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---
title: "A4F - Shelf Life - SciBiz"
output:
flexdashboard::flex_dashboard:
navbar:
- { title: "<b>Research</b>", href: "http://roneyfraga.com/dash/2020_A4F_SciBiz", align: right }
- { title: "People", href: "http://roneyfraga.com/dash/2020_A4F_SciBiz/#people", align: right }
- { title: "Patent", href: "http://roneyfraga.com/dash/2020_A4F_SciBiz/#patent", align: right }
- { title: "About", href: "http://roneyfraga.com/", align: right }
social: [ "menu" ]
theme: bootstrap #yeti #lumen
logo: img/logo.png
runtime: shiny
---
<!--
Opções no chunk
eval incluir o resultado do código executado, pode ser logico ou numérico
echo mostrar o código
warning mostrar mensagens de aviso
error mostrar mensagens de erro
message mostrar mensagens
tidy mostrar ajustar o código ao display, ignora identação
comment '##' ou qq símbolo, para os resultados dos códigos serem antecedidos por ##
include se falso, executa mas não inclui o chunk no relatório
-->
```{r setup, include=FALSE}
options(scipen=999)
library(rmarkdown)
library(flexdashboard)
library(pipeR)
library(tidyverse)
library(rio)
library(ggraph)
library(tidygraph)
library(DT)
library(visNetwork)
library(igraph)
library(highcharter)
library(htmlwidgets)
library(printr)
library(shiny)
library(kableExtra)
```
<!-- ------------------------------------------------------------ -->
# General
Column {data-width=500 .tabset}
-------------------------------------
### Target
<br> </br>
<h3> - Which research area is emerging? </h3>
<br> </br>
<h3> - What researcher to hire? </h3>
<br> </br>
<h3> - What patent to buy? </h3>
<br> </br>
### Growth
```{r}
import('data/growth_shelf_life.rds') %>>% (. -> d2)
hchart(d2, "column", hcaes(x = Year, y = Publications), name = "Publications", showInLegend = TRUE) %>>%
hc_add_series(d2, "line", hcaes(x = Year, y = predicted), name = "Predicted", showInLegend = TRUE) %>>%
hc_add_theme(hc_theme_elementary()) %>>%
hc_navigator( enabled = TRUE) %>>%
hc_exporting( enabled = TRUE, filename='groups_growth')
```
### Networks
```{r,dpi=120}
knitr::include_url('inseption_html/slides_networks.html', height='80%')
```
### Groups Attributes
```{r}
import('data/groups_attributes.rds') %>>%
datatable(extensions = 'Buttons', rownames=F,
options = list(dom = 'Bfrtip', pageLength = 20,
buttons = list(list(
extend='collection',
buttons = list(list(extend='csv',filename='data'),
list(extend='excel',filename='data')),
text='Download')))) %>>%
formatRound('GrowthRateYear',1)
```
Column {data-width=500 .tabset}
-------------------------------------
### Shelf Life
<br> </br>
<h3> - Shelf Life </h3>
<h4> - The length of time a product may be stored without becoming unsuitable for use or consumption. </h4>
<br> </br>
<h3> - Shelf Life Research </h3>
<h4> - 13,516 Registers \n </h4>
<h4> - 12.9% Growth Rate \n </h4>
<h4> - 5.6 Years Doubling Time \n </h4>
<br> </br>
<h3> - Scopus Research </h3>
<h4> - 52,000,000 Registers \n </h4>
<h4> - 4.13% Growth Rate \n </h4>
<h4> - 17 Years Doubling Time \n </h4>
>
### Segmented Growth
<!-- Talvez fazer esse gráfico no ggplot2 -->
```{r, out.width='75%'}
import('data/segmented_growth.rds') %>>% (. -> d2)
hchart(d2, "line", hcaes(x = Year, y = ln_Publications), name = "Publications", showInLegend = TRUE, fillOpacity = 0.2) %>>%
hc_add_series(d2, "line", hcaes(x = Year, y = est), name = "Segmented Regression", showInLegend = TRUE, fillOpacity = 0.2) %>>%
