1.Influence of Patellar Implant Shape on Patellofemoral Contact Pressure Using Finite Element Analysis
Hun Sik CHO ; Hyoung-Taek HONG ; Hyuck Min KWON ; Yong-Gon KOH ; Seong-Mun HWANG ; Kwan Kyu PARK ; Kyoung-Tak KANG
Yonsei Medical Journal 2025;66(6):383-389
Purpose:
This study focused on analyzing the contact pressure and area on different patellar component designs in total knee arthroplasty (TKA) to evaluate biomechanics related to the patellofemoral (PF) joint.
Materials and Methods:
The patellar components studied included the dome design, modified dome design, and anatomical design implants. Using finite element analysis and mechanical testing, the pressure and area were evaluated. The first loading condition was simulated at flexion angles of 0°, 15°, 45°, 90°, 120°, and 150°. The second loading condition was simulated for a clinically relevant scenario, involving a 2-mm medial shift at a flexion angle of 45°.
Results:
For both the modified dome and anatomical designs, the contact area and pressure increased with the flexion angle. The dome design reached its maximum contact area at a flexion angle of 120°. Among the designs, the anatomical design had the largest contact area and a lower contact pressure compared to the dome and modified dome designs. However, when a medial shift of 2 mm was simulated at a 45° flexion angle, which can occur clinically, the anatomical design showed edge contact, leading to higher contact pressure and reduced contact area. In contrast, the modified dome design demonstrated the lowest contact pressure and the greatest contact area under the same shifted conditions.
Conclusion
These findings suggest that the design of the patellar component significantly affects patellar biomechanics and stability. Specifically, the modified dome design showed improved biomechanical effects in clinically relevant scenarios. Therefore, patellar components with a modified dome design are expected to better manage PF joint pain and reduce complications in TKA.
3.The Application of L-Serine-Incorporated Gelatin Sponge into the Calvarial Defect of the Ovariectomized Rats
Yoon-Jo LEE ; Ji-Hyeon OH ; Suyeon PARK ; Jongho CHOI ; Min-Ho HONG ; HaeYong KWEON ; Weon-Sik CHAE ; Xiangguo CHE ; Je-Yong CHOI ; Seong-Gon KIM
Tissue Engineering and Regenerative Medicine 2025;22(1):91-104
BACKGROUND:
Osteoporosis, characterized by decreased bone mineral density due to an imbalance between osteoblast and osteoclast activity, poses significant challenges in bone healing, particularly in postmenopausal women. Current treatments, such as bisphosphonates, are effective but associated with adverse effects like medication-related osteonecrosis of the jaw, necessitating safer alternatives.
METHODS:
This study investigated the use of L-serine-incorporated gelatin sponges for bone regeneration in calvarial defects in an ovariectomized rat model of osteoporosis. Thirty rats were divided into three groups: a control group, a group treated with a gelatin sponge containing an amino acid mixture, and a group treated with a gelatin sponge containing L-serine. Bone regeneration was assessed using micro-computed tomography (micro-CT) and histological analyses.
RESULTS:
The L-serine group showed a significant increase in bone volume (BV) and bone area compared to the control and amino acid groups. The bone volume to total volume (BV/TV) ratio was also significantly higher in the L-serine group.Immunohistochemical analysis demonstrated that L-serine treatment suppressed the expression of cathepsin K, a marker of osteoclast activity, while increasing serine racemase activity.
CONCLUSION
These findings suggest that L-serine-incorporated gelatin sponges not only enhance bone formation but also inhibit osteoclast-mediated bone resorption, providing a promising and safer alternative to current therapies for osteoporosis-related bone defects. Further research is needed to explore its clinical applications in human patients.
4.Influence of Patellar Implant Shape on Patellofemoral Contact Pressure Using Finite Element Analysis
Hun Sik CHO ; Hyoung-Taek HONG ; Hyuck Min KWON ; Yong-Gon KOH ; Seong-Mun HWANG ; Kwan Kyu PARK ; Kyoung-Tak KANG
Yonsei Medical Journal 2025;66(6):383-389
Purpose:
This study focused on analyzing the contact pressure and area on different patellar component designs in total knee arthroplasty (TKA) to evaluate biomechanics related to the patellofemoral (PF) joint.
