1.Current status of atopic dermatitis in Japan
Masutaka FURUE ; Takahito CHIBA ; Satoshi TAKEUCHI
Asia Pacific Allergy 2011;1(2):64-72
Atopic dermatitis (AD) is a common, chronic or chronically relapsing, severely pruritic, eczematous skin disease. AD is the second most frequently observed skin disease in dermatology clinics in Japan. Prevalence of childhood AD is 12-13% in mainland Japan; however, it is only half that (about 6%) in children from Ishigaki Island, Okinawa. Topical steroids and tacrolimus are the mainstay of treatment. However, the adverse effects and emotional fear of long-term use of topical steroids have induced a "topical steroid phobia" in patients throughout the world. Undertreatment can exacerbate facial/periocular lesions and lead to the development of atopic cataract and retinal detachment due to repeated scratching/rubbing/patting. Overcoming topical steroid phobia is a key issue for the successful treatment of AD through education, understanding and cooperation of patients and their guardians.
Cataract
;
Child
;
Dermatitis, Atopic
;
Dermatology
;
Education
;
Humans
;
Japan
;
Phobic Disorders
;
Prevalence
;
Retinal Detachment
;
Skin Diseases
;
Skin Diseases, Eczematous
;
Steroids
;
Tacrolimus
2.Cutaneous Sarcoidosis Clinically Mimicking Necrobiosis Lipoidica in a Patient with Systemic Sarcoidosis.
Takahito CHIBA ; Masakazu TAKAHARA ; Takeshi NAKAHARA ; Shuji FUKAGAWA ; Kenjiro TAKEI ; Asuka SHONO ; Hiromaro KIRYU ; Yoichi MOROI ; Masutaka FURUE
Annals of Dermatology 2012;24(1):74-76
A 70-year-old woman with an 8-year history of systemic sarcoidosis developed round, red-brown eruptions, with central atrophic lesions on her lower legs. The features of the biopsy specimen resembled those of necrobiosis lipoidica (NL), but although necrobiosis was present there were well-formed non-necrotizing granulomas in the dermis. The histological diagnosis was cutaneous sarcoidosis. Systemic sarcoidosis presenting with NL has rarely been reported. The histological features of cutaneous sarcoidosis sometimes mimic those of other granulomatous diseases, including NL and granuloma annulare, which are difficult to distinguish. We discuss the novel association between sarcoidosis and other granulomatous diseases.
Aged
;
Biopsy
;
Dermis
;
Female
;
Granuloma
;
Granuloma Annulare
;
Humans
;
Hydrazines
;
Leg
;
Necrobiosis Lipoidica
;
Necrobiotic Disorders
;
Sarcoidosis
3.Predictive Factors for Increased Bone Density Following Romosozumab Administration Based on Pre-Administration Blood Test Results
Akira KUWABARA ; Kazuhide INAGE ; Masaomi YAMASHITA ; Sumihisa ORITA ; Yawara EGUCHI ; Yasuhiro SHIGA ; Masahiro INOUE ; Miyako SUZUKI-NARITA ; Takahisa HISHIYA ; Takahito ARAI ; Noriyasu TOSHI ; Kohei OKUYAMA ; Soichiro TOKESHI ; Susumu TASHIRO ; Shuhei OHYAMA ; Noritaka SUZUKI ; Seiji OHTORI
Yonsei Medical Journal 2025;66(4):226-232
Purpose:
Romosozumab reportedly increases bone density in patients with severe osteoporosis; however, data on its clinical effects are limited. We conducted a multicenter retrospective survey to study the bone density-increasing effects of romosozumab and blood test-based predictive factors in patients with severe osteoporosis, examining its effects in clinical practice.
Materials and Methods:
This was a multicenter retrospective observational study. The subjects were patients with severe osteoporosis who were treated with romosozumab at the participating facilities. The increase in bone density was assessed by comparing bone density changes (as a percentage) in the lumbar spine, femoral neck, and total femur before and 12 months after administration using dual-energy X-ray absorptiometry. The association between changes in bone density at each site and pre-treatment bone metabolism markers (Tracp 5b, P1NP), serum calcium levels, nutritional status [Conut score: albumin, total cholesterol (TCho), and total lymphocyte count], and kidney function (eGFR) was assessed.
Results:
In both naïve patients and those switching from bone resorption inhibitors, the bone density increased significantly. In naïve patients, eGFR were positively associated with bone density in the total femur. In cases of switching from bone resorption inhibitors, correlations were found between Tracp 5b and lumbar spine bone mineral density (BMD), as well as between Tracp 5b, Alb, T-Cho, and eGFR in the total femur BMD.
Conclusion
Romosozumab administration significantly increases bone density in osteoporosis, and assessing key predictive factors is necessary to ensure clinical effectiveness.