hc_add_theme(hc_theme_elementary()) %>>%
hc_navigator( enabled = TRUE) %>>%
hc_exporting( enabled = TRUE, filename='segmented_growth') %>>%
hc_xAxis( plotBands = list( list( from = 1986, to = 1986, color = "#330000" ),
list( from = 1992, to = 1992, color = "#330000" ),
list( from = 2004, to = 2004, color = "#330000" )
))
```
### Groups Growth
```{r}
import('data/groups_growth.rds') %>>% (. -> groups_growth)
hchart(groups_growth, "line", hcaes(x = Year, y = Publications, group = Group), fillOpacity = 0.2) %>>%
hc_add_theme(hc_theme_elementary()) %>>%
hc_navigator( enabled = TRUE) %>>%
hc_exporting( enabled = TRUE, filename='groups_growth')
```
### Groups Description
```{r}
import('data/groups_description.txt') %>>%
datatable(extensions = 'Buttons', rownames=F,
options = list(dom = 'Bfrtip', pageLength = 20,
buttons = list(list(
extend='collection',
buttons = list(list(extend='csv',filename='data'),
list(extend='excel',filename='data')),
text='Download'))))
```
<!-- ------------------------------------------------------------ -->
# g03 {data-navmenu="Groups"}
<h4> Group g03 - Active food packaging technologies </h4>
Column {data-width=500 .tabset}
-------------------------------------
### Authors Network
```{r}
import('data/authorNet_g03.rds') %>>% (. -> authorNet)
visNetwork(authorNet$nodes, authorNet$edges, height = "750px", width='500px') %>>%
visIgraphLayout(layout = "layout_with_kk") %>>%
visOptions(highlightNearest = TRUE)
```
### Authors Production
```{r}
# import('data/authorProd_g05.rds') %>>% (. -> authorProd)
# authorProd$graph
knitr::include_graphics('img/top_authors_g03.png')
```
### Authors
```{r}
import('data/indices_g03.rds') %>>%
mutate(m_index=round(m_index,2)) %>>%
(kable(.,'html')) %>>%
kable_styling() %>>%
scroll_box(width = "100%", height = "460px")
```
<h5> H-index is defined as the maximum value of h such that the given author/journal has published h papers that have each been cited at least h times. </h5>
<h5> G-index is an improvement of the h-index. If this set is ranked in decreasing order of the number of citations that they received, the g-index is the (unique) largest number such that the top g articles received (together) at least g2 citations. </h5>
<h5> M-Index is the H-index divided by the number of years that a scientist has been active. </h5>
Column {data-width=500 .tabset}
-------------------------------------
### Countries Network
```{r}
import('data/countryNet_g03.rds') %>>% (. -> countryNet)
visNetwork(countryNet$nodes, countryNet$edges, height = "750px", width='500px') %>>%
visIgraphLayout(layout = "layout_with_fr") %>>%
visOptions(highlightNearest = TRUE)
```
### Papers Hubs
```{r eval=T}
import('data/netcit_hubs_full_info.xlsx') %>>%
as_tibble %>>%
dplyr::filter(grupo=='g03') %>>%
rename(Group = grupo) %>>%
relocate(AU,.after=Group) %>>%
select(-SR) %>>%
slice(1:50) %>>%
(. -> papersHub)
papersHub %>>%
datatable(
rownames = FALSE,
extensions = 'Buttons',
options = list(
dom = 'Bfrtip',
columnDefs = list(list(visible=FALSE, targets=c(3:4,8:10))),
buttons = list(list(extend = 'colvis', columns = c(0:(ncol(papersHub)-1)))
)
)
)
```
<!-- ------------------------------------------------------------ -->
# g09 {data-navmenu="Groups"}
<h4> Group g09 - Food irradiation </h4>
Column {data-width=500 .tabset}
-------------------------------------
### Authors Network
```{r}