Materials and Methods:
The patellar components studied included the dome design, modified dome design, and anatomical design implants. Using finite element analysis and mechanical testing, the pressure and area were evaluated. The first loading condition was simulated at flexion angles of 0°, 15°, 45°, 90°, 120°, and 150°. The second loading condition was simulated for a clinically relevant scenario, involving a 2-mm medial shift at a flexion angle of 45°.
Results:
For both the modified dome and anatomical designs, the contact area and pressure increased with the flexion angle. The dome design reached its maximum contact area at a flexion angle of 120°. Among the designs, the anatomical design had the largest contact area and a lower contact pressure compared to the dome and modified dome designs. However, when a medial shift of 2 mm was simulated at a 45° flexion angle, which can occur clinically, the anatomical design showed edge contact, leading to higher contact pressure and reduced contact area. In contrast, the modified dome design demonstrated the lowest contact pressure and the greatest contact area under the same shifted conditions.
Conclusion
These findings suggest that the design of the patellar component significantly affects patellar biomechanics and stability. Specifically, the modified dome design showed improved biomechanical effects in clinically relevant scenarios. Therefore, patellar components with a modified dome design are expected to better manage PF joint pain and reduce complications in TKA.
5.Idiopathic Orbital Myositis Presenting with Upper Eyelid Retraction: A Case Series
Yong-Ha JO ; Min Kyu YANG ; Seong Jung HA ; Ho-Seok SA
Journal of the Korean Ophthalmological Society 2025;66(3):151-157
Purpose:
Although upper eyelid retraction is commonly associated with thyroid eye disease, its etiology remains unclear. This study evaluated the clinical features and treatment outcomes of patients with upper eyelid retraction caused by idiopathic orbital myositis (IOM).
Methods:
We conducted a retrospective analysis of the medical records of patients who presented with unilateral upper eyelid retraction. IOM was diagnosed based on normal thyroid function tests (TFT), including thyroid-stimulating immunoglobulin (TSI). Orbital imaging demonstrated contrast-enhanced enlargement of the superior rectus-levator palpebrae superioris complex (SR-LC). Pre- and post-systemic steroid treatment, margin-reflex distance 1 (MRD1), MRD1 difference between affected and unaffected eyes, exophthalmos, and diplopia were assessed.
Results:
In total, five patients (male: 4, female: 1) with a median age of 36.4 years were diagnosed with IOM. Three patients presented with diplopia on upgaze and supraduction limitation. Orbital imaging revealed levator palpebrae superioris muscle enlargement with distinct borders and homogeneous contrast enhancement. All cases with superior rectus enlargement demonstrated tendon involvement. The median duration from symptom onset to treatment initiation was 2.2 months. Four patients received oral prednisolone, whereas one received intravenous methylprednisolone. Although no significant improvements were observed in MRD1, MRD1 difference, or exophthalmos post-treatment, diplopia resolved in all three patients.
Conclusions
IOM can present with upper eyelid retraction, emphasizing the importance of differentiating it from thyroid eye disease. TFT, including TSIs, and orbital imaging are essential diagnostic tools. These findings indicate that systemic corticosteroids can effectively manage diplopia associated with IOM, emphasizing the potential benefit of early and aggressive treatment.
7.Idiopathic Orbital Myositis Presenting with Upper Eyelid Retraction: A Case Series
Yong-Ha JO ; Min Kyu YANG ; Seong Jung HA ; Ho-Seok SA
Journal of the Korean Ophthalmological Society 2025;66(3):151-157
Purpose:
Although upper eyelid retraction is commonly associated with thyroid eye disease, its etiology remains unclear. This study evaluated the clinical features and treatment outcomes of patients with upper eyelid retraction caused by idiopathic orbital myositis (IOM).
Methods:
We conducted a retrospective analysis of the medical records of patients who presented with unilateral upper eyelid retraction. IOM was diagnosed based on normal thyroid function tests (TFT), including thyroid-stimulating immunoglobulin (TSI). Orbital imaging demonstrated contrast-enhanced enlargement of the superior rectus-levator palpebrae superioris complex (SR-LC). Pre- and post-systemic steroid treatment, margin-reflex distance 1 (MRD1), MRD1 difference between affected and unaffected eyes, exophthalmos, and diplopia were assessed.
