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1.
Journal of Prevention and Treatment for Stomatological Diseases ; (12): 321-329, 2024.
Article in Chinese | WPRIM | ID: wpr-1016554

ABSTRACT

@#The standardized workflow of computer-aided static guided implant surgery includes preoperative examination, data acquisition, guide design, guide fabrication and surgery. Errors may occur at each step, leading to irreversible cumulative effects and thus impacting the accuracy of implant placement. However, clinicians tend to focus on factors causing errors in surgical operations, ignoring the possibility of irreversible errors in nonstandard guided surgery. Based on the clinical practice of domestic experts and research progress at home and abroad, this paper summarizes the sources of errors in guided implant surgery from the perspectives of preoperative inspection, data collection, guide designing and manufacturing and describes strategies to resolve errors so as to gain expert consensus. Consensus recommendation: 1. Preoperative considerations: the appropriate implant guide type should be selected according to the patient's oral condition before surgery, and a retaining screw-assisted support guide should be selected if necessary. 2. Data acquisition should be standardized as much as possible, including beam CT and extraoral scanning. CBCT performed with the patient’s head fixed and with a small field of view is recommended. For patients with metal prostheses inside the mouth, a registration marker guide should be used, and the ambient temperature and light of the external oral scanner should be reasonably controlled. 3. Optimization of computer-aided design: it is recommended to select a handle-guided planting system and a closed metal sleeve and to register images by overlapping markers. Properly designing the retaining screws, extending the support structure of the guide plate and increasing the length of the guide section are methods to feasibly reduce the incidence of surgical errors. 4. Improving computer-aided production: it is also crucial to set the best printing parameters according to different printing technologies and to choose the most appropriate postprocessing procedures.

2.
Journal of Prevention and Treatment for Stomatological Diseases ; (12): 280-286, 2024.
Article in Chinese | WPRIM | ID: wpr-1013089

ABSTRACT

Objective@#Based on 3D printing technology, explore the precision of a perforator vessel location guide plate for fibular musculocutaneous flaps before the transplantation of fibular osteocutaneous flaps and evaluate its application effects.@*Methods@#This study was reviewed and approved by the ethics committee, and informed consent was obtained from the patients. From May 2019 to October 2022, 14 patients with jaw defects who needed to undergo fibular perforator flap transplantation at the First Affiliated Hospital of Xinjiang Medical University were selected. For the seven patients in the guide plate group, CTA was combined with Mimics software to reconstruct both lower limbs, and the perforator vessel positioning guide for locating perforator vessels was designed; the two ends of the guide plate were designed as fixed ends, with the upper end fixed to the knee joint and the lower end fixed to the ankle joint, and the guide plate was fabricated by a 3D printer. For the seven patients in the control group, a conventional handheld Doppler probe was used for perforator vessel location. The average operation time, bleeding volume, recovery time, deviation of perforator vessel location, postoperative flap-related complications, postoperative donor site shape satisfaction, and lower extremity functional scale (LEFS) score were recorded. SPSS 25.0 software was used for statistical analysis.@*Results@#The average operation time, bleeding volume, recovery time, deviation of perforator vessel location and postoperative donor site shape satisfaction were significantly better in the guide plate group than in the control group (P<0.05); moreover, the differences in postoperative flap-related complications and LEFS scores were not statistically significant (P>0.05).@*Conclusion@#Based on 3D printing technology, fibular musculocutaneous flap perforator vessels can be more accurately located using a guide plate and the knee and ankle as fixed points, and this method can effectively stabilize the guide position, prevent soft tissue offset, and improve positioning accuracy and thus deserves to be generalized.

3.
Journal of Prevention and Treatment for Stomatological Diseases ; (12): 559-566, 2023.
Article in Chinese | WPRIM | ID: wpr-972227