import('data/authorNet_g09.rds') %>>% (. -> authorNet)
visNetwork(authorNet$nodes, authorNet$edges, height = "750px", width='500px') %>>%
visIgraphLayout(layout = "layout_with_kk") %>>%
visOptions(highlightNearest = TRUE)
```
### Authors Production
```{r}
# import('data/authorProd_g05.rds') %>>% (. -> authorProd)
# authorProd$graph
knitr::include_graphics('img/top_authors_g09.png')
```
### Authors
```{r}
import('data/indices_g09.rds') %>>%
mutate(m_index=round(m_index,2)) %>>%
(kable(.,'html')) %>>%
kable_styling() %>>%
scroll_box(width = "100%", height = "460px")
```
<h5> H-index is defined as the maximum value of h such that the given author/journal has published h papers that have each been cited at least h times. </h5>
<h5> G-index is an improvement of the h-index. If this set is ranked in decreasing order of the number of citations that they received, the g-index is the (unique) largest number such that the top g articles received (together) at least g2 citations. </h5>
<h5> M-Index is the H-index divided by the number of years that a scientist has been active. </h5>
Column {data-width=500 .tabset}
-------------------------------------
### Countries Network
```{r}
import('data/countryNet_g09.rds') %>>% (. -> countryNet)
visNetwork(countryNet$nodes, countryNet$edges, height = "750px", width='500px') %>>%
visIgraphLayout(layout = "layout_with_fr") %>>%
visOptions(highlightNearest = TRUE)
```
### Papers Hubs
```{r eval=T}
import('data/netcit_hubs_full_info.xlsx') %>>%
as_tibble %>>%
dplyr::filter(grupo=='g09') %>>%
rename(Group = grupo) %>>%
relocate(AU,.after=Group) %>>%
select(-SR) %>>%
slice(1:50) %>>%
(. -> papersHub)
papersHub %>>%
datatable(
rownames = FALSE,
extensions = 'Buttons',
options = list(
dom = 'Bfrtip',
columnDefs = list(list(visible=FALSE, targets=c(3:4,8:10))),
buttons = list(list(extend = 'colvis', columns = c(0:(ncol(papersHub)-1)))
)
)
)
```
<!-- ------------------------------------------------------------ -->
# g15 {data-navmenu="Groups"}
<h4> Group g15 - Osmotic dehydration of fruits and vegetables </h4>
Column {data-width=500 .tabset}
-------------------------------------
### Authors Network
```{r}
import('data/authorNet_g15.rds') %>>% (. -> authorNet)
visNetwork(authorNet$nodes, authorNet$edges, height = "750px", width='500px') %>>%
visIgraphLayout(layout = "layout_with_kk") %>>%
visOptions(highlightNearest = TRUE)
```
### Authors Production
```{r}
# import('data/authorProd_g05.rds') %>>% (. -> authorProd)
# authorProd$graph
knitr::include_graphics('img/top_authors_g15.png')
```
### Authors
```{r}
import('data/indices_g15.rds') %>>%
mutate(m_index=round(m_index,2)) %>>%
(kable(.,'html')) %>>%
kable_styling() %>>%
scroll_box(width = "100%", height = "460px")
```
<h5> H-index is defined as the maximum value of h such that the given author/journal has published h papers that have each been cited at least h times. </h5>
<h5> G-index is an improvement of the h-index. If this set is ranked in decreasing order of the number of citations that they received, the g-index is the (unique) largest number such that the top g articles received (together) at least g2 citations. </h5>
<h5> M-Index is the H-index divided by the number of years that a scientist has been active. </h5>
Column {data-width=500 .tabset}
-------------------------------------
### Countries Network
```{r}
import('data/countryNet_g15.rds') %>>% (. -> countryNet)