Results:
In total, five patients (male: 4, female: 1) with a median age of 36.4 years were diagnosed with IOM. Three patients presented with diplopia on upgaze and supraduction limitation. Orbital imaging revealed levator palpebrae superioris muscle enlargement with distinct borders and homogeneous contrast enhancement. All cases with superior rectus enlargement demonstrated tendon involvement. The median duration from symptom onset to treatment initiation was 2.2 months. Four patients received oral prednisolone, whereas one received intravenous methylprednisolone. Although no significant improvements were observed in MRD1, MRD1 difference, or exophthalmos post-treatment, diplopia resolved in all three patients.
Conclusions
IOM can present with upper eyelid retraction, emphasizing the importance of differentiating it from thyroid eye disease. TFT, including TSIs, and orbital imaging are essential diagnostic tools. These findings indicate that systemic corticosteroids can effectively manage diplopia associated with IOM, emphasizing the potential benefit of early and aggressive treatment.
9.The Application of L-Serine-Incorporated Gelatin Sponge into the Calvarial Defect of the Ovariectomized Rats
Yoon-Jo LEE ; Ji-Hyeon OH ; Suyeon PARK ; Jongho CHOI ; Min-Ho HONG ; HaeYong KWEON ; Weon-Sik CHAE ; Xiangguo CHE ; Je-Yong CHOI ; Seong-Gon KIM
Tissue Engineering and Regenerative Medicine 2025;22(1):91-104
BACKGROUND:
Osteoporosis, characterized by decreased bone mineral density due to an imbalance between osteoblast and osteoclast activity, poses significant challenges in bone healing, particularly in postmenopausal women. Current treatments, such as bisphosphonates, are effective but associated with adverse effects like medication-related osteonecrosis of the jaw, necessitating safer alternatives.
METHODS:
This study investigated the use of L-serine-incorporated gelatin sponges for bone regeneration in calvarial defects in an ovariectomized rat model of osteoporosis. Thirty rats were divided into three groups: a control group, a group treated with a gelatin sponge containing an amino acid mixture, and a group treated with a gelatin sponge containing L-serine. Bone regeneration was assessed using micro-computed tomography (micro-CT) and histological analyses.
RESULTS:
The L-serine group showed a significant increase in bone volume (BV) and bone area compared to the control and amino acid groups. The bone volume to total volume (BV/TV) ratio was also significantly higher in the L-serine group.Immunohistochemical analysis demonstrated that L-serine treatment suppressed the expression of cathepsin K, a marker of osteoclast activity, while increasing serine racemase activity.
CONCLUSION
These findings suggest that L-serine-incorporated gelatin sponges not only enhance bone formation but also inhibit osteoclast-mediated bone resorption, providing a promising and safer alternative to current therapies for osteoporosis-related bone defects. Further research is needed to explore its clinical applications in human patients.
10.The Application of L-Serine-Incorporated Gelatin Sponge into the Calvarial Defect of the Ovariectomized Rats
Yoon-Jo LEE ; Ji-Hyeon OH ; Suyeon PARK ; Jongho CHOI ; Min-Ho HONG ; HaeYong KWEON ; Weon-Sik CHAE ; Xiangguo CHE ; Je-Yong CHOI ; Seong-Gon KIM
Tissue Engineering and Regenerative Medicine 2025;22(1):91-104
BACKGROUND:
Osteoporosis, characterized by decreased bone mineral density due to an imbalance between osteoblast and osteoclast activity, poses significant challenges in bone healing, particularly in postmenopausal women. Current treatments, such as bisphosphonates, are effective but associated with adverse effects like medication-related osteonecrosis of the jaw, necessitating safer alternatives.
METHODS:
This study investigated the use of L-serine-incorporated gelatin sponges for bone regeneration in calvarial defects in an ovariectomized rat model of osteoporosis. Thirty rats were divided into three groups: a control group, a group treated with a gelatin sponge containing an amino acid mixture, and a group treated with a gelatin sponge containing L-serine. Bone regeneration was assessed using micro-computed tomography (micro-CT) and histological analyses.
RESULTS:
The L-serine group showed a significant increase in bone volume (BV) and bone area compared to the control and amino acid groups. The bone volume to total volume (BV/TV) ratio was also significantly higher in the L-serine group.Immunohistochemical analysis demonstrated that L-serine treatment suppressed the expression of cathepsin K, a marker of osteoclast activity, while increasing serine racemase activity.
CONCLUSION
These findings suggest that L-serine-incorporated gelatin sponges not only enhance bone formation but also inhibit osteoclast-mediated bone resorption, providing a promising and safer alternative to current therapies for osteoporosis-related bone defects. Further research is needed to explore its clinical applications in human patients.

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