ABSTRACT

Objective @#To investigate the clinical efficacy and application value of an improved 3D-printed guide plate for the treatment of primary trigeminal neuralgia (PTN) by percutaneous microballoon compression (PMC). @*Methods @# This prospective study included 42 patients with primary trigeminal neuralgia treated at the Department of Stomatology, Xuzhou Central Hospital, from September 2019 to January 2022. The group was divided by the random number table method into the experimental group (adopting 3D printing technology to make guide plates to guide the puncture, 22 cases) and the control group (adopting the traditional Hartel anterior approach to position the puncture, 20 cases). The intraoperative success rate of the first puncture, puncture time, operative time, radiation exposure of patients and postoperative complications were compared between the two groups. Postoperative Barrow Neurological Institute Scale (BNI) scores, facial numbness, diminished corneal reflexes and chewing weakness were recorded. The t-test, rank-sum test and chi-square test were used for statistical analysis, with P<0.05 indicating a statistically significant difference. @*Results @#The experimental group was significantly better than the control group in terms of the success rate of the first puncture (χ2 = 21.51, P<0.001), puncture time (Z = -5.51, P<0.001), operative time (t = 9.37, P<0.001), and the number of C-arm scans (Z = -4.59, P<0.001). Postoperative BNI scores of the experimental group included 21 cases of grade Ⅰ (91.5%) and 1 case of grade Ⅱ, while the control group included 17 cases of grade Ⅰ (85.0%), 2 cases of grade Ⅱ (10.0%) and 1 case of grade Ⅲ (5.0%), with no statistical significance (P>0.05). In the experimental group, 16 patients had postoperative masseter weakness, 1 had keratitis and 10 had perilabial herpes, while in the control group, 18 patients had postoperative masseter weakness, 2 had keratitis, 11 had perilabial herpes and 1 had monocular blindness. There was no significant difference in postoperative complications between the two groups (P>0.05). At 12 months of follow-up, there was no recurrence in either the experimental or control group. @* Conclusions @#3D digital guide plate-guided percutaneous microballoon compression for primary trigeminal neuralgia can improve the accuracy and safety of puncture to a certain extent, obviously shorten the operation time, reduce radiation exposure of the patients, improve the success rate of the operation, meaning it has a high clinical application value.

4.
Chinese Journal of Reparative and Reconstructive Surgery ; (12): 1214-1219, 2023.
Article in Chinese | WPRIM | ID: wpr-1009047

ABSTRACT

OBJECTIVE@#To explore the feasibility and early effectiveness of computer-simulated osteotomy based on the health-side combined with guide plate technique in the treatment of cubitus varus deformity in adolescents.@*METHODS@#The clinical data of 23 patients with cubitus varus deformity who met the selection criteria between June 2019 and February 2023 were retrospectively analyzed. There were 17 males and 6 females, ranging in age from 4 to 16 years with an average of 8.5 years. The time from injury to operation was 1-4 years. The angle of distal humerus rotation was defined by humeral head posterior inclination angle using low radiation dose CT to scan the patient's upper extremity data at one time, and the preoperative rotation of the distal humerus on the affected side was (33.82±4.39)°. The CT plain scan data were imported into 9yuan3D digital orthopaedic system (V3.34 software) to reconstruct three-dimensional images of both upper extremities. The simulated operation was performed with the healthy upper extremity as the reference, the best osteotomy scheme was planned, overlapped and compared, and the osteotomy guide plate was prepared. The patients were followed up regularly after operation, and the formation of callus in the osteotomy area was observed by X-ray examination. Before and after operation, the carrying angle of both upper extremities (the angle of cubitus valgus was positive, and the angle of cubitus varus was negative) and anteversion angle were measured on X-ray and CT images. At the same time, the flexion and extension range of motion of elbow joint and the external rotation range of motion of upper extremity were measured, and Mayo score was used to evaluate the function of elbow joint.@*RESULTS@#The operation time ranged from 34 to 46 minutes, with an average of 39 minutes. All patients were followed up 5-26 months, with a mean of 14.9 months. All the incisions healed by first intention after the operation; 2 patients had nail path irritation symptoms after Kirschner wire fixation, which improved after dressing change; no complication such as breakage and loosening of internal fixators occurred after regular X-ray review. Continuous callus formed at the osteotomy end at 4 weeks after operation, and the osteotomy end healed at 8-12 weeks after operation. At last follow-up, the carrying angle, anteversion angle, external rotation range of motion, and extension and flexion range of motion of the elbow joint of the affected side significantly improved when compared with preoperative ones ( P<0.05). Except for the extension range of motion of the healthy elbow joint ( P<0.05), there was no significant difference in other indicators between the two sides ( P>0.05). At last follow-up, the Mayo elbow score was 85-100, with an average of 99.3; 22 cases were excellent, 1 case was good, and the excellent and good rate was 100%.@*CONCLUSION@#Computer-simulated osteotomy based on health-side combined with guide plate technique for treating cubitus varus deformity in adolescents can achieve precise osteotomy, which has the advantages of short operation time and easy operation, and the short-term effectiveness is satisfactory.


