1.Growth Pattern and Prognostic Factors of Untreated Nonfunctioning Pituitary Adenomas
Kihwan HWANG ; Taehun KWON ; Jay PARK ; Jin Deok JOO ; Jung Ho HAN ; Chang Wan OH ; Chae Yong KIM
Journal of Korean Neurosurgical Society 2019;62(2):256-262
OBJECTIVE: Pituitary adenomas (PAs) are often detected as incidental findings. However, the natural history remains unclear. The objective of this study was to evaluate the natural history and growth pattern of untreated PAs.METHODS: Between 2003 and 2014, 59 PAs were managed with clinico-radiological follow up for longer than 12 months without any kind of therapeutic intervention. Tumor volumes were calculated at initial and last follow-up visit, and tumor growth during the observation period was determined. Data were analyzed according to clinical and imaging characteristics.RESULTS: The mean initial and last tumor volume and diameter were 1.83±2.97 mL and 13.77±6.45 mm, 2.85±4.47 mL and 15.75±8.08 mm, respectively. The mean annual tumor growth rate was 0.33±0.68 mL/year during a mean observation period of 46.8±32.1 months. Sixteen (27%) PAs showed tumor growth. The initial tumor size (HR, 1.140; 95% confidence interval, 1.003–1.295; p=0.045) was the independent predictive factor that determined the tumor growth. Six patients (11%) of 56 conservatively managed non-symptomatic PAs underwent resection for aggravating visual symptoms with mean interval of 34.5 months from diagnosis. By Cox regression analysis, PAs of last longest diameter over 21.75 mm were a significant prognostic factor for eventual treatment.CONCLUSION: The initial tumor size of PAs was independently associated with the tumor growth. Six patients (11%) of conservatively managed PAs were likely to be treated eventually. PAs of last follow-up longest diameter over 21.75 mm were a significant prognostic factor for treatment. Further studies with a large series are required to determine treatment strategy.
Diagnosis
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Follow-Up Studies
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Humans
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Incidental Findings
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Natural History
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Pituitary Neoplasms
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Prognosis
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Tumor Burden
2.A Review of Three-Dimensional Printing Technology for Medical Applications
Sangwook LEE ; Taehun KIM ; Dayeong HONG ; Junhyeok OCK ; Jaeyoung KWON ; Eunseo GWON ; Jinhee KWON ; Joon Beom SEO ; Eun Jin CHAE ; Dong Hyun YANG ; Choung Soo KIM ; Yoon Soo KYUNG ; Beom Seok KO ; Sehoon CHOI ; Ho Seok SA ; Namkug KIM
Journal of the Korean Radiological Society 2019;80(2):213-225
Three-dimensional (3D) printing technology, with additive manufacturing, can aid in the production of various kinds of patient-specific medical devices and implants in medical fields, which cannot be covered by mass production systems for producing conventional devices/implants. The simulator-based medical image demonstrates the anatomical structure of the disease, which can be used for education, diagnosis, preparation of treatment plan and preoperative surgical guide, etc. The surgical guide is used as a patient-specific medical device for guiding incision, resection, insertion, and marking. As 3D printers can output materials that can be inserted into the human body, the patient-specific implant device that reflects the patient's anatomy and surgical plan could be of relevance. In addition, patient-specific aids, including gibs, splints, prostheses, and epitheses, could be used for a better outcome. Finally, bio-printing is also used to cultivate cells to produce functional artificial tissues.