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Jing-Bo Lu

Publications and source records attributed to Jing-Bo Lu.

2 recordsLinked to original sources

Pulmonary function after complete unilateral phrenic nerve transection.

OBJECT: The status of pulmonary function following phrenic nerve transfer surgery is still largely unknown because of the high degree of variability in the accessory phrenic nerve that may be involved. In the present study, pulmonary functions were assessed in patients before and after full-length phrenic nerve transfer surgery, in whom the phrenic nerve was severed at a location just before its entry into the diaphragm. METHODS: Fifteen patients (average age 27.4 years) with complete brachial plexus palsy underwent full-length phrenic nerve transfer. The phrenic nerve was harvested from the thoracic cavity by means of video-assisted thoracic surgery and then transferred to the musculocutaneous nerve. Postoperative pulmonary functions were retrospectively analyzed. Patients underwent follow-up evaluation for 42 to 48 months; four patients were eventually lost to follow up. Although no patient experienced pulmonary problems following the surgery, all sustained varying degrees of diaphragmatic paralysis and elevation (for 1-1.5 intercostal spaces) on the surgically treated side as seen on chest x-ray films. Pulmonary functional parameters, including vital capacity, vital capacity in percentage of predicted values, residual volume, total lung capacity, forced vital capacity, and forced expiratory volume in 1 second, recovered to preoperative levels by 1 year postsurgery. In contrast, the postoperative maximal inspiratory pressure value was significantly decreased compared with the predicted values (average decrease approximately 20%) in all of the patients, even at 4 years after the surgery. CONCLUSIONS: In young patients with healthy lung function, unilateral phrenic nerve transection surgery can cause unilateral diaphragmatic paralysis and reduce the inspiration muscle force; however, most pulmonary function parameters gradually recover to preoperative levels within 1 year.

Adolescent↗

[Dendritic cells: another possible carrier for gastrointestinal bacterial translocation].

OBJECTIVE: To observe the immigration and morphological changes of peripheral dendritic cells (DCs) after hemorrhagic shock and to understand the role of DCs in bacterial translocation (BT) from the gastrointestinal tract. METHODS: Forty-eight Wistar rats were randomly divided into sham-operated group (n=8) which did not receive phlebotomy and hemorrhagic shock group (n=40) in which hemorrhagic shock was induced with Wigger's method, with the carotid pressure manipulated at 5.3 kPa for 1 h before resuscitation by transfusion of the blood from previous phlebotomy along with infusion of Ringer's solution of the same volume. Using sterile technique, the mesenteric lymph nodes (MLNs) were sampled at 3, 6, 12, 24 and 48 h respectively (n=8) following the resuscitation, and immunohistochemical study and bacterial culture were conducted. RESULTS: In the sham-operated group, bacterial culture yielded only l positive results, while in the hemorrhagic shock group all animals were shown positive for bacteria. The number of DCs and amount of the bacteria in the MLNs increased significantly after hemorrhagic shock, both reaching the maximum at 12 h in a highly correlative manner (r=0.89). Morphologically, DCs in the hemorrhagic shock group with abundant dendritic processes differed from those of the sham-operated rats, the latter with scarce changes during the experiment. CONCLUSION: Hemorrhagic shock results in morphological and functional transformations of gastrointestinal DCs, the number of which is in positive correlation with the amount of bacteria in the MLN, indicating that DCs, besides the macrophages, are also important bacteria carriers during the generation of BT.

Animals↗