PubMed Health⌕ Search

Biomedical subjects

K Nohira

Publications and source records attributed to K Nohira.

At least 19 recordsLinked to original sources

Variation of microvascular blood flow augmentation--supercharge in esophageal and pharyngeal reconstruction.

AIM OF THE STUDY: A gastric tube is commonly used in thoracic esophageal reconstruction. When a gastric tube is not available, pedicled jejunum transfer and colonic interposition are alternative methods. Oral end of the reconstructed esophagus occasionally has poor blood flow and may result in partial necrosis of the oral segment. We performed additional microvascular blood flow augmentation, the "supercharge" technique, to improve a blood flow circulation in the oral segment of the reconstructed esophagus. METHODS: A series of 86 esophageal reconstructions with microvascular blood flow augmentation using the "supercharge" technique were performed. Reconstructive methods included a gastric tube in five patients, a gastric tube combined with a free jejunual graft in one, an elongated gastric tube in eight, a pedicled colonic interposition in 22, and a pedicled jejunum in 50. Recipient vessels were used in neck or chest region. RESULTS: The color and blood flow of the transferred intestine appeared greatly improved after microvascular blood flow augmentation. Thrombosis was noticed in three patients during the surgery, and all thrombosies were salvaged by re-anastomosis. There were only three patients with partial graft necrosis of oral segment, two patients with anastomotic leakage, one anastomotic stricture. CONCLUSIONS: Augmentation of microvascular blood flow by this "supercharge" technique can be expected to reduce the risk of leakage and partial necrosis of the transferred intestine. This technique contributes to the successful reconstruction of esophageal defect.

Adult↗

A new technique of microvascular suturing: the chopstick rest technique.

With the conventional techniques of tying knots during microvascular anastomosis or neural suturing, time may be lost due to various reasons. The loose end of the suture often falls down into the operative field and gets stuck to the surrounding tissues. In the process of retrieving the suture, the surrounding tissues can be picked up together with the suture. When the posterior wall technique [Br J Plast Surg 34 (1981) 47, Plast Reconstr Surg 69 (1982) 139, Microsurgery 8 (1987) 22, J Reconstr Microsurg 15 (1999) 321] is used, the loose end of the suture may be stuck to the backside of the vessel and may be hard to grab. In order to avoid those problems, a new way of tying a microsuture was developed. By avoiding contact of the loose end of the suture to the surrounding tissue at any point during tying, the microvascular anastomosis can be performed quicker and more efficiently.

Humans↗

Two innovations of the star-flap technique for nipple reconstruction.

Two innovations of the star-flap technique for nipple reconstruction are described. A combination of the star-flap technique and a contralateral nipple graft is indicated in patients with a large nipple and small areola on the contralateral side. It provides sufficient volume for the new nipple and improves the shape of the donor nipple. A combination of the star-flap technique and a banked costal-cartilage graft offers better nipple contour and projection than the conventional star-flap technique. Preparation of the cartilage graft is easy and does not result in additional scarring; the nipple projection can be expected to be maintained over a long period.

Adult↗

Experience with 24 cases of reconstructive anterior skull base surgery: classification and evaluation of postoperative facial appearance.

This article details our experience with 24 cases of anterior skull base reconstruction after tumor resection. They were classified into four types according to the resected region. In 11 cases of type I resection, the orbital part of frontal bone and/or cribriform plate of ethmoid bone were resected. In two cases of type II resection, the orbital contents and partial orbital bone were resected with the addition of type I. In five cases of type III resection, the maxillary bone was resected with the addition of type II. In six cases of type IV resection, the zygomatic bone and/or facial skin were resected with the addition of type III. The tumor originating from intracranial region was 25% of this series and all of them belonged to type I. The tumor originating from extracranial region tumor was 75% and its resected region was more extensive. In type I and II resections, the cranial flap, radial forearm free flap, or a combination of the two was used for reconstruction. The rectus abdominis myocutaneous/muscle free flap was used for reconstruction of massive defects in type III and IV defects. Total incidence of postoperative complications was 16.7%. Donor site deformity of the cranial flap at the frontal and temporal region in types I and II resections and facial contour deformity in zygomatic region and defect of upper and/or lower palpebra in type IV resection were major problems with postoperative facial appearance. Although use of the rectus abdominis myocutaneous free flap combined with costal cartilages improved the midfacial contour, palpebral reconstruction remained an unsolved problem in reconstructive skull base surgery. The reconstructive goals in skull base surgery are not only to obtain safe and reliable skull base reconstruction but also to restore the facial appearance postoperatively.

