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Biomedical subjects

Lucian Panait

Publications and source records attributed to Lucian Panait.

5 recordsLinked to original sources

Virtual reality laparoscopic skill assessment in microgravity.

BACKGROUND: The objective of the study was to assess if performance of basic laparoscopic skills on a virtual reality (VR) simulator is impaired in microgravity relative to normal gravitational influences. MATERIALS AND METHODS: Fourteen subjects with various educational backgrounds underwent basic laparoscopy skill training for five consecutive days on the ground before flying aboard NASA's KC-135 zero-gravity laboratory. The participants performed basic laparoscopic exercises (clip applying, grasping, cutting, and suturing) on a VR laparoscopy simulator, both on the ground and during 25-s microgravity windows in parabolic flight. Skill levels after ground training were compared with skill levels in performing the same tasks in microgravity. Blinded reviewers measured the number of tasks successfully completed, tissue damage number, left and right hand path lengths during task execution, and percentage of task attempts that resulted in successful completion. RESULTS: A significant increase in tissue injury (t test, P < 0.05) and task erosion were seen in clip applying, cutting, and grasping in microgravity (45%, 20% and 57% decrease in task attempts that resulted in a successful completion, respectively). However, there was no significant difference in the left and right hand path lengths, and the total number of tasks successfully completed on the ground versus in microgravity, for any of the four laparoscopic exercises (t test, P > 0.05). CONCLUSION: This study demonstrates decreased efficiency and increased injury to the simulated tissues in performing laparoscopic skills during microgravity as compared to performing these skills in standard gravitational influence. Additional experiments are indicated to further develop and validate VR microgravity surgical simulation.

Aircraft↗

Robotic assistant for laparoscopy.

BACKGROUND: With the advent of technologies allowing for wider application of minimally invasive surgeries, the integration of telerobotics for mentoring by a surgeon at a remote site will make it possible to include a wider audience in surgical consultations and collaboration. MATERIALS AND METHODS: Two surgery research fellows performed 8 laparoscopic cholecystectomies each in a swine model, as the animate portion of the study. Using the Zeus robotic system, a senior surgeon participated as a robotic assistant and consulted remotely. Teleconsultation was achieved using Hermes voice-activated software to display an on-screen pointer highlighting significant anatomic structures. To clarify the workspace space constraints on the robotic arms, an inanimate study was conducted to carry out retrieval, delivery, and complex object movement. RESULTS: All the laparoscopic cholecystectomies were completed successfully, with minimal blood loss and no complications. The robotic assistant surgeon participated in all surgeries and instructed on anatomical landmarks. The robotic tools were at a disadvantage due to the radius of movement. The simpler tasks were easier to complete than the complex movement, which required bimanual coordination. CONCLUSION: This study confirms the feasibility of integrating robotics as a surgical assistant and to consult distant audiences by a single senior surgeon. Incorporating remote access assistance and education capacities extends the limits of physical restrictions in completing surgical procedures safely.

Animals↗

Measurement of laparoscopic skills in microgravity anticipates the space surgeon.

BACKGROUND: There clearly must be a surgical capability to support the exploration of the solar system by humans. We hypothesized that microgravity would impair surgical task performance and sought to measure degree and criticality of task erosion. METHODS: Twenty subjects performed basic laparoscopic exercises (grasping, cutting, clipping, and suturing) in an inanimate trainer on the ground and during the microgravity phase of a parabolic flight. Skill assessment involved time, accuracy, and force transfer. RESULTS: A decrease in the total number of on-target task completions was observed in microgravity compared with the ground performance for all tasks. The ratio between the total number of attempts and the number of completions was higher in microgravity. The amount of force introduced into the system was not significantly higher in microgravity. CONCLUSIONS: We conclude that although tasks are performed with much greater deliberation and work in microgravity, there is no barrier to accurate and effective laparoscopic surgery.

Aerospace Medicine↗

A review of telemedicine in Romania.

Romania is an eastern European country that is undergoing rapid reform of its medical system. We conducted an assessment of the potential for telemedicine in the country, through a literature review, personal visits to Romania and discussions with individuals from academia, the Ministry of Health and Family, and businesses. The results suggest that telemedicine has the potential to accelerate health-care reform. The main hospitals and universities could promote the wider distribution and development of telemedicine within Romania, which in turn would bring benefits to the Romanian people, 46% of whom live in rural areas.

Female↗

Surgical skill facilitation in videoscopic open surgery.

The operating room (OR) was traditionally characterized as a closed environment, in which the view of the operative field was available to the surgeon and assistant only. In laparoscopy, integration of technology into the surgical theatre has transformed surgical procedures into minimally invasive events, with viewing of the surgical field using endoscopic cameras. Similar technical advances to the open surgical environment will allow visualization and coordination of finer surgical maneuvers on standard video monitors. The objective of this study was to develop optimal protocols for performing basic open surgical maneuvers without direct viewing of the operating field, instead watching a monitor that displays the image of the surgical field captured by an endoscopic camera. The AESOP robotic arm and Alpha Virtual Port (Computer Motion, Goleta, California) were used to hold the endoscopic camera in different positions relative to the surgeon and the operative table. The surgeons conducting the study evaluated six such different setups. Based on the average time to complete the task in each of these setups and the ease of adaptation to the new working conditions, we concluded that at least one of these setups could be translated into the OR. The advantages of integrating video image enhancement over classical open surgery (OS) are that the surgical field can be magnified to perform finer maneuvers, and to share views of the surgical field with additional clinicians and trainees.

Clinical Competence↗