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At least 19 recordsLinked to original sources

A developmental history of thoracoscopic surgery.

Thoracoscopic surgery, an old yet new discipline, has a history of 88 years, undergoing 4 stages in its course of development, namely, development, flourishing, decline and rejuvenation. This author claims that its developmental history can be divided into 5 periods, viz. embryonic stage of traditional thoracoscopic surgery and its flourishing, stagnation period, and the development and mature period of modern thoracoscopic surgery. In China, this discipline starts rather late and lags behing the advanced level of the world as a whole.

China↗

Mediastinal tumor and application of thoracoscopic surgery.

Thoracoscopic resection of a mediastinal tumor or cyst was done in three patients: two with neurogenic tumors and one with a bronchogenic cyst. The tumors and cyst showed evidence of a discrete plane on computed tomography of the chest. The mean operation time and estimated blood loss were 156 min and 45 g, respectively. For all three patients, the chest drain was removed within 48 h after operation, and there were no complications related to thoracoscopic surgery. The advantages of this approach are less pain, early return to normal activity, and an acceptable cosmetic appearance. Based on our experience, thoracoscopic surgery is considered the treatment of choice for certain mediastinal tumors or cyst.

Adolescent↗

Preliminary experience with thoracoscopic surgery.

Thoracoscopic surgery was accomplished in 12 patients utilizing thoracoscopic instruments and a stapler. Five patients were treated for recurrent, spontaneous pneumothoraces, for which blebectomies were done; three patients for pulmonary nodules, for which wedge resections were done; one patient for cryptogenic pleural effusion; one patient for debridement of an empyema cavity; one patient for traumatic bronchopleural fistula; and one patient with AIDS for interstitial lung disease. All patients were done under general anesthesia in the lateral decubitus position and were prepped and draped for a standard thoracotomy. They underwent endobronchial double-lumen ventilation so that the ipsilateral lung could be deflated to create a working space. In addition, insufflation of 4 to 5 mmHg was also used. Trocars were placed using a blunt technique. The mid-axillary trocar was at about the eight intercostal space and was used for the endoscope, and then additional trocars were placed, usually on the anterior axillary line and posterior axillary line at about the fifth intercostal space. If adhesions were encountered, the lung was grasped atraumatically with a clamp or retractor used to give counteraction, and the adhesions were lysed with shears or electrocautery. After a thorough exploration of the hemithorax involved, the area of pathology was grasped with the clamp, which was used for countertraction. Through a 12 mm trocar, a stapler was introduced and fired. This staples and also transects on a 3 cm length. Several firings were usually necessary to remove the pathology, which, if malignant, was placed in a retrieval bag.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

[Thoracoscopic surgery].

Thoracoscopic operations were performed on 91 patients. In 52 patients operated on by thoracoscopic pleurodesis for pneumothorax, the results were compared with the results in 41 patients previously operated on by transaxillary thoracotomy. The groups did not differ with respect to duration of stay in hospital or minor complications, but the duration of postoperative sick leave was significantly reduced after thoracoscopic operation. In nine cases lung metastasis or primary lung tumours were removed thoracoscopically. Thoracoscopic evacuation were performed in seven cases of empyema or pleural haematoma. Two of these patients were later operated on by open decortication. The main advantages of thoracoscopic surgery are less postoperative pain and a shorter time away from work after operation than with open procedures.

Adolescent↗

[Thoracoscopic surgery and postoperative respiratory complications].

In minimally invasive surgery in a thoracic surgery, thoracoscopic surgery already has been recognized as effective procedure for benign disease of the lung and the mediastinum. On the other hand, induction of thoracoscopic surgery to lung cancer surgical treatment raises various problems. We reviewed clinical outcome about 'low invasiveness and a postoperative respiratory complication of thoracoscopic surgery' mainly on surgical treatment for lung cancer. Furthermore, in recent years there is a problem of surgical treatment for lung cancer that we developed for emphysema, interstitial pneumonia with increase of elderly patients. As for stage IA patients who underwent a lobectomy with mediastinal lymphadenectomy, we reviewed what kind of influence on postoperative complications and long-term prognosis with the change of thoracotomy methods.

Aged↗

Thoracoscopic surgery in a general surgical service.