visNetwork(countryNet$nodes, countryNet$edges, height = "750px", width='500px') %>>%
visIgraphLayout(layout = "layout_with_fr") %>>%
visOptions(highlightNearest = TRUE)
```
### Papers Hubs
```{r}
import('data/netcit_hubs_full_info.xlsx') %>>%
as_tibble %>>%
dplyr::filter(grupo=='g15') %>>%
rename(Group = grupo) %>>%
relocate(AU,.after=Group) %>>%
select(-SR) %>>%
(. -> papersHub)
papersHub %>>%
datatable(
rownames = FALSE,
extensions = 'Buttons',
options = list(
dom = 'Bfrtip',
columnDefs = list(list(visible=FALSE, targets=c(3:4,8:10))),
buttons = list(list(extend = 'colvis', columns = c(0:(ncol(papersHub)-1)))
)
)
)
```
<!-- ------------------------------------------------------------ -->
# g16 {data-navmenu="Groups"}
<h4> Group g16 - Cold plasma and oxidative stability </h4>
Column {data-width=500 .tabset}
-------------------------------------
### Authors Network
```{r}
import('data/authorNet_g16.rds') %>>% (. -> authorNet)
visNetwork(authorNet$nodes, authorNet$edges, height = "750px", width='500px') %>>%
visIgraphLayout(layout = "layout_with_kk") %>>%
visOptions(highlightNearest = TRUE)
```
### Authors Production
```{r}
# import('data/authorProd_g05.rds') %>>% (. -> authorProd)
# authorProd$graph
knitr::include_graphics('img/top_authors_g16.png')
```
### Authors
```{r}
import('data/indices_g16.rds') %>>%
mutate(m_index=round(m_index,2)) %>>%
(kable(.,'html')) %>>%
kable_styling() %>>%
scroll_box(width = "100%", height = "460px")
```
<h5> H-index is defined as the maximum value of h such that the given author/journal has published h papers that have each been cited at least h times. </h5>
<h5> G-index is an improvement of the h-index. If this set is ranked in decreasing order of the number of citations that they received, the g-index is the (unique) largest number such that the top g articles received (together) at least g2 citations. </h5>
<h5> M-Index is the H-index divided by the number of years that a scientist has been active. </h5>
Column {data-width=500 .tabset}
-------------------------------------
### Countries Network
```{r}
import('data/countryNet_g16.rds') %>>% (. -> countryNet)
visNetwork(countryNet$nodes, countryNet$edges, height = "750px", width='500px') %>>%
visIgraphLayout(layout = "layout_with_fr") %>>%
visOptions(highlightNearest = TRUE)
```
### Papers Hubs
```{r}
import('data/netcit_hubs_full_info.xlsx') %>>%
as_tibble %>>%
dplyr::filter(grupo=='g16') %>>%
rename(Group = grupo) %>>%
relocate(AU,.after=Group) %>>%
select(-SR) %>>%
(. -> papersHub)
papersHub %>>%
datatable(
rownames = FALSE,
extensions = 'Buttons',
options = list(
dom = 'Bfrtip',
columnDefs = list(list(visible=FALSE, targets=c(3:4,8:10))),
buttons = list(list(extend = 'colvis', columns = c(0:(ncol(papersHub)-1)))
)
)
)
```
<!-- ------------------------------------------------------------ -->
# Conclusions
Column {data-width=700}
-------------------------------------
###
```{r,dpi=170}
knitr::include_url('inseption_html/slides_conclusion.html', height='80%')
```
Column {data-width=300}
-------------------------------------
### Informations
<!--
<h4> A4F Group </h4>
<h5> Roney Fraga Souza </h5>
<h5> Demais Pesquisadores </h5>
-->
<!-- ------------------------------------------------------------ -->
# People {.hidden}
developing...
<!-- ------------------------------------------------------------ -->
# Patent {.hidden}
developing...