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1.
Nanomaterials (Basel) ; 13(19)2023 Oct 05.
Article in English | MEDLINE | ID: mdl-37836345

ABSTRACT

The continuous advancement of Artificial Intelligence (AI) technology depends on the efficient processing of unstructured data, encompassing text, speech, and video. Traditional serial computing systems based on the von Neumann architecture, employed in information and communication technology development for decades, are not suitable for the concurrent processing of massive unstructured data tasks with relatively low-level operations. As a result, there arises a pressing need to develop novel parallel computing systems. Recently, there has been a burgeoning interest among developers in emulating the intricate operations of the human brain, which efficiently processes vast datasets with remarkable energy efficiency. This has led to the proposal of neuromorphic computing systems. Of these, Spiking Neural Networks (SNNs), designed to closely resemble the information processing mechanisms of biological neural networks, are subjects of intense research activity. Nevertheless, a comprehensive investigation into the relationship between spike shapes and Spike-Timing-Dependent Plasticity (STDP) to ensure efficient synaptic behavior remains insufficiently explored. In this study, we systematically explore various input spike types to optimize the resistive memory characteristics of Hafnium-based Ferroelectric Tunnel Junction (FTJ) devices. Among the various spike shapes investigated, the square-triangle (RT) spike exhibited good linearity and symmetry, and a wide range of weight values could be realized depending on the offset of the RT spike. These results indicate that the spike shape serves as a crucial indicator in the alteration of synaptic connections, representing the strength of the signals.

2.
Nanomaterials (Basel) ; 13(1)2022 Dec 26.
Article in English | MEDLINE | ID: mdl-36616024

ABSTRACT

Owing to the 4th Industrial Revolution, the amount of unstructured data, such as voice and video data, is rapidly increasing. Brain-inspired neuromorphic computing is a new computing method that can efficiently and parallelly process rapidly increasing data. Among artificial neural networks that mimic the structure of the brain, the spiking neural network (SNN) is a network that imitates the information-processing method of biological neural networks. Recently, memristors have attracted attention as synaptic devices for neuromorphic computing systems. Among them, the ferroelectric doped-HfO2-based ferroelectric tunnel junction (FTJ) is considered as a strong candidate for synaptic devices due to its advantages, such as complementary metal-oxide-semiconductor device/process compatibility, a simple two-terminal structure, and low power consumption. However, research on the spiking operations of FTJ devices for SNN applications is lacking. In this study, the implementation of long-term depression and potentiation as the spike timing-dependent plasticity (STDP) rule in the FTJ device was successful. Based on the measured data, a CrossSim simulator was used to simulate the classification of handwriting images. With a high accuracy of 95.79% for the Mixed National Institute of Standards and Technology (MNIST) dataset, the simulation results demonstrate that our device is capable of differentiating between handwritten images. This suggests that our FTJ device can be used as a synaptic device for implementing an SNN.

3.
Gynecol Oncol ; 85(3): 543-4, 2002 Jun.
Article in English | MEDLINE | ID: mdl-12051889

ABSTRACT

BACKGROUND: Intestinal evisceration through the vagina is rare and transvaginal evisceration after transabdominal surgery is far more rare. CASE: We present an unusual case of a postmenopausal woman who presented with transvaginal evisceration of the small bowel after radical abdominal hysterectomy and pelvic lymphadenectomy. CONCLUSION: This was a rare case of terminal ileal evisceration through a ruptured vaginal cuff after radical hysterectomy and bilateral pelvic lymphadenectomy. We performed a delayed closure of the vaginal defect through the vagina after manual reduction of the eviscerated small bowel, and the outcome was satisfactory.


Subject(s)
Hysterectomy/adverse effects , Ileal Diseases/etiology , Vaginal Diseases/etiology , Female , Humans , Hysterectomy/methods , Ileal Diseases/surgery , Middle Aged , Uterine Cervical Neoplasms/surgery , Vaginal Diseases/surgery
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