Following the great success and wide acceptance of laparoscopic surgery, the mini-invasive approach has been adopted for use in thoracic surgery. Thoracoscopic surgery is gaining acceptability as the procedure of choice for the treatment of recurrent pneumothorax and bullous lung disease, peripheral benign and malignant lesions, diffuse pulmonary infiltrates, mediastinal and pleural lesions, esophageal surgery, and major pulmonary resections for primary lung tumors. We present the 4-year experience of a general surgery service that extended the use of its advanced laparoscopic skills to the performance of thoracoscopic surgery in 80 patients. Using thoracoscopy, we performed biopsy or excision of pulmonary lesions (23 patients), spontaneous pneumothorax (14 patients), thoracic sympathectomy (41 patients), and Heller's esophagomyotomy and pericardiotomy (1 patient each). The results are excellent, and we believe the procedures presented in this series, and similar ones, can be accomplished safely and successfully by well-trained laparoscopic surgeons.

Adult↗

Minithoracotomy with simultaneous video-assisted thoracoscopic surgery vs. video-assisted thoracoscopic surgery for spontaneous hemopneumothorax.

BACKGROUND: Spontaneous hemopneumothorax, a life-threatening and rare disorder and complication of primary spontaneous pneumothorax, is regarded as a surgical emergency. We have prospectively investigated the differences in safety and utility between minithoracotomy with simultaneous video-assisted thoracoscopic surgery (MT + VATS) and the video-assisted thoracoscopic surgery approach (VATS) in the treatment of spontaneous hemopneumothorax. METHODS: From Jan 1998 to May 2002, 248 patients with primary spontaneous pneumothorax were treated in our hospital. Among these patients, 12 (4.8 %) spontaneous hemopneumothorax occurred, all in the first episode of spontaneous pneumothorax. After tube thoracostomy, the amount of blood drainage ranged from 500 to 1,500 ml. 8 patients were treated by MT + VATS and 4 by VATS. RESULTS: During surgery, the sources of hemorrhage were all from the torn aberrant vessels between the apical blebs and the parietal pleura. The duration of main surgical procedure (including removal of blood clot in pleural cavity, control of bleeding and blebectomy) was significantly shorter in MT + VATS than in VATS (p < 0.01, Mann-Whitney U). There were no differences between these two groups in postoperative chest tube drainage duration, average postoperative pain score or hospital stay. No relapses occurred in the succeeding 6 months to 4 years. CONCLUSIONS: Spontaneous hemopneumothorax is usually treated as an urgent surgical condition. MT + VATS is an easy accessible and safe procedure that could be applied as an initial treatment method in the patient with spontaneous hemopneumothorax, especially in the treatment of the patients with active hemorrhage and massive blood clot in the thorax.

Adult↗

Single-injection thoracic paravertebral block for postoperative pain treatment after thoracoscopic surgery.

BACKGROUND: Thoracoscopic surgery can be associated with considerable postoperative pain. While the benefits of paravertebral block on pain after thoracotomy have been demonstrated, no investigations on the effects of paravertebral block on pain after thoracoscopy have been conducted. We tested the hypothesis that a single-injection thoracic paravertebral block, performed preoperatively, reduces pain scores after thoracoscopic surgery. METHODS: Of 45 patients recruited, 40 completed the study. They were randomly allocated to two groups: the paravertebral group received i.v. patient-controlled analgesia (PCA) with morphine plus single-injection thoracic paravertebral block with bupivacaine 0.375% and adrenaline 1:200 000 0.4 ml kg(-1) (n=20). The control group was treated with a back puncture without injection and morphine PCA (n=20). RESULTS: The main outcomes recorded during 48 h after surgery were pain scores using the visual analogue scale (VAS, 0-100). Secondary outcomes were cumulative morphine consumption and peak expiratory flow rate (PEFR). Half an hour and 24 h after surgery, median (25th-75th percentiles) VAS on coughing in the paravertebral group was 31.0 (20.0-55.0) and 30.5 (17.5-40.0) respectively and in the control group it was 70.0 (30.0-100.0) and 50.0 (25.0-75.0) respectively. The difference between the groups over the whole observation period was statistically significant (P<0.05). Twenty-four and 48 h after surgery, median (25th-75th percentiles) cumulative morphine consumption (mg) was 49.0 (38.3-87.0) and 69.3 (38.8-118.5) respectively in the paravertebral group and 51.2 (36.0-84.1) and 78.1 (38.4-93.1) in the control group (statistically not significant). No differences were found in PEFR or the incidence of any side-effects between groups. CONCLUSION: We conclude that single-shot preoperative paravertebral block improves post-operative pain treatment after thoracoscopic surgery in a clinically significant fashion.