Subject(s)
Male , Female , Humans , Adolescent , Child, Preschool , Child , Elbow , Humeral Fractures/surgery , Retrospective Studies , Joint Deformities, Acquired/surgery , Elbow Joint/surgery , Limb Deformities, Congenital , Osteotomy/methods , Humeral Head , Range of Motion, Articular , Computers , Treatment Outcome
5.
Chinese Journal of Primary Medicine and Pharmacy ; (12): 1777-1782, 2022.
Article in Chinese | WPRIM | ID: wpr-955911

ABSTRACT

Objective:To investigate the clinical efficacy of 3D printed guide plate-assisted hematoma puncture and catheter drainage in the treatment of a moderate volume of hypertensive intracerebral hemorrhage in the basal ganglia.Methods:The clinical data of 42 patients with a moderate volume of hypertensive intracerebral hemorrhage in the basal ganglia who received treatment with 3D printed guide plate-assisted hematoma puncture and catheter drainage in Dazhu Hospital of North Sichuan Medical College from January 2016 to January 2021 were retrospectively analyzed. In the traditional puncture group, there were 19 patients who received traditional punctures according to preoperative cranial CT findings (traditional puncture group). In the 3D printed guide plate puncture group, there were 23 patients who received hematoma puncture and catheter drainage assisted by a 3D printed guide plate. Preoperative preparation time (from admission to operation), operative time, the number of hematoma punctures, hematoma clearance rate, postoperative indwelling time of drainage tube, residual hematoma rate, the occurrence of puncture canal bleeding, intracranial infection, Glasgow Coma Scale score measured at 3 and 7 days after surgery, and Glasgow Outcome Scale score measured at 1, 3 and 6 months after surgery were compared between the two groups.Results:There were no significant differences in preoperative preparation time and operative time between the two groups ( t = 0.25, 0.40, both P > 0.05). 3D-printed guide plate-assisted hematoma puncture reduced the probability of reveiving one more hematoma puncture during the surgery. There was no significant difference in the number of hematoma puncture between the two groups ( χ2= 0.48, P > 0.05). There were no significant differences in the probabilities of puncture canal bleeding and intracranial infection between the two groups ( χ2 = 0.05, 0.03, both P > 0.05). Postoperative indwelling time of the drainage tube in the 3D printed guide plate puncture group was significantly shorter than that in the traditional puncture group [(3.10 ± 0.38) vs. (3.46 ± 0.52) days, t = 2.65, P < 0.05]. The residual hematoma rate in the 3D printed guide plate puncture group was significantly lower than that in the traditional puncture group [(32.04 ± 5.33)% vs. (37.37 ± 5.51)%, χ2 = 3.20, P < 0.05]. There were significant differences in Glasgow Coma Scale score measured at 3 and 7 days after surgery between the two groups [(12.04 ± 1.19) points vs. (11.26 ± 0.93) points, (13.65 ± 0.88) points vs. (12.94 ± 0.97) points, t = 2.33, 2.46, both P < 0.05]. Glasgow Outcome Scale score measured at 1, 3, and 6 months after surgery in the 3D printed guide plate puncture group was 18, 21, and 22 points, respectively, which was significantly higher than 9, 11, and 12 points in the traditional puncture group ( χ2 = 4.34, 4.69, 5.17, all P < 0.05). Conclusion:3D printed guide plate assisted hematoma puncture and catheter drainage for treatment of a moderate volume of hypertensive intracerebral hemorrhage in the basal ganglia can increase the accuracy of puncture, decrease hematoma residual rate, improve short- and long-term prognosis, does not prolong preoperative preparation time. Moreover, it costs low, is safe, and is easy to learn.