Journal Article↗

Superiority of end-to-side anastomosis with the internal jugular vein: the experience of 80 cases in head and neck microsurgical reconstruction.

The authors report their experience with 80 head and neck reconstructions using free-tissue transfer in which end-to-side anastomosis with the internal jugular vein was carried out. An end-to-side anastomosis with the internal jugular vein has the following advantages. Firstly, the technique overcomes the problems of vessel size discrepancy. It is effectively applied for free jejunal transfer or combined flap transfer based on a single vascular pedicle, of which the size of the proximal end of the drainage vein is very large. Secondly, the internal jugular vein has wide capacity to be the recipient of two or more end-to-side anastomoses. It is effectively used for free radial forearm or rectus abdominis myocutaneous flaps in which two or more drainage veins can be included. Thirdly, the respiratory venous pump effect may act directly on the venous drainage of the transferred flap through the internal jugular vein. In our institution, these advantages have made it the technique of choice in head and neck reconstructive microsurgery.

Adult↗

Microsurgical reconstruction of the hepatic and superior mesenteric arteries using a back wall technique.

During the last seven years, 17 patients underwent microsurgical reconstruction of 14 hepatic and four superior mesenteric arterial systems following extended pancreatectomy or hepatectomy, and in living-related liver transplantations (LRLT). All microvascular anastomoses in this series were performed using a back wall technique, in which the microsutures are placed in the back wall of the vessel first, and turning over of the microclamp is eliminated. This back wall technique is useful for microvascular reconstruction in a deep abdominal cavity in which there is no room to turn over the microclamp. In LRLTs, even if the hepatic artery of the graft liver is so short that the microclamp on it cannot be rotated, this technique overcomes such difficult situations. Microvascular anastomosis without turning over the clamp is superior to the conventional method in terms of reducing intimal damage to the vessels. The vessels located vertical to the microvascular surgeon are smoothly anastomosed using this technique. The authors advocate this back wall technique as advantageous in microsurgical reconstructions of the hepatic and superior mesenteric arterial systems.

Adolescent↗

[TRAM flap breast reconstruction using a fascia-sparing technique].

Although the TRAM flap has been accepted as one of the most common methods for breast reconstruction utilizing the autologous tissue, its disadvantage is that scarring of the abdominal sheath and muscle may result in postoperative abdominal bulge or hernia. To solve this problem, the authors developed the fascia-sparing technique in TRAM flap breast reconstruction. The technique, in which most of the anterior rectus sheath is preserved, has been applied in 3 patients after radical mastectomy and 7 patients after modified radical mastectomy. With an average follow-up period of 1 year and 2 months, no abdominal bulge or hernia was noted in any patient without the use of prosthetic mesh for the abdominal closure. This fascia sparing technique is particularly effective for TRAM flap reconstruction requiring bilateral rectus abdominis muscle portions and containing only a few minor perforators, for which a DIEP flap is not suitable.

Adult↗

[Application of microvascular surgery in reconstructive digestive tract surgery].

In our institutes, microvascular surgery has been effectively used in reconstructive digestive tract surgery, including esophageal reconstruction and hepatic arterial reconstruction. Free jejunal transfer combined with a gastric pedicle or microvascularly augmented elongated gastric pedicle has been utilized for total esophageal reconstruction. A microvascularly augmented jejunal pedicle or colonic pedicle has been applied in thoracic esophageal reconstructive cases with gastrectomy. Moreover, microvascular surgery has been performed in the reconstruction of the hepatic arterial system in the surgical treatment of pancreatic or bile duct cancer and living related-donor liver transplantation. Some pitfalls in selection of the recipient vessels and handling the intraperitoneal vessels for microvascular anastomosis are also described. Although microvascular surgery has been carried out by plastic and reconstructive surgeons in a team surgical approach, revisions in the medical educational system to create a new-type of surgeon with practical skills and clinical experience in both digestive tract and microvascular surgery will be required in future.

