Huaiyin Shi
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View article: Gastroblastoma with MALAT1-GLI1 fusion gene: a case report
Gastroblastoma with MALAT1-GLI1 fusion gene: a case report Open
View article: MiR-342-3p is a novel biomarker for the diagnosis and regulates tumorigenesis in thyroid papillary cancer through FOXQ1
MiR-342-3p is a novel biomarker for the diagnosis and regulates tumorigenesis in thyroid papillary cancer through FOXQ1 Open
The downregulated level of miR-342-3p has been reported in various kinds of human malignancies. It remains unclear the biological function of miR-342-3p in PTC. The purpose of this work aimed to assess the expression pattern of miR-342-3p …
View article: How Does Digital Technology Innovation Affect Manufacturing Industry Agglomeration?
How Does Digital Technology Innovation Affect Manufacturing Industry Agglomeration? Open
This paper takes 270 Chinese cities as the sample, and measures the level of manufacturing industry agglomeration based on the dual perspective of science and technology expenditure level and regional Internet penetration rate. In this pap…
View article: Clinicopathological features of follicular thyroid carcinoma coexisting with papillary thyroid carcinoma
Clinicopathological features of follicular thyroid carcinoma coexisting with papillary thyroid carcinoma Open
To elucidate the clinicopathological features of follicular thyroid carcinoma (FTC) coexisting with papillary thyroid carcinoma (PTC) (FTC + PTC). We collected a total of 55 FTC + PTC patients (including 12 males [21.8%] and 43 females [78…
View article: CAMEL2: Enhancing Weakly Supervised Learning for Histopathology Images by Incorporating the Significance Ratio
CAMEL2: Enhancing Weakly Supervised Learning for Histopathology Images by Incorporating the Significance Ratio Open
Histopathology image analysis plays a crucial role in cancer diagnosis. However, training a clinically applicable segmentation algorithm requires pathologists to engage in labor‐intensive labeling. In contrast, weakly supervised learning m…
View article: Enhancing weakly supervised learning for histopathology images by incorporating the significance ratio
Enhancing weakly supervised learning for histopathology images by incorporating the significance ratio Open
Histopathology image analysis plays a crucial role in cancer diagnosis. However, training a clinically applicable segmentation algorithm requires pathologists to engage in labour-intensive labelling. In contrast, weakly supervised learning…
View article: CAMEL2: Enhancing weakly supervised learning for histopathology images by incorporating the significance ratio
CAMEL2: Enhancing weakly supervised learning for histopathology images by incorporating the significance ratio Open
Histopathology image analysis plays a crucial role in cancer diagnosis. However, training a clinically applicable segmentation algorithm requires pathologists to engage in labour-intensive labelling. In contrast, weakly supervised learning…
View article: Figure S5 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S5 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S5
View article: Figure S5 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S5 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S5
View article: Figure S2 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S2 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S2
View article: Data from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Data from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Purpose:The molecular targets for castration-resistant prostate cancer (CRPC) are unknown because the disease inevitably recurs, and therapeutic approaches for patients with CRPC remain less well understood. We sought to investigate regula…
View article: Data from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Data from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Purpose:The molecular targets for castration-resistant prostate cancer (CRPC) are unknown because the disease inevitably recurs, and therapeutic approaches for patients with CRPC remain less well understood. We sought to investigate regula…
View article: Figure S4 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S4 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S4
View article: Figure S6 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S6 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S6
View article: Figure S4 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S4 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S4
View article: Figure S1 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S1 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S1
View article: Figure S2 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S2 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S2
View article: Figure S6 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S6 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S6
View article: Figure S3 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S3 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S3
View article: Supplementary Information from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Supplementary Information from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Information
View article: Figure S1 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S1 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S1
View article: Figure S3 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Figure S3 from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Figure S3
View article: Supplementary Information from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46
Supplementary Information from Leukemia Inhibitory Factor Promotes Castration-resistant Prostate Cancer and Neuroendocrine Differentiation by Activated ZBTB46 Open
Supplementary Information
View article: Assessment of deep learning assistance for the pathological diagnosis of gastric cancer
Assessment of deep learning assistance for the pathological diagnosis of gastric cancer Open
View article: Significance of interstitial fibrosis and p16 in papillary thyroid carcinoma
Significance of interstitial fibrosis and p16 in papillary thyroid carcinoma Open
We enrolled 264 patients with papillary thyroid carcinoma (PTC). We performed immunohistochemical detection of p16 and determined the degree of interstitial fibrosis (IF). The expression of p16 was associated with pathological tumor-node-m…
View article: Histopathological Diagnosis System for Gastritis Using Deep Learning Algorithm
Histopathological Diagnosis System for Gastritis Using Deep Learning Algorithm Open
Objective To develope a deep learning algorithm for pathological classification of chronic gastritis and assess its performance using whole-slide images (WSIs). Methods We retrospectively collected 1,250 gastric biopsy specimens (1,128 gas…
View article: Clinically applicable Gleason grading (GD) system for prostate cancer based on deep learning
Clinically applicable Gleason grading (GD) system for prostate cancer based on deep learning Open
To the Editor: Prostate cancer is one of the most common malignant tumors of the male genital system, with approximately 1.1 million new cases in 2012.[1] The accurate diagnosis of prostate cancer leads to a better chance of successful tre…
View article: Automatic deep learning-based colorectal adenoma detection system and its similarities with pathologists
Automatic deep learning-based colorectal adenoma detection system and its similarities with pathologists Open
Objectives The microscopic evaluation of slides has been gradually moving towards all digital in recent years, leading to the possibility for computer-aided diagnosis. It is worthwhile to know the similarities between deep learning models …
View article: Clinically applicable histopathological diagnosis system for gastric cancer detection using deep learning
Clinically applicable histopathological diagnosis system for gastric cancer detection using deep learning Open
View article: GLI1 activation is a key mechanism of erlotinib resistance in human non‑small cell lung cancer
GLI1 activation is a key mechanism of erlotinib resistance in human non‑small cell lung cancer Open
Lung cancer is the leading cause of cancer-associated death worldwide. In recent years, the advancement of epidermal growth factor receptor-tyrosine kinase inhibitor (EGFR-TKI) targeted therapies has provided clinical benefits for lung can…