6.
Chinese Journal of Orthopaedic Trauma ; (12): 310-315, 2022.
Article in Chinese | WPRIM | ID: wpr-932330

ABSTRACT

Objective:To compare minimally invasive treatment with versus without a 3D printed guide plate for Sanders type Ⅱ calcaneal fractures.Methods:A retrospective analysis was done of the 74 patients with Sanders type Ⅱ displaced intra-articular calcaneal fracture who had been treated at Foot and Ankle Surgery Center, Beijing Tongren Hospital Affiliated to Capital Medical University from January 2018 to January 2020. They were divided into 2 groups according to whether a 3D printed guide plate was used or not. In the 3D printing group of 38 patients treated by minimally invasive surgery assisted by a 3D printed guide plate, there were 22 males and 16 females with an age of (41.5±3.5) years; in the control group of 36 patients treated by traditional minimally invasive surgery, there were 24 males and 12 females with an age of (40.3±7.2) years. The 2 groups were compared in terms of operation time, intraoperative fluoroscopy, American Orthopaedic Foot and Ankle Society (AOFAS) score, visual analog scale (VAS), Short Form 36 (SF-36), B?hler angle, Gissane angle, calcaneal length, width and height and postoperative complications.Results:There was no significant difference in the preoperative demographic data between the 2 groups, indicating comparability between groups ( P>0.05). All patients were available for a follow-up of (12.6±3.6) months (from 6 to 24 months) after surgery. The operation time [(55.3±7.1) min] and intraoperative fluoroscopy [(8.1±2.6) times] in the 3D printing group were significantly less than those in the control group [(71.2±8.7) min and (21.2±8.7) times] ( P<0.01) while the AOFAS score in the former group (81.4±6.3) was significantly higher than that in the latter (77.9±6.2) ( P<0.01). There were no statistically significant differences between the 2 groups in VAS, SF-36, B?hler angle, Gissane angle, calcaneal length, calcaneal width or calcaneus height ( P>0.05). In the control group, 4 screws were found to be too long with possible impingement on the medial structures of the foot, and 3 screws to penetrate the subtalar joint; in the 3D printing group, there were no too long or off-target screws in the sustentaculum tali. Conclusion:The minimally invasive treatment of Sanders type Ⅱ calcaneal fractures assisted by a 3D printing guide plate can reduce operation time, intraoperative fluoroscopy and potential complications, improving the clinical efficacy.

7.
Journal of Prevention and Treatment for Stomatological Diseases ; (12): 716-720, 2021.
Article in Chinese | WPRIM | ID: wpr-881382

ABSTRACT

@#Minimally invasive endodontics (MIE) can preserve dental tissue to a greater extent and improve the success rate of endodontics and has thus attracted increasing attention. 3D printing is a technology that is based on a digital model and uses powdered metal, plastic and other materials to construct objects by printing layer by layer. This article reviews the application of 3D printing technology in minimally invasive endodontics to provide a reference for the application of 3D printing technology in clinical minimally invasive endodontics in the future. In recent years, 3D printing technology has been widely used in various professional fields of stomatology, such as maxillofacial surgery, prosthodontics, and orthodontics. Using cone beam computed tomography (CBCT) and oral scanners to obtain accurate data on the internal and external structures of teeth combined with 3D printing to construct a tooth diagnostic model and pulp opening guide plate, we can accurately locate the position of the root canal and provide a new method for minimally invasive endodontics. At present, 3D printing technology is mainly used to guide the pulp opening pathway, assist in the minimally invasive treatment of malformed teeth and calcified root canals, and assist with apical surgery in the field of minimally invasive endodontics. However, its accuracy and clinical prognosis still need to be verified with a large number of clinical cases.