Aged↗

Use of intraperitoneal vessels in reconstructive microsurgery: an account of 117 cases.

The purpose of this study was to evaluate our experience of microvascular anastomosis of intraperitoneal vessels. Between 1985 and 1994, 117 microsurgical reconstructions were done using intraperitoneal vessels. These included oesophageal reconstruction (n = 106), reconstruction of the hepatic arterial, superior mesenteric arterial, or portal venous system (n = 8), and reconstruction of the chest or abdominal wall (n = 3). We used 129 intraperitoneal arteries and 117 intraperitoneal veins. Of a total of 246 intraperitoneal vessels, five hepatic arteries, seven splenic, 14 gastroepiploic, six superior mesenteric, 178 jejunal, 30 ileocolic, four middle colic arteries or veins, and two portal veins were used for microvascular anastomosis. The overall successful rate for these reconstructive cases was 97% (114/117). Microsurgical use of intraperitoneal vessels is a safe and developing procedure in plastic and reconstructive surgery.

Adult↗

Role of buttress reconstruction in zygomaticomaxillary skeletal defects.

The purpose of this study was to review eight patients undergoing midfacial skeletal reconstruction following extensive resection of tumors based on the principles of restoration of three maxillary buttresses, the nasomaxillary, zygomaticomaxillary, and pterygomaxillary. The zygomaticomaxillary skeletal defects were reconstructed with a three-dimensionally contoured piece of titanium mesh, vascularized costal cartilage, or vascularized bone flap of scapula and rib. Restoration of the zygomaticomaxillary buttress prevented the inferior deviation of the orbit and provided good zygomatic contour. Restoration of the nasomaxillary buttress prevented the superior and posterior deviation of the alar base of the nose, and restoration of the pterygomaxillary buttress prevented the superior and posterior deviation of the upper lip. Combination of the V-shaped scapular bone and the rib flap based on the thoracodorsal vascular system, which provides simultaneous reconstruction of all three buttresses, is a very versatile technique for reconstruction of extended midfacial skeletal defects. In this series, both of the patients reconstructed with titanium mesh presented with late persistent cutaneous fistulas. We now recommend a vascularized autologous soft and bony tissue reconstruction for midfacial composite defects.

Adult↗

Microsurgical reconstruction of chest- and abdominal-wall defects associated with intraperitoneal vessels.

Microsurgical reconstruction of abdominal or chest-wall defects requires extreme precision but may still raise serious problems. In previous publications many methods have been reported, including free fascia graft, synthetic mesh, pedicled flap, and free flap with microvascular anastomoses. Free-flap transfer has become a popular operative procedure for such reconstructions. The recipient vessels utilized have been mainly the external peritoneal system. In some cases, however, it is very difficult to find adequate recipient vessels in the external peritoneal region. Intraperitoneal vessels may be obviously exposed in the surgical field because there has been a full-thickness defect of the abdominal or chest wall. These vessels are rather easily found and dissected. Their diameter is about 1 to 2 mm, appropriate for microvascular anastomoses with flap vessels in the reconstruction. Using intraperitoneal vessels for the recipient vessels has rarely been reported. The authors report three cases of reconstruction of full-thickness defects of the abdominal or chest wall, using these vessels as recipients for free flaps.

Abdomen↗

Superiority of the microvascularly augmented flap: analysis of 50 transverse rectus abdominis myocutaneous flaps for breast reconstruction.