Adolescent↗

Endoscopic applications in thoracic surgery: video-assisted thoracoscopic surgery.

Twenty-eight cases of video-assisted thoracoscopic surgery were performed in a 10-month period. Twenty-seven of the 28 cases were completed without a standard thoracotomy. In one of the 28 cases, inadequate visualization secondary to extensive adhesions necessitated conversion to thoracotomy. There were no complications secondary to the video-assisted thoracotomy or video malfunction. Video-assisted thoracoscopic surgery provides the thoracic surgeon with advantages not enjoyed with standard thoracotomy and thoracoscopic techniques. These advantages include: decreased patient pain and recovery time, increased latitude of movement for the surgeon, visualization by assistant and observers, adjustable magnification for close examination of pathology and still photo and video recording capabilities.

Adult↗

[Thoracoscopic surgery for pneumothorax].

It is difficult to tell clearly what a therapy for pneumothorax is because it is not enough just to cut away the bullae. The patients should be treated mentally, physically and less invasively. The 4 anxieties should be solved for pneumothorax patients. Four anxieties for symptom, the normal side of lung, the effect after therapy and surgery. In thoracoscopic surgery on pneumothorax, to cut away just the bullous change does not mean to prevent the postoperative recurrence. Added treatments need beside resection of bullae because bullae often tend to regenerate near the suture line soon after thoracoscopic surgery. The covering method is the most effective in some added treatments. It is a method of covering regenerative oxidized cellulose mesh and fibrin glue on the suture line. Classification of air leakage level that was designed in Pneumothorax Research Center is clinically useful. This classification forms from level 1 to 4 according to air leakage volume and pressure level. It is important to resolve the mechanism on postoperative regeneration of bullae at this point in order to ask for better surgery. Female pneumothorax and less than 15-year-old pneumothorax should be researched because they cause frequently postoperative recurrence.

Adolescent↗

[Thoracoscopic surgery of lung cancer].

Thoracoscopic surgery is a dream that was realized by the remarkable progress achieved in the video equipment system and the development of advanced surgical tools, in particular the endoscopic stapler. The main reasons for the rapid and wide introduction of thoracoscopic surgery are that patient injury is much less than with the traditional chest operation, there is no need for blood transfusion, the physical and mental loads on the patient are much less, and recovery from surgery is much faster. When performed by a skilled surgeon, it is a safe surgical operation, and this surgical technique may become applicable to about one-half of thoracic surgery. The application of robotics and the use of artificial satellites in the sector of thoracoscopic surgery may be possible in the future.

Female↗

Video-assisted thoracoscopic surgery.

Video-assisted thoracoscopic surgery is finding an ever-increasing role in the diagnosis and treatment of a wide range of thoracic disorders that previously required sternotomy or open thoracotomy. The potential advantages of video-assisted thoracoscopic surgery include less postoperative pain, fewer operative complications, shortened hospital stay and reduced costs. The following review examines the surgical and anesthetic considerations of video-assisted thoracoscopic surgery, with an emphasis on recently published articles.

Journal Article↗

[Thoracoscopic surgery--is thoracotomy still necessary?].

Thoracoscopic surgery has made substantial progress in recent years due to advances in video-optic systems and the development of new instruments for endoscopic surgery. Currently many interventions which routinely required thoracotomy can be performed thoracoscopically. This includes pleurectomy, decortication, wedge-resection, pericardial window, sympathectomy, biopsy or, in certain situations, resection of a mediastinal tumor. Thymectomy for myasthenia gravis or lobectomy can be performed thoracoscopically as well. The article gives on overview of the current standing of thoracoscopic surgery. The benefit of thoracoscopic surgery is reduced postoperative pain, including diminished impairment of pulmonary function, and hence a shorter hospital stay and a more rapid recovery.

Empyema, Pleural↗

Thoracoscopic surgery in children.