8.
China Journal of Orthopaedics and Traumatology ; (12): 45-50, 2021.
Article in Chinese | WPRIM | ID: wpr-879404

ABSTRACT

OBJECTIVE@#To compare accuracy of anterior cervical pedicle screws between assist of rapid prototyping 3D guide plate and free-hand insertion, and evaluate the safety of two methods.@*METHODS@#Eight adult cervical cadaver specimens after formaldehyde immersion, including 4 males and 4 females, aged 32 to 65(40.3±5.6) years old. After X-ray examination to exclude bone damage and deformity, 4 of them (3D guide plate group) randomly selected were for CT scan to obtain DICOM format data, and the data was imported into Mimics software for model, designed the ideal entry point and nail path for anterior cervicaltranspedicular screw (ATPS). After obtaining the personalized guide plate of the nail channel, it was exported as STL data, and the individual guide plate was printed by rapid prototyping and 3D printing technology. In turn, with the assistance of 3D guide plates, one-to-one personalized ATPS screws were placed on the four lower cervical cadaver specimens. Another 4 (free-hand group) lower cervical cadaver specimens were implanted with ATPS screws using free-hand technique. All specimens were performed CT thin-layer scanning and three-dimensional reconstruction after operation. The Tomasino method was used to evaluate the safety of the screws on the CT cross-sectional and sagittal images, to determine whether there was a cortical puncture of the lower and inner edges of the pedicle. According to the CT rating results, gradeⅠandⅡwere safe, and grade Ⅲ- Ⅴ were dangerous.And the accuracy of screws was recorded and analyzed between two groups.@*RESULTS@#Two screws were inserted in each segment from C@*CONCLUSION@#The 3D printing rapid prototyping guide plate assisted insertion of the anterior cervical pedicle screw can significantly improve the accuracy and safety, and provide a theoretical basis for further clinical application.


Subject(s)
Adult , Aged , Female , Humans , Male , Middle Aged , Bone Plates , Cervical Vertebrae/surgery , Cross-Sectional Studies , Pedicle Screws , Printing, Three-Dimensional
9.
Journal of Medical Biomechanics ; (6): E001-E005, 2021.
Article in Chinese | WPRIM | ID: wpr-904356

ABSTRACT

The adjacent anatomy of the pelvis is complicated, with digestive, urinary, reproductive and other organs as well as important blood vessels and nerves. Therefore, accurate resection of pelvic tumors and precise reconstruction of defects after resection are extremely difficult. The development of medical 3D printing technology provides new ideas for precise resection and personalized reconstruction of pelvic tumors. The “triune” application of 3D printing personalized lesion model, osteotomy guide plate and reconstruction prosthesis in pelvic tumor limb salvage reconstruction treatment has achieved good clinical results. However, the current lack of normative guidance standards such as preparation and application of 3D printing personalized lesion model, osteotomy guide plate and reconstruction prosthesis restricts its promotion and application. The formulation of this consensus provides normative guidance for 3D printing personalized pelvic tumor limb salvage reconstruction treatment.

10.
Chinese Journal of Reparative and Reconstructive Surgery ; (12): 335-340, 2020.
Article in Chinese | WPRIM | ID: wpr-856377

ABSTRACT

Objective: To investigate the effect of three-dimensional (3D) printing guide plate on improving femoral rotational alignment and patellar tracking in total knee arthroplasty (TKA). Methods: Between January 2018 and October 2018, 60 patients (60 knees) with advanced knee osteoarthritis who received TKA and met the selection criteria were selected as the study subjects. Patients were randomly divided into two groups according to the random number table method, with 30 patients in each group. The TKA was done with the help of 3D printing guide plate in the guide group and following traditional procedure in the control group. There was no significant difference in gender, age, disease duration, side, and preoperative hip-knee-ankle angle (HKA), posterior condylar angle (PCA), patella transverse axis-femoral transepicondylar axis angle (PFA), Hospital for Special Surgery (HSS) score, and American Knee Society (AKS) score ( P>0.05). Results: All incisions healed by first intention and no complications related to the operation occurred. All patients were followed up 10-12 months, with an average of 11 months. HSS score and AKS score of the two groups at 6 months after operation were significantly higher than those before operation ( P0.05). Postoperative X-ray films showed that the prosthesis was in good position, and no prosthesis loosening or sinking occurred during follow-up. HKA, PCA, and PFA significantly improved in the two groups at 10 months after operation compared with those before operation ( P<0.05). There was no significant difference in HKA at 10 months between the two groups ( t=1.031, P=0.307). PCA and PFA in the guide group were smaller than those in the control group ( P<0.05). Conclusion: Application of 3D printing guide plate in TKA can not only correct the deformity of the knee joint and alleviate the pain symptoms, but also achieve the goal of the accurate femoral rotation alignment and good patellar tracking.