Our experience with 50 transverse rectus abdominis myocutaneous (TRAM) flap transfers was evaluated as to the types of TRAM flaps, indications for breast reconstruction with a TRAM flap, and complications. The TRAM flap was transferred as a free flap in 7 patients, a unipedicled flap in 14 patients, and a microvascularly augmented flap in 29 patients. Microvascular augmentation was performed through the contralateral inferior epigastric vascular system to the superiorly pedicled muscle in 10 patients who had undergone radical mastectomy and the ipsilateral inferior epigastric vascular system in 19 patients who had undergone modified radical mastectomy. In this series, the incidence of flap-site complications, including total flap loss, partial flap loss, and fat necrosis, was lowest in the microvascularly augmented flap group. Particularly, incidence of partial flap loss in the microvascularly augmented flap group was significantly lower than in the unipedicled flap group (p < 0.01). These outcomes demonstrated the superiority of the microvascularly augmented TRAM flap for breast reconstruction.

Fat Necrosis↗

The combined flap based on a single vascular source: a clinical experience with 32 cases.

This article provides a retrospective review of 32 combined flap transfers. It consists of two or more flaps based on independent vascular branches from a single vascular source. This series included the combined flap based on the subscapular-circumflex scapular-thoracodorsal vascular system in 24 patients and the profunda femorislateral circumflex femoral vascular system in 8 patients. Twenty-four combined flaps were transferred as free flaps and eight as pedicled flaps. The combined flap based on the subscapular system has very good indications for massive and three-dimensional composite defects in the head and neck region. The combined flap based on the lateral circumflex femoral-profunda femoris system is useful for reconstruction of large defects in the groin, perineal, and lower abdominal regions.

Abdominal Neoplasms↗

Two-dimensional analysis of hemodynamic changes in axial and random pattern flaps.

The present study was performed to evaluate the time course of hemodynamic change in axial and random pattern flaps two-dimensionally. The axial pattern flap, including the central auricular artery and vein, and the random pattern flap without these vessels were created in the auricles of the rabbit. The blood flow of these flaps was investigated and assessed using laserflowgraphy, which provides a two-dimensional analysis of microcirculation. In the axial pattern flap, a gradient of blood flow toward the short axis of the flap and decreased blood flow in the surrounding area were noticed immediately after operation. The hemodynamic changes became less marked with time. In the random pattern flap, a gradient of blood flow toward the long axis of the flap was noticed around 6 hr after operation and the blood flow in the surrounding area increased throughout the investigations.

Animals↗

"Boomerang" rectus abdominis musculocutaneous free flap in head and neck reconstruction.

Immediate head and neck reconstruction after cancer resection using the "boomerang" rectus abdominis musculocutaneous (RAM) free flap was performed in 13 patients over the past 2 years. The skin paddle of the flap is designed as a boomerang shape based on the anatomical construction of the dominant perforators from the inferior epigastric vascular system. A versatile technique of the boomerang RAM flap provides effective use for reconstruction of the complex defects at the skull base, orbital, nasal cavity, paranasal sinuses, oropharynx, palate, buccal mucosa, tongue, floor of mouth, and neck. It also allows a reconstructive surgical team to elevate the flap simultaneously with a head and neck surgical team before the size and location of the defect are exactly determined and greatly reduces operating time. This flap will be a routine technique for immediate head and neck reconstruction after cancer resection.

Abdominal Muscles↗

"Turbo charging" the vertical rectus abdominis myocutaneous (turbo-VRAM) flap for reconstruction of extensive chest wall defects.

We report our experience using "turbo charging" of the vertical rectus abdominis myocutaneous (turbo-VRAM) flap in 7 patients with extensive chest wall defects. The turbo-VRAM flap provides augmented blood supply with microvascular anastomosis between the inferior epigastric system and available vessels of the axillary, brachial or cervical vascular system. All patients in this study had uncomplicated recovery. In 3 patients, the skin paddle of the flap, which was designed as a fish shape, was effectively used to cover a wide defect. One patient required resection of some lower costal cartilages located near the superior epigastric vascular system in order to extend the rotation distance of the flap. These technical options have made the turbo-VRAM flap more versatile. The turbo-VRAM flap allows successful coverage of extensive chest wall defects, including defects of the axilla, upper arm, shoulder, or neck.

Adult↗