4.Predictive Factors for Increased Bone Density Following Romosozumab Administration Based on Pre-Administration Blood Test Results
Akira KUWABARA ; Kazuhide INAGE ; Masaomi YAMASHITA ; Sumihisa ORITA ; Yawara EGUCHI ; Yasuhiro SHIGA ; Masahiro INOUE ; Miyako SUZUKI-NARITA ; Takahisa HISHIYA ; Takahito ARAI ; Noriyasu TOSHI ; Kohei OKUYAMA ; Soichiro TOKESHI ; Susumu TASHIRO ; Shuhei OHYAMA ; Noritaka SUZUKI ; Seiji OHTORI
Yonsei Medical Journal 2025;66(4):226-232
Purpose:
Romosozumab reportedly increases bone density in patients with severe osteoporosis; however, data on its clinical effects are limited. We conducted a multicenter retrospective survey to study the bone density-increasing effects of romosozumab and blood test-based predictive factors in patients with severe osteoporosis, examining its effects in clinical practice.
Materials and Methods:
This was a multicenter retrospective observational study. The subjects were patients with severe osteoporosis who were treated with romosozumab at the participating facilities. The increase in bone density was assessed by comparing bone density changes (as a percentage) in the lumbar spine, femoral neck, and total femur before and 12 months after administration using dual-energy X-ray absorptiometry. The association between changes in bone density at each site and pre-treatment bone metabolism markers (Tracp 5b, P1NP), serum calcium levels, nutritional status [Conut score: albumin, total cholesterol (TCho), and total lymphocyte count], and kidney function (eGFR) was assessed.
Results:
In both naïve patients and those switching from bone resorption inhibitors, the bone density increased significantly. In naïve patients, eGFR were positively associated with bone density in the total femur. In cases of switching from bone resorption inhibitors, correlations were found between Tracp 5b and lumbar spine bone mineral density (BMD), as well as between Tracp 5b, Alb, T-Cho, and eGFR in the total femur BMD.
Conclusion
Romosozumab administration significantly increases bone density in osteoporosis, and assessing key predictive factors is necessary to ensure clinical effectiveness.
5.Predictive Factors for Increased Bone Density Following Romosozumab Administration Based on Pre-Administration Blood Test Results
Akira KUWABARA ; Kazuhide INAGE ; Masaomi YAMASHITA ; Sumihisa ORITA ; Yawara EGUCHI ; Yasuhiro SHIGA ; Masahiro INOUE ; Miyako SUZUKI-NARITA ; Takahisa HISHIYA ; Takahito ARAI ; Noriyasu TOSHI ; Kohei OKUYAMA ; Soichiro TOKESHI ; Susumu TASHIRO ; Shuhei OHYAMA ; Noritaka SUZUKI ; Seiji OHTORI
Yonsei Medical Journal 2025;66(4):226-232
Purpose:
Romosozumab reportedly increases bone density in patients with severe osteoporosis; however, data on its clinical effects are limited. We conducted a multicenter retrospective survey to study the bone density-increasing effects of romosozumab and blood test-based predictive factors in patients with severe osteoporosis, examining its effects in clinical practice.
Materials and Methods:
This was a multicenter retrospective observational study. The subjects were patients with severe osteoporosis who were treated with romosozumab at the participating facilities. The increase in bone density was assessed by comparing bone density changes (as a percentage) in the lumbar spine, femoral neck, and total femur before and 12 months after administration using dual-energy X-ray absorptiometry. The association between changes in bone density at each site and pre-treatment bone metabolism markers (Tracp 5b, P1NP), serum calcium levels, nutritional status [Conut score: albumin, total cholesterol (TCho), and total lymphocyte count], and kidney function (eGFR) was assessed.
Results:
In both naïve patients and those switching from bone resorption inhibitors, the bone density increased significantly. In naïve patients, eGFR were positively associated with bone density in the total femur. In cases of switching from bone resorption inhibitors, correlations were found between Tracp 5b and lumbar spine bone mineral density (BMD), as well as between Tracp 5b, Alb, T-Cho, and eGFR in the total femur BMD.
Conclusion
Romosozumab administration significantly increases bone density in osteoporosis, and assessing key predictive factors is necessary to ensure clinical effectiveness.
6.Predictive Factors for Increased Bone Density Following Romosozumab Administration Based on Pre-Administration Blood Test Results
Akira KUWABARA ; Kazuhide INAGE ; Masaomi YAMASHITA ; Sumihisa ORITA ; Yawara EGUCHI ; Yasuhiro SHIGA ; Masahiro INOUE ; Miyako SUZUKI-NARITA ; Takahisa HISHIYA ; Takahito ARAI ; Noriyasu TOSHI ; Kohei OKUYAMA ; Soichiro TOKESHI ; Susumu TASHIRO ; Shuhei OHYAMA ; Noritaka SUZUKI ; Seiji OHTORI
Yonsei Medical Journal 2025;66(4):226-232
Purpose:
Romosozumab reportedly increases bone density in patients with severe osteoporosis; however, data on its clinical effects are limited. We conducted a multicenter retrospective survey to study the bone density-increasing effects of romosozumab and blood test-based predictive factors in patients with severe osteoporosis, examining its effects in clinical practice.