11.
Chinese Journal of Tissue Engineering Research ; (53): 1324-1330, 2020.
Article in Chinese | WPRIM | ID: wpr-848009

ABSTRACT

BACKGROUND: Hip arthroplasty is now an effective method of effectively solving the problem of femoral neck fracture in the elderly, but there is a risk of big trauma, high joint dislocation and postoperative complications. OBJECTIVE: To explore the application value of 3D printing guide plate in hip arthroplasty in the elderly by retrospective study and literature retrieval. METHODS: (1) Clinical data of 25 elderly patients with femoral neck fracture undergoing hip arthroplasty from February 2017 to October 2018 in Liaoning Jinqiu Hospital were retrospectively analyzed. In the guide plate group, 13 patients received hip arthroplasty using 3D printing guide plate. In the non-guide plate group, printing guide plate was not used in 12 cases. The application value of SuperPATH technique with 3D printing guide plate in hip arthroplasty in the elderly was observed. (2) Wanfang database was retrieved by the first author for studies published from 2000 to 2019. The key words were “3D, hip”. According to the inclusion criteria, 31 articles were selected to analyze the application value of 3D printing guide plate in hip arthroplasty in the elderly. RESULTS AND CONCLUSION: (1) The results of retrospective analysis showed that the operation time and the times of X-ray fluoroscopy were less in the guide plate group than those in the non-guide plate group (P 0.05). (2) Literature search results showed that 3D guide plates could be used to compensate for some defects of surgery in hip arthroplasty. There are many approaches to implement joint arthroplasty. Both conventional and minimally invasive approaches have direct anterior approach and posterolateral approach. According to several literature analysis, direct anterolateral approach can reduce trauma, and minimally invasive approach can reduce the risk of surgery. The above results show that the use of 3D printing guide plate in elderly hip arthroplasty can reduce the operation time and the times of intraoperative X-ray fluoroscopy, and the effect is better. 3D guide plate has application value in hip arthroplasty, and it has advantages in combination with minimally invasive techniques.

12.
Chinese Journal of Medical Aesthetics and Cosmetology ; (6): 36-39, 2020.
Article in Chinese | WPRIM | ID: wpr-872112

ABSTRACT

Objective To evaluate the effectiveness of computer aided design (CAD) and three bit printing in the management of orthognathic surgery.Methods A total of 5 cases of patients with jaw deformity were involved in this study;jaw teeth and CT scanning laser scanning hefore surgery,virtual surgery design of 3D reconstruction and fusion data were analyzed,according to the design scheme of double jaw surgery combined with genioplasty;design and 3D printing of maxillary Le Fort Ⅰ osteotomy,genioplasty titanium alloy resin osteotomy and positioning guide,sagittal split ramus osteotomy by 3D printing and plate technology were used in this approach.The postoperative results were compared with the surgical planning by three-dimensional measurement and statistical analysis.Results When the operation guide plate was applied smoothly,the maximum error for maxilla was 1.2 mm (0.3-1.2 mm),and the maximum error for genioplasty was 1.7 mm,(0.5-1.7 mm),and the mean error was less than 1 mm.Follow-up for 12 months showed no adverse reaction.Conclusions Three dimensional printing surgical guide plate can accurately provide the osteotomy information,effectively control the jaw movement,and improve the orthognathic surgery accuracy of patients with partial jaw deformity.

13.
Journal of Prevention and Treatment for Stomatological Diseases ; (12): 100-103, 2019.
Article in Chinese | WPRIM | ID: wpr-751039

ABSTRACT

Objective@#To explore the application value of digital 3D printing technology for repairing mandibular defects with fibular flaps and to provide a basis for accurate repair mandibular defects.@*Methods@#Nine cases of mandibular defects were selected, and spiral CT and CTA of the lower limbs were performed before the operation. The osteotomy guide plate and plastic guide plate were created using computer software, and the titanium plate was rebuilt according to the printed mandibular model. During the operation, an osteotomy guide plate was used for mandibular resection; a fibula bone plastic guide plate was used to reconstruct the fibular flap and reconstruct the mandibular defects.@*Results@#The entire fibula flap survived, and the occlusal relationship was good. There was no complications in the donor site. The patients were satisfied with the appearance of the repair. All patients were followed up for 3 to 6 months, at which point the bone was basically healed.@*Conclusion@#Using a digital 3D printing technique to repair mandible defects with a fibular flap can shorten the operation time, reduce the risks of operation, and better restore the maxillofacial shape and the function of the jaw, which is consistent with the concept of appropriate medical treatment. Additionally, this process provides a better method for the treatment of mandibular defects.

