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Robot-assisted procedures in pediatric neurosurgery.
De Benedictis, Alessandro; Trezza, Andrea; Carai, Andrea; Genovese, Elisabetta; Procaccini, Emidio; Messina, Raffaella; Randi, Franco; Cossu, Silvia; Esposito, Giacomo; Palma, Paolo; Amante, Paolina; Rizzi, Michele; Marras, Carlo Efisio.
Afiliação
  • De Benedictis A; Department of Neuroscience and Neurosurgical Unit and.
  • Trezza A; Department of Neuroscience and Neurosurgical Unit and.
  • Carai A; Neurosurgery, Department of Surgery and Translational Medicine, Milan Center for Neuroscience, University of Milano-Bicocca, San Gerardo Hospital, Monza.
  • Genovese E; Department of Neuroscience and Neurosurgical Unit and.
  • Procaccini E; Enterprise Risk Management, Medical Physics Department, Bambino Gesù Children's Hospital, IRCCS, Rome.
  • Messina R; Department of Neuroscience and Neurosurgical Unit and.
  • Randi F; Department of Neuroscience and Neurosurgical Unit and.
  • Cossu S; Department of Neuroscience and Neurosurgical Unit and.
  • Esposito G; Department of Neuroscience and Neurosurgical Unit and.
  • Palma P; Department of Neuroscience and Neurosurgical Unit and.
  • Amante P; Department of Neuroscience and Neurosurgical Unit and.
  • Rizzi M; Department of Neuroscience and Neurosurgical Unit and.
  • Marras CE; "Claudio Munari" Center for Epilepsy Surgery, Niguarda Hospital, Milan; and.
Neurosurg Focus ; 42(5): E7, 2017 May.
Article em En | MEDLINE | ID: mdl-28463617
ABSTRACT
OBJECTIVE During the last 3 decades, robotic technology has rapidly spread across several surgical fields due to the continuous evolution of its versatility, stability, dexterity, and haptic properties. Neurosurgery pioneered the development of robotics, with the aim of improving the quality of several procedures requiring a high degree of accuracy and safety. Moreover, robot-guided approaches are of special interest in pediatric patients, who often have altered anatomy and challenging relationships between the diseased and eloquent structures. Nevertheless, the use of robots has been rarely reported in children. In this work, the authors describe their experience using the ROSA device (Robotized Stereotactic Assistant) in the neurosurgical management of a pediatric population. METHODS Between 2011 and 2016, 116 children underwent ROSA-assisted procedures for a variety of diseases (epilepsy, brain tumors, intra- or extraventricular and tumor cysts, obstructive hydrocephalus, and movement and behavioral disorders). Each patient received accurate preoperative planning of optimal trajectories, intraoperative frameless registration, surgical treatment using specific instruments held by the robotic arm, and postoperative CT or MR imaging. RESULTS The authors performed 128 consecutive surgeries, including implantation of 386 electrodes for stereo-electroencephalography (36 procedures), neuroendoscopy (42 procedures), stereotactic biopsy (26 procedures), pallidotomy (12 procedures), shunt placement (6 procedures), deep brain stimulation procedures (3 procedures), and stereotactic cyst aspiration (3 procedures). For each procedure, the authors analyzed and discussed accuracy, timing, and complications. CONCLUSIONS To the best their knowledge, the authors present the largest reported series of pediatric neurosurgical cases assisted by robotic support. The ROSA system provided improved safety and feasibility of minimally invasive approaches, thus optimizing the surgical result, while minimizing postoperative morbidity.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Robótica / Procedimentos Neurocirúrgicos / Neurocirurgia Limite: Adolescent / Child / Child, preschool / Female / Humans / Male Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Robótica / Procedimentos Neurocirúrgicos / Neurocirurgia Limite: Adolescent / Child / Child, preschool / Female / Humans / Male Idioma: En Ano de publicação: 2017 Tipo de documento: Article