Materials and Methods:
This was a multicenter retrospective observational study. The subjects were patients with severe osteoporosis who were treated with romosozumab at the participating facilities. The increase in bone density was assessed by comparing bone density changes (as a percentage) in the lumbar spine, femoral neck, and total femur before and 12 months after administration using dual-energy X-ray absorptiometry. The association between changes in bone density at each site and pre-treatment bone metabolism markers (Tracp 5b, P1NP), serum calcium levels, nutritional status [Conut score: albumin, total cholesterol (TCho), and total lymphocyte count], and kidney function (eGFR) was assessed.
Results:
In both naïve patients and those switching from bone resorption inhibitors, the bone density increased significantly. In naïve patients, eGFR were positively associated with bone density in the total femur. In cases of switching from bone resorption inhibitors, correlations were found between Tracp 5b and lumbar spine bone mineral density (BMD), as well as between Tracp 5b, Alb, T-Cho, and eGFR in the total femur BMD.
Conclusion
Romosozumab administration significantly increases bone density in osteoporosis, and assessing key predictive factors is necessary to ensure clinical effectiveness.
7.Predictive Factors for Increased Bone Density Following Romosozumab Administration Based on Pre-Administration Blood Test Results
Akira KUWABARA ; Kazuhide INAGE ; Masaomi YAMASHITA ; Sumihisa ORITA ; Yawara EGUCHI ; Yasuhiro SHIGA ; Masahiro INOUE ; Miyako SUZUKI-NARITA ; Takahisa HISHIYA ; Takahito ARAI ; Noriyasu TOSHI ; Kohei OKUYAMA ; Soichiro TOKESHI ; Susumu TASHIRO ; Shuhei OHYAMA ; Noritaka SUZUKI ; Seiji OHTORI
Yonsei Medical Journal 2025;66(4):226-232
Purpose:
Romosozumab reportedly increases bone density in patients with severe osteoporosis; however, data on its clinical effects are limited. We conducted a multicenter retrospective survey to study the bone density-increasing effects of romosozumab and blood test-based predictive factors in patients with severe osteoporosis, examining its effects in clinical practice.
Materials and Methods:
This was a multicenter retrospective observational study. The subjects were patients with severe osteoporosis who were treated with romosozumab at the participating facilities. The increase in bone density was assessed by comparing bone density changes (as a percentage) in the lumbar spine, femoral neck, and total femur before and 12 months after administration using dual-energy X-ray absorptiometry. The association between changes in bone density at each site and pre-treatment bone metabolism markers (Tracp 5b, P1NP), serum calcium levels, nutritional status [Conut score: albumin, total cholesterol (TCho), and total lymphocyte count], and kidney function (eGFR) was assessed.
Results:
In both naïve patients and those switching from bone resorption inhibitors, the bone density increased significantly. In naïve patients, eGFR were positively associated with bone density in the total femur. In cases of switching from bone resorption inhibitors, correlations were found between Tracp 5b and lumbar spine bone mineral density (BMD), as well as between Tracp 5b, Alb, T-Cho, and eGFR in the total femur BMD.
Conclusion
Romosozumab administration significantly increases bone density in osteoporosis, and assessing key predictive factors is necessary to ensure clinical effectiveness.
8.A novel method for determining dose distribution on panoramic reconstruction computed tomography images from radiotherapy computed tomography
Hiroyuki OKAMOTO ; Madoka SAKURAMACHI ; Wakako YATSUOKA ; Takao UENO ; Kouji KATSURA ; Naoya MURAKAMI ; Satoshi NAKAMURA ; Kotaro IIJIMA ; Takahito CHIBA ; Hiroki NAKAYAMA ; Yasunori SHUTO ; Yuki TAKANO ; Yuta KOBAYASHI ; Hironori KISHIDA ; Yuka URAGO ; Masato NISHITANI ; Shuka NISHINA ; Koushin ARAI ; Hiroshi IGAKI
Imaging Science in Dentistry 2024;54(2):129-137
Purpose:
Patients with head and neck cancer (HNC) who undergo dental procedures during radiotherapy (RT) face an increased risk of developing osteoradionecrosis (ORN). Accordingly, new tools must be developed to extract critical information regarding the dose delivered to the teeth and mandible. This article proposes a novel approach for visualizing 3-dimensional planned dose distributions on panoramic reconstruction computed tomography (pCT) images.
Materials and Methods:
Four patients with HNC who underwent volumetric modulated arc therapy were included. One patient experienced ORN and required the extraction of teeth after RT. In the study approach, the dental arch curve (DAC) was defined using an open-source platform. Subsequently, pCT images and dose distributions were generated based on the new coordinate system. All teeth and mandibles were delineated on both the original CT and pCT images. To evaluate the consistency of dose metrics, the Mann-Whitney U test and Student t-test were employed.
Results:
A total of 61 teeth and 4 mandibles were evaluated. The correlation coefficient between the 2 methods was 0.999, and no statistically significant difference was observed (P>0.05). This method facilitated a straightforward and intuitive understanding of the delivered dose. In 1 patient, ORN corresponded to the region of the root and the gum receiving a high dosage (approximately 70 Gy).
Conclusion
The proposed method particularly benefits dentists involved in the management of patients with HNC. It enables the visualization of a 3-dimensional dose distribution in the teeth and mandible on pCT, enhancing the understanding of the dose delivered during RT.