PURPOSE: A minimally invasive thoracoscopic surgery offers several options in diagnosis and surgical treatment in the field of pediatric surgery. We would like to review our surgical experience and to assess the clinical outcomes and problems encountered during thoracoscopic surgery in children and adolescents focusing on children less than 6 years old. PATIENTS AND METHODS: In 1992 and 2003, 977 patients underwent thoracoscopic surgery for chest diseases. Among them, from 1994 to 2003, 71 children and adolescents underwent thoracoscopic surgery. The thoracoscopic surgical procedures were classified into thoracoscopic surgery (TS) and video-assisted thoracic surgery (VATS). TS was performed through three or four trocar ports. VATS was performed through a small chest incision (minithoracotomy) with one or two trocar ports. RESULTS: There was no morbidity or mortality associated with the thoracoscopic surgical procedures. None of the patients required a conversion to standard thoracotomy. The thoracoscopic surgical procedures were feasible in 71 children and adolescents with chest diseases including spontaneous pneumothorax, pulmonary nodules, diffuse pulmonary disease, pulmonary sequestration, and mediastinal tumors, and in those with palmar hyperhidrosis. TS was performed on two of five children with benign diseases including diffuse pulmonary disease and mediastinal bronchogenic cyst. VATS was performed on three children with pulmonary sequestration, lymphoid interstitial pneumonia and mediastinal Ewing's sarcoma. In one child with lymphoid interstitial pneumonia, the thoracoscopic surgery was converted to VATS because adhesion did not allow TS. The TS allowed rapid histological diagnosis and surgical treatment for benign pulmonary diseases and mediastinal cyst. Patients who were suffering from disease-related symptoms obtained complete relief with an uneventful postoperative course and quickly returned to their normal life. A boy who underwent lobectomy showed a normal growth rate for 4 years postoperatively. In the case of malignant chest diseases, the combination of chemotherapy and VATS was an effective treatment strategy. CONCLUSIONS: We considered that the thoracoscopic approach is a rapid and simple method in the therapeutic diagnosis and surgical treatment of children and adolescents, even in children less than 6 years old. Cosmetic benefits were also obtained for girls. However, the most important consideration is the decision on a treatment strategy made by both pediatrician and thoracic surgeon.

Adolescent↗

Thoracoscopic surgery for lung cancer.

Thoracoscopic surgery has raised awareness in minimizing invasiveness in respiratory surgery. In the case of lung cancer, technical difficulties associated with standard curative surgery may not allow the use of a total thoracoscopic procedure. Although thoracoscopic lung cancer surgery is minimally invasive and safe, it demands a high level of skill and care. Surgery is often performed using a small incision and direct vision, with the thoracoscope serving as a light source. However, thoracoscopic surgery is expected to progress further in the near future. In addition, a new surgical system that comprehends both open and video-assisted thoracic surgery (VATS) may gain popularity.

Humans↗

Hand-assisted thoracoscopic surgery.

Hand-assisted thoracoscopic surgery is a novel minimally invasive approach for performing techniques conventionally performed by posterolateral thoracotomy. Hand-assisted thoracoscopic surgery overcomes one of the major drawbacks of minimally invasive thoracic surgery in allowing full manual palpation of the lungs through a subcostal incision under video guidance, while avoiding a thoracotomy when the indication is pulmonary metastasectomy with curative intent or resection of undiagnosed lung nodules. The technique may result in improved quality of life outcomes compared with a thoracotomy.

Humans↗

[TV-assisted thoracoscopic surgery with a lung forceps combined with thoracoscope under local anesthesia for spontaneous pneumothorax with a persistent air leak--a single access port approach].

TV-assisted thoracoscopic surgery was performed under local anesthesia by through a single access port to control a continuing air leak in spontaneous pneumotorax. A 75-year-old man was admitted with severe dyspnea and right-sided chest pain. The chest X-ray film showed right lung collapse. A right spontaneous pneumothorax was diagnosed and was treated by chest tube drainage. However, the lung did not re-expand because of a continuing air leak and subcutaneous emphysema developed. TV-assisted thoracoscopic surgery was performed under local anesthesia to treat the persistent air leak on day 12. By endoscopy, the ruptured bulla was double-ligated with an Endoloop through a single access port using lung forceps combined with endoscope. The air leak subsequently ceased and the lung re-expanded. This method is minimally invasive and is very suitable for controlling a continuing air-leak causing spontaneous pneumothorax in a patient.

Aged↗