14.
Chinese Journal of Oncology ; (12): 496-500, 2019.
Article in Chinese | WPRIM | ID: wpr-810769

ABSTRACT

Objective@#To evaluate the effect of vascular localization using computerized tomography angiography (CTA) combined with refined three dimensional (3D) printing in guiding the resection and reconstruction of complex oral cancer.@*Methods@#From December 2013 to July 2017, the clinical data of 30 patients with complex oral cancer enrolled in the Hunan Cancer Hospital were retrospectively analyzed. 15 patients received CTA+ 3D assisted surgery, while the other 15 patients underwent traditional surgery. In CTA+ 3D assisted surgery group, CT and Magnetic Resonance Imaging (MRI) data were combined with CTA to print refined solid 3D model and surgical guide plate. The preoperative and intraoperative virtual surgical system and the operative experience were combined for preoperative evaluation and surgery. In traditional surgery group, preoperative evaluation and surgery were performed according to imaging data and surgeons′ clinical experience. Operative time, intraoperative blood loss, hospital stay and local recurrence rate were compared between the two groups.@*Results@#In CTA+ 3D assisted surgery group, one patient gave up surgical treatment after intuitively watching the lesion through the 3D model, and the remaining 14 patients underwent surgery as planned. All the 15 patients in traditional surgery group received surgery. But the preoperative plans of three patients were temporarily and passively modified due to insufficient preoperative evaluation. The average intraoperative blood loss was(320.1±27.2)ml in CTA+ 3D assisted surgery group and(430.2±30.3)ml in traditional surgery group. Mean operation time was(440.3±19.2)min and(552.2±23.3)min, respectively. Mean hospitalization time was (20.4±3.2)d and (25.1±3.7)d, respectively. The differences were all statistically significant (all P<0.05). 1 year and 3 years local recurrence rates were 9.1% and 28.6% in CTA+ 3D assisted surgery group, as well as 14.3% and 50.4% in traditional surgery group with statistical significance (P<0.05).@*Conclusion@#For complex oral cancer patients with difficulty in opening the mouth or postoperative recurrence, CTA vascular localization combined with fine 3D printing technology has significant advantages in the surgical process, surgical effect and postoperative evaluation index compared with traditional method using imaging data and clinical experience.

15.
Chinese Journal of Plastic Surgery ; (6): 417-421, 2018.
Article in Chinese | WPRIM | ID: wpr-806665

ABSTRACT

Objective@#To compare the surgical accuracy of the 3D printing surgical guide and traditional occlusal splint in the treatment of skeletal facial asymmetry cases.@*Methods@#12 facial asymmetric patients underwent joint orthognathic and orthodontics treatments were included in this research. In the 3D printing group (n=6) the pre-surgical CT scan for the skeleton and laser scan for the dentures were performed and 3D orthognathic procedures including Le FortⅠ and BSSRO combined with genioplasty were planned. The 3D printing surgical guides were manufactured and applied during surgeries. Another 6 cases were received same procedures by traditional occlusal splint techniques as the control group. Post-surgical CT reconstruction and 3D superimposition with pre-surgical planning was carried out for outcome comparison.@*Results@#The maximal error of maxillar was 0.65 mm and average error was less than 1 mm in 3D printing group, while the maxillary maximal error was 2.11 mm and average error was greater than 1 mm in traditional group which showed the statistical significance (P<0.05).@*Conclusions@#The usage of 3D printing surgical guide could improve the orthognathic surgical precision by controlling the jaw bone in a three-dimensional way.

16.
Clinical Medicine of China ; (12): 20-25, 2018.
Article in Chinese | WPRIM | ID: wpr-664013

ABSTRACT

Objective To introduce the application of 3D printing individualized plastic guide plate in the treatment of pelvic and acetabular fracture and to evaluate its application value.Methods From June 2016 to April 2017,the clinical data of eleven adult patients with pelvic and acetabular fracture was analyzed retrospectively.The pelvic CT scan was performed before operation to obtain the original data.Three-dimensional reconstruction performed by mimics 17.0 software with the data and the fracture reduction performed on the software.3D printing individualized plastic guide plate was designed and made to guide the pre-implantation plate bending and shaping.The pre implantation plate bending was completed according to the plastic guide.Postoperative Matta imaging score was used to evaluate fracture reduction,while the function of the hip joint was assessed by the Harris scores.Results All the operations were successfully completed.There were no adverse complications during or after the operation.Anatomical reduction was performed in 10 cases and functional reduction in 1 case.The excellent and good rate of Matta scores was 90.9%,excellent in 7 cases,good in 3 cases,fair in 1 case and no poor case.The excellent rate of Harris scores was 81.8%,excellent in 6 cases, good in 3 cases,fair in 2 cases and no poor case.Conclusion In the treatment of pelvic and acetabular fracture,the application of 3D printing individualized plastic guide plate may not only make mode simple and feasible and save time and materials,but also simplify the operation,reduce the difficulty of operation and hold satisfactory clinical effect.

