evaluations of surgical skill with live operating performance assessments.

BACKGROUND: Attempts at assessing surgical proficiency have generally used laboratory simulation to evaluate skill. The aim of this study was to compare technical ability as measured on a bench simulation with actual operative performance. STUDY DESIGN: Twenty-two general surgeons and trainees were recruited: consultants (n = 4), specialist registrars (n = 14), and senior house officers (n = 4). They were assessed while performing a saphenofemoral dissection on an anesthetized patient in the operating theater, and performing the same procedure on an inanimate model within the laboratory. The Objective Structured Assessment of Technical Skill method, consisting of a 7-parameter global rating (maximum score 35) and 17-point step-by-step checklist (maximum score 17) was used to measure performance in both environments. Face, content, and construct validity of the synthetic model were established as part of this study. RESULTS: There was a significant relationship between technical skill as measured on the bench test model and performance within the operating theater with respect to both global rating (Spearman correlation coefficient 0.824, p < 0.001; alpha coefficient 0.89) and checklist ratings (r = 0.514, p < 0.02; alpha coefficient 0.68) rating assessments. Global rating scores correlated with experience for both operative (r = 0.822, p < 0.001) and bench (r = 0.515, p < 0.05) settings. There was no difference in level of measured performance between operating theater and bench model (global rating mean 23.25 +/- 6.66 versus 23.75 +/- 5.62, respectively; paired t-test p = 0.559). CONCLUSIONS: Assessment of technical skill using inanimate procedural simulation translates to actual surgical performance within the operating theater. This further validates use of bench test evaluations to measure surgical technical ability.

Clinical Competence↗

The surgical error examination is a novel method for objective technical knowledge assessment.

BACKGROUND: Objective analysis of surgical skill is necessary. A novel method of assessment using simple error analysis in synthetic models is examined for construct validity. METHODS: Two examination protocols were devised using synthetic models. These contained either a purpose made error or were representative of good surgical practice. Protocol one contained models of skin closure and minor operations. Protocol two in addition more complex procedures. Face validity was established by the approval of senior surgeons. Junior surgeons were recruited to undertake the assessment. A p value of less than 0.05 was deemed to be significant. RESULTS: Eighty-nine surgeons were recruited. Both protocol one and two were able to discriminate between groups at statistically significant levels. CONCLUSIONS: Construct validity has been established by showing that error analysis is able to distinguish surgeons with varying levels of experience.

Clinical Competence↗

Multiple Objective Measures of Skill (MOMS): a new approach to the assessment of technical ability in surgical trainees.

OBJECTIVE: The assessment of surgical technical skills has become an important topic in recent years. This study presents the validation of a 6-task skills examination for junior surgical trainees (at the level of the Membership of the Royal College of Surgeons). SUMMARY BACKGROUND DATA: Six tasks were evaluated in a project that also examined the feasibility of this method of assessment. The tasks were knowledge of sutures and instruments; knowledge of surgical devices; knot formation; skin-pad suturing, closure of an enterotomy; excision of a skin lesion; and laparoscopic manipulation. Comparisons were made between a group of junior trainees (n = 13), and a group of seniors (n = 8). RESULTS: Each of the 6 tasks was able to be used to discriminate between the 2 groups. In all, there were 19 primary analyses across the 6 tasks, and 17 of these showed significant differences between the groups (P values ranging from 0.037 to < 0.001). There was generally a strong correlation between the analyses, and when a mean rank was calculated, the difference between groups was significant (P = 0.005 on Mann-Whitney U test; mean ranks 13.9 and 6.3 [of 21], for juniors and seniors respectively). Reliability of the 6-task assessment was very good at 0.70 (Cronbach's Alpha). CONCLUSIONS: A skills examination is a feasible and effective method of assessing the technical ability of basic surgical trainees.

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The relationship between motion analysis and surgical technical assessments.

BACKGROUND: Recent attempts to gain a more objective measure of surgical technical skill include the use of structured checklists and motion analysis of surgeons' hand movements. We aim to show whether a correlation exists between these two methods of assessment. METHODS: Fifty subjects were recruited from four experience groups in general surgery, ranging from basic surgical trainees to consultants and were assessed performing a standardized laboratory-based task. Motion analysis using the Imperial College Surgical Assessment Device (ICSAD), which measures hand movements and time taken, and the Objective Structured Assessment of Technical Skill (OSATS) technique were used to measure skill. RESULTS: Number of movements made, time taken, and global rating score discriminated between performance and experience group (Kruskal-Wallis, P <0.001, P <0.01, P <0.001, respectively). There was a significant correlation between movements made and global rating score (Spearman coefficient 0.53, P <0.01). Checklist scoring was not an accurate predictor of experience. CONCLUSIONS: There is a strong correlation between hand motion analysis using ICSAD and OSATS global rating assessments in this model.

Clinical Competence↗

Electromagnetic motion analysis in the assessment of surgical skill: Relationship between time and movement.

INTRODUCTION: Electromagnetic motion analysis is a promising method of assessing surgical skill in a skills-laboratory setting. There is a very strong correlation between movement and time data, and this study was conducted to determine whether this relationship is fixed, or whether it can vary. METHODS: : After a pilot study, four subjects were recruited. Each performed 30 trials of a simple standardized suturing task, alternating between 'normal', 'precise', and 'fast' strategies. The number of movements, and time to complete each task were recorded. RESULTS: Comparing the 'fast' to 'normal' strategies, there was a significant decrease in total number of movements per trial (P < 0.001), and time taken (P < 0.001). Regression analysis was performed to examine the relationship between the time taken and the number of movements, and revealed significant differences between both the fast (P = 0.006), and precise (P = 0.002) strategies, when compared to the normal strategy. DISCUSSION: This study confirms that the relationship between time and movements is not fixed, but varies with the operative strategy adopted for this simple suturing task.

Clinical Competence↗

Relationship between skill and outcome in the laboratory-based model.

BACKGROUND: Recent attention has been directed at developing quantitative assessments of surgical skill. This study aims to demonstrate whether objectively measuring differences in manual dexterity has an impact on a simulated surgical procedure. METHODS: Six general surgical trainees performed 5 polytetrafluoroethylene graft to artery anastomoses on a vascular model by using a standardized technique. Manual dexterity was objectively measured with (1) electromagnetic motion analysis: trackers applied to the backs of hands recorded and analyzed both hand movements and procedural time and (2) 4-parameter evaluation of the final product. Outcome parameters were assessed by (1) rate of anastomotic leakage and (2) smallest cross-sectional area of the anastomosis. RESULTS: The 2 objective measures of manual dexterity correlated closely (Pearson coefficient, 0.423; P <.02). Trainees with better manual dexterity scores produced better outcome measures. Those with better motion analysis scores produced anastomoses that leaked less (Pearson coefficient, 0.514; P <.01) and those with higher global evaluation scores had a larger anastomotic cross-sectional area (Pearson coefficient, 0.495; P <.01). Time taken for the procedure did not appear to influence either outcome measure. CONCLUSIONS: There is a significant correlation between objective measures of manual dexterity and the outcome measures in this model. This suggests that the outcome of a procedure can be predicted by measuring surgical skill.

Blood Vessel Prosthesis↗