Publications by authors named "Jiabin Tian"

In the updated 5th edition of the WHO Classification of Skin Tumors, primary cutaneous cribriform carcinoma has been renamed cribriform tumor. This entity is a rare sweat gland neoplasm with undetermined malignant potential, with only 46 cases reported to date. Herein, we present a case of a 30-year-old female with a solitary nodule in the left thigh subcutaneous tissue.

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Objective: To investigate the effects of secukinumab treatment for psoriasis on different functional cytokines and inflammatory mediators in patients' serum METHODS: Enzyme-linked immunosorbent assay was used to detect interleukin (IL)-1β and IL-1RA associated with intrinsic immunity; IL-6, IL-18, and growth regulated oncogene alpha (GROα) associated with neutrophils; IL-12, tumour necrosis factor (TNF)-α, and interferon (IFN)-γ associated with Th1; IL-23, IL-17A, and IL-22 associated with Th17; Thymus activation regulated chemokine (TARC), IL-13, and defensin beta 2 (DEFB2) associated with Th2; Vascular endothelial growth factor (VEGF)-A and IL-10 associated with angiogenesis; and IFN-γ associated with sepsis in the peripheral blood of 12 patients with common psoriasis treated with secukinumab and 15 healthy controls. IL-23, IL-17A, IL-22 associated with Th17; TARC, IL-13, DEFB2 associated with Th2; VEGF-A, IL-10 associated with angiogenesis and procalcitonin (PCT) associated with sepsis. The differences in expression of the above cytokines before and after treatment and the correlation with psoriasis disease severity[Psoriasis Area Severity Index(PASI) score], age, and disease duration were analyzed.

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Article Synopsis
  • An active actuator on the round window (RW) can help transmit vibrations into the cochlea, offering a treatment option for hearing loss due to stapedial otosclerosis.
  • A finite-element model of the human ear was used to analyze how the cochlea responds to RW stimulation when the stapes is fixed, focusing on the effects of stapedial annular ligament fixation and increased stapes mass.
  • The findings reveal that the material changes in the stapes alter cochlear responses differently between sound and RW stimulations, particularly showing reduced low-frequency pressure differences in the cochlea during RW stimulation compared to sound stimulation.
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Nowadays, the steady-state responses of human ear to pure tone stimuli have been widely studied. However, the temporal responses to transient stimuli have not been investigated systematically to date. In this study, a comprehensive finite element (FE) model of the human ear is used to investigate the transient characteristics of the human ear in response to impulsive stimuli.

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Finite element method was employed in this study to analyze the change in performance of implantable hearing devices due to the consideration of soft tissues' viscoelasticity. An integrated finite element model of human ear including the external ear, middle ear and inner ear was first developed via reverse engineering and analyzed by acoustic-structure-fluid coupling. Viscoelastic properties of soft tissues in the middle ear were taken into consideration in this model.

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A new incus-body driving type transducer relying on piezoelectric stack, with broad frequency bandwidth, is proposed for use in a middle ear implant. To aid the design process of this transducer, a coupling biomechanical model of the human middle ear and the piezoelectric transducer was established by reverse engineering technology. The validity of this model was confirmed by comparing model predicted motions with experimental measurements.

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