• 제목/요약/키워드: Surgical Instruments

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Robotics for Advanced Therapeutic Colonoscopy

  • Wong, Jennie YY;Ho, Khek Yu
    • Clinical Endoscopy
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    • 제51권6호
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    • pp.552-557
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    • 2018
  • Although colonoscopy was originally a diagnostic imaging procedure, it has now expanded to include an increasing range of therapeutic interventions. These procedures require precise maneuvers of instruments, execution of force, efficient transmission of force from the operator to the point of application, and sufficient dexterity in the mobilization of endoscopic surgical instruments. The conventional endoscope is not designed to support technically demanding endoscopic procedures. In case of colonoscopy, the tortuous anatomy of the colon makes inserting, moving, and orientating the endoscope difficult. Exerting excessive pressure can cause looping of the endoscope, pain to the patient, and even perforation of the colon. To mitigate the technical constraints, numerous technically enhanced systems have been developed to enable better control of instruments and precise delivery of force in the execution of surgical tasks such as apposing, grasping, traction, counter-traction, and cutting of tissues. Among the recent developments are highly dexterous robotic master and slave systems, computer-assisted or robotically enhanced conventional endoscopes, and autonomously driven locomotion devices that can effortlessly traverse the colon. Developments in endoscopic instrumentations have overcome technical barriers and opened new horizons for further advancements in therapeutic interventions. This review describes examples of some of these systems in the context of their applications to advanced therapeutic colonoscopy.

최소침습수술용 Grasper의 힘반영 원격제어 (Force-Reflected Teleoperation of Grasper for Minimum Invasive Surgery)

  • 윤병성;장대진;박태욱;양현석
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2003년도 추계학술대회
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    • pp.1470-1475
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    • 2003
  • The senses that a doctor can feel is limited in MIS(Minimal Invasive Surgery) which guarantees the fast recovery of the patient and minimal incision for going in and out of instruments through the tissue of the patient. In particular, the surgical robotic teleoperation system developed recently serves with only the information of eyesight and auditory sense. Therefore force-reflection is the most demanded element of the senses in manipulating surgical instruments. In this paper, we designed the Master system and the 2 D.O.F grasper for the robotic teleoperation system(Slave) that has two force sensors on the grasper. Particularly, we focused on serve to master's handle with the contact force between tissue and the grasper of Slave.

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Supraorbital Keyhole Approach for Intracranial Aneurysms : Transitioning from Concerns to Confidence

  • Park, Jaechan
    • Journal of Korean Neurosurgical Society
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    • 제63권1호
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    • pp.4-13
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    • 2020
  • For surgical minimalism to reduce iatrogenic traumatization, a supraorbital keyhole approach has already been successfully applied to treat many unruptured anterior circulation aneurysms. However, using this minimal approach also raises several technical concerns due to the small cranial opening and cosmetic impact of a facial incision. Yet, such technical limitations can be overcome by using favorable surgical indications, slender surgical instruments, and optimized surgical techniques, while excellent cosmetic outcomes can be achieved using a short skin incision located <1 cm from the supraorbital margin, reconstruction of any bone defects around the bone flap, and meticulous wound closure. Thus, given such reassuring surgical results, in terms of the clipping status, neurological effects, and cosmetic outcomes, any concerns can be transitioned into confidence.

내시경 수술 도구의 수동 조작 메커니즘 및 이의 최적 형상 설계 (Hand-controller Mechanism and its Optimal Design Method for Manually Controlled Endoscopic Surgical Instrument)

  • 이호열;송찬호;손재범
    • 로봇학회논문지
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    • 제14권3호
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    • pp.203-210
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    • 2019
  • This paper proposes a hand-controller mechanism for manually controlled endoscopic surgical instruments. A wire-driven mechanism is typically adapted for endoscopic surgical tools because motors cannot be embedded to the joints due to the size limitation. The wire-driven mechanism requires length control of wires that are pulled and released according to the desired joint angle. It is difficult for the operator to control individual wire lengths intuitively. The hand-controller mechanism should be able to control the wires easily without complex processes. For this purpose, we propose a mechanism that can control the wire lengths with a simple mechanical structure and its optimal design method using genetic algorithm. We show the simulation and experimental results to confirm the proposed mechanism and design methods are useful for the manually controlled endoscopic surgical instrument.