17.
Chinese Journal of Orthopaedic Trauma ; (12): 381-385, 2016.
Article in Chinese | WPRIM | ID: wpr-497923

ABSTRACT

Objective To investigate the safety and efficacy of a customized guide plate which is designed by digital medical technology and manufactured by 3D printing in clinical percutaneous needling at the hip joint.Methods Enrolled in this study were 9 patients with hip disorder who required hip joint needling during the period from April 2015 to August 2015.They were 7 males and 2 females,21 to 53 years of age (average,42 years).Laterality:5 left sides and 4 right sides.Conditions:4 cases of traumatic arthritis and 5 cases of osteoarthritis.All of them underwent lamellar CT scans whose data were imported into the software of Mimics 10.01 for 3D reconstruction.Then the software of 3-matic was used to design a customized guide plate on the reconstructed models.Finally,3D printing was used to manufacture the guide plate.The needle angle,direction and depth were adjusted in vitro and the operation was simulated before actual needling in clinic.After percutaneous hip joint needling was performed in the 9 patients separately,the accuracy of needling was checked using C-arm fluoroscopy.Results The percutaneous hip joint needling was performed successfully in the 9 patients in whom the customized guide plate was used.The results were consistent with what had been designed on the reconstructed models.The operation time in the 9 patients averaged 417.7 s (range,from 387 s to 590 s).Little intraoperative bleeding was observed at the site of needling,fluoroscopy was applied only once for check.No neurovascular injury or other operation-related complications occurred.Conclusion For patients who need repeated percutaneous needling at the hip joint,the customized guide plate designed by us can improve accuracy and ensure safety and efficacy of needling.

18.
Chinese Journal of Microsurgery ; (6): 323-327, 2014.
Article in Chinese | WPRIM | ID: wpr-455866

ABSTRACT

Objective To introduce the application and assess the outcome of ProPlan CMF software in virtual surgery of mandibular resection and reconstruction with vascularized fibular graft.Methods Nineteen patients were performed mandibular resection,and immediate reconstruction with free fibular graft by application of ProPlan CMF software between March 1,2013 and January 31,2014,including 7 cases of osteoradionecrosis,6 cases of adamantoblastoma,4 cases of carcinoma of gingiva,2 cases of intra-osseous carcinoma of mandible.There were 12 males and 7 females,with an age range of 21-73 years (median,54 years).In each case,three-dimensional spiral CT scan of mandible and fibula was obtained before operation.The CT data were imported into the ProPlan CMF software and the virtual surgical planning was performed.After that,the mandibular rapid prototyping and surgical guide plates were made according to customized design.The segmental resection of mandible,titanium plate bending,fibular molding,insetting and fixing were then carried out by using these surgical guide plates.Results Operations were undertaken successfully according to preoperative design in all nineteen patients and negative margin was detected by intraoperative frozen section.The fibula was cut,shaped and fixed accurately.The operations took 4.5-7.0 hours (mean,5.5 hours).Primary healing of incision was obtained without complications except fistula in 2 cases of osteoradionecrosis,which were resolved with local wound care after 4 weeks.19 patients were followed up between 3 months to 1 year and all patients were alive with disease free.All patients were satisfactory with their maxillofacial appearance,occlusion and function.The ranges of mouth opening was 2.0-4.0 cm.The postoperative panoramic radiographs or CT scan showed perfect situation and contour of fibular graft.Healing of the donor site occurred without significant complications.All patients started early postoperative ambulation,and walked normally after 2 or 3 months.Conclusion The application of ProPlan CMF software in virtual surgical design and guide plates creation can simplify the operation,and improve the accuracy of mandibular resection and reconstruction,especially the spatial relationship of the mandible and the fibula graft.It is worth promotion widely in clinical practice.

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