수동 조작 내시경 수술 도구를 위한 힘이 증가된 연속체 메커니즘 및 이의 최적 형상 설계 (Continuum Mechanism with increased force and Optimal Design Method for Manually Controlled Endoscopic Surgical Instrument)

  • 이호열;정의성;정유수;박영상;송찬호;손재범
    • 로봇학회논문지
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    • 제16권2호
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    • pp.164-171
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    • 2021
  • This paper proposes a continuum mechanism for manually controlled endoscopic surgical instruments. The wire-driven mechanism is typically adapted for endoscopic surgical tools because motors cannot be embedded to the joints due to the size limitation. However, the conventional wire-driven mechanism has inherent problems caused by redundancy, such as deflection and low precision. It does not have operating force and manipulability for surgery. Therefore, a method to increase the force of the continuum mechanism using a multi-wire with simple mechanical structure is proposed. Moreover, for intuitive operation, a hand-controller mechanism that can manipulate the length of the wire without complex process is proposed. Finally, we show that the proposed mechanism and methods are applicable to endoscopic surgical tools through simple experiments.

코로나바이러스감염증-19 상황에서 임상실습 중 치위생(학)과 학생의 감염관리 인식과 치과의료기관의 감염관리 수행정도 (Dental infection control in clinical practice institutions experienced by dental hygiene students in the COVID-19 situation)

  • 손정희;정서영
    • 대한치과의료관리학회지
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    • 제9권1호
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    • pp.25-31
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    • 2021
  • The aim of this study was to investigate the level of dental infection control experienced by dental hygiene students in clinical practice institutions to identify problems and improve infection control in dental institutions. This study conducted online surveys targeting 269 dental hygiene students from universities that conducted clinical practice to determine the students' level of awareness regarding dental infection control in dental institutions and the reality of infection control in dental institutions. The results showed that dental hygiene students recognized the need for infection control and education about infection control at a high level. However, only 47% of the students were accurately informed about COVID-19. Basic instruments, periodontal instruments, and implant surgical instruments were sterilized after use for each patient, mostly by the institution, but 3-way syringe tips, preservation instruments and prosthetic instruments were more frequently reused without sterilization immediately after use. For dental infection control to be practiced at dental institutions, it is necessary to establish a systematic and safe infection control system, including infection control education, designation of infection managers, and provision of infection control guidelines.

Total robotic right hepatectomy for multifocal hepatocellular carcinoma using vessel sealer

  • Peeyush Varshney;Vaibhav Kumar Varshney
    • 한국간담췌외과학회지
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    • 제27권1호
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    • pp.95-101
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    • 2023
  • Rapid adoption of a robotic approach as a minimally invasive surgery tool has enabled surgeons to perform more complex hepatobiliary surgeries than conventional laparoscopic surgery. Although various types of liver resections have been performed robotically, parenchymal transection is challenging as commonly used instruments (Cavitron Ultrasonic Surgical Aspirator [CUSA] and Harmonic) lack articulation. Further, CUSA also requires a patient-side assistant surgeon with hepatobiliary laparoscopic skills. We present a case report of total robotic right hepatectomy for multifocal hepatocellular carcinoma in a 70-year-old male using 'Vessel Sealer' for parenchymal transection. Total operative time was 520 minutes with a blood loss of ~400 mL. There was no technical difficulty or instrument failure encountered during surgery. The patient was discharged on postoperative day five without any significant complications such as bile leak. Thus, Vessel Sealer, a fully articulating instrument intended to seal vessels and tissues up to 7 mm, can be a promising tool for parenchymal transection in a robotic surgery.

Use of elevator instruments when luxating and extracting teeth in dentistry: clinical techniques

  • Mamoun, John
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제43권3호
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    • pp.204-211
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    • 2017
  • In dentistry, elevator instruments are used to luxate teeth, and this technique imparts forces to tooth particles that sever the periodontal ligament around tooth roots inside the socket and expand alveolar bone around tooth particles. These effects can result in extraction of the tooth particles or facilitate systematic forceps extraction of the tooth particles. This article presents basic oral surgery techniques for applying elevators to luxate teeth. Determination of the optimal luxation technique requires understanding of the functions of the straight elevator and the Cryer elevator, the concept of purchase points, how the design elements of elevator working ends and tips influence the functionality of an elevator, application of forces to tooth particles, sectioning teeth at furcations, and bone removal to facilitate luxation. The effectiveness of tooth particle luxation is influenced by elevator tip shape and size, the magnitude and the vectors of forces applied to the tooth particle by the tip, and sectioning and bone removal within the operating field. Controlled extraction procedures are facilitated by a dental operating microscope or the magnification of binocular surgical loupes telescopes, combined with co-axial illumination.

광추적기와 내부 비전센서를 이용한 수술도구의 3차원 자세 및 위치 추적 시스템 (3D Orientation and Position Tracking System of Surgical Instrument with Optical Tracker and Internal Vision Sensor)

  • 조영진;오현민;김민영
    • 제어로봇시스템학회논문지
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    • 제22권8호
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    • pp.579-584
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    • 2016
  • When surgical instruments are tracked in an image-guided surgical navigation system, a stereo vision system with high accuracy is generally used, which is called optical tracker. However, this optical tracker has the disadvantage that a line-of-sight between the tracker and surgical instrument must be maintained. Therefore, to complement the disadvantage of optical tracking systems, an internal vision sensor is attached to a surgical instrument in this paper. Monitoring the target marker pattern attached on patient with this vision sensor, this surgical instrument is possible to be tracked even when the line-of-sight of the optical tracker is occluded. To verify the system's effectiveness, a series of basic experiments is carried out. Lastly, an integration experiment is conducted. The experimental results show that rotational error is bounded to max $1.32^{\circ}$ and mean $0.35^{\circ}$, and translation error is in max 1.72mm and mean 0.58mm. Finally, it is confirmed that the proposed tool tracking method using an internal vision sensor is useful and effective to overcome the occlusion problem of the optical tracker.

Accuracy of a direct drill-guiding system with minimal tolerance of surgical instruments used for implant surgery: a prospective clinical study

  • Lee, Du-Hyeong;An, Seo-Young;Hong, Min-Ho;Jeon, Kyoung-Bae;Lee, Kyu-Bok
    • The Journal of Advanced Prosthodontics
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    • 제8권3호
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    • pp.207-213
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    • 2016
  • PURPOSE. A recently introduced direct drill-guiding implant surgery system features minimal tolerance of surgical instruments in the metal sleeve by using shank-modified drills and a sleeve-incorporated stereolithographic guide template. The purpose of this study was to evaluate the accuracy of this new guided surgery system in partially edentulous patients using geometric analyses. MATERIALS AND METHODS. For the study, 21 implants were placed in 11 consecutive patients using the direct drill-guiding implant surgery system. The stereolithographic surgical guide was fabricated using cone-beam computed tomography, digital scanning, computer-aided design and computer-assisted manufacturing, and additive manufacturing processes. After surgery, the positional and angular deviations between planned and placed implants were measured at the abutment level using implant-planning software. The Kruskal-Wallis test and Mann-Whitney U test were used to compare the deviations (${\alpha}=.05$). RESULTS. The mean horizontal deviations were 0.593 mm (SD 0.238) mesiodistally and 0.691 mm (SD 0.344) buccolingually. The mean vertical deviation was 0.925 mm (SD 0.376) occlusogingivally. The vertical deviation was significantly larger than the horizontal deviation (P=.018). The mean angular deviation was 2.024 degrees (SD 0.942) mesiodistally and 2.390 degrees (SD 1.142) buccolingually. CONCLUSION. The direct drill-guiding implant surgery system demonstrates high accuracy in placing implants. Use of the drill shank as the guiding component is an effective way for reducing tolerance.