An Efficient COVID-19 Prediction Model Validated with the Cases of China, Italy and Spain: Total or Partial Lockdowns?
Abstract
:1. Introduction
2. Chronology
3. Development of the Predictive Model
3.1. Application of the Predictive Model to the Spread of the Virus in China
- K = 8.091 × 104 (8.031 × 104, 8.125 × 104)
- P0 = 1320 (1071, 1569)
- r = 0.2239 (0.2135, 0.2343)
3.2. Application of the Predictive Model to the Spread of the Virus in Italy
- K = 1.365 × 105 (1.34 × 105, 1.389 × 105)
- P0 = 139.8 (121, 158.7)
- r = 0.1775 (0.1735, 0.1816)
3.3. Application of the Predictive Model to the Spread of the Virus in Spain
- K = 1.537 × 105 (1.494 × 105, 1.579 × 105)
- P0 = 12.21 (9.671, 14.76)
- r = 0.217 (0.2115, 0.2226)
3.4. Predictive Model Parameter Identification
3.5. Predictive Model Forecasts
4. Results and Discussion
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Conflicts of Interest
References
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Date | Location | Milestone |
---|---|---|
22 January | China | The Chinese government decrees the total lockdown of the area of Wuhan [10]. |
31 January | Spain | First COVID-19 case diagnosed [11,12]. |
11 February | World | The WHO declares the global pandemic [13]. |
12 February | Barcelona | The world’s largest mobile phone showcase, Mobile World Congress (MWC), |
is cancelled over coronavirus concerns [14]. | ||
13 February | Spain | The first coronavirus related death occurs. This would be known on 3 March |
after an autopsy [12]. | ||
8 March | Spain | All sorts of sports competitions are held at all levels. Only in the first soccer |
division, up to 760,000 people gathered throughout Spain [15]. The 8 M | ||
demonstrations gathered more than 550,000 people throughout Spain [16]. | ||
9 March | Spain | All primary and high schools and universities in Madrid are closed, and |
teleworking was recommended [17]. | ||
10 March | Italy | The Italian Prime Minister declares a partial lockdown, which restricts the |
mobility of Italians but allows industrial activity [18]. | ||
12 March | Spain | The closure of schools and universities is extended to the whole country. |
13 March | Spain | The Spanish president announces the declaration of the state of alarm for the |
next day [19]. The exodus of people from Madrid to other towns throughout | ||
Spain is detected. | ||
14 March | Spain | First day of the state of alarm [20]. This leads to partial lockdown and |
the restriction on movements, but it allows the industrial activity, in a similar | ||
way to Italy [21]. | ||
16 March | Germany | The Deutch Chancelor bans gatherings and closes shops, bars and churches |
while urges the citizens to stay at home [22]. | ||
17 March | France | The French Prime Minister orders people to stay at home and only go out for |
essential duties [23]. | ||
21 March | Italy | The Italian Prime Minister declares total lockdown and stops all industrial |
activity in Italy, except the essential for the country [24]. | ||
23 March | China | China lifts quarantine over Wuhan after two months of total lockdown [25]. |
UK | The Prime minister of the United Kingdom declares partial lockdown. Shops | |
selling non-essential goods are told to shut and gatherings in public of more | ||
than two people who do not live together are prohibited [26]. | ||
28 March | Spain | The president of the Spanish government announces the tightening of lock- |
down, allowing only the development of activities considered essential [27]. | ||
The enforcement of the total lockdown will begin on Tuesday, 31 March. |
China | Italy | Spain | |
---|---|---|---|
12 | 30 | 37 | |
13 | 31 | 38 | |
17,200 | 24,750 | 28,770 | |
20,440 | 27,980 | 35,140 | |
a | |||
b | 3240 | 3230 | 6370 |
0 | 25 | 29 | |
19 | 38 | 42 | |
K | 79,760 | 101,180 | 121,240 |
Italy | Spain | France | Germany | UK | |
---|---|---|---|---|---|
35 | 37 | 44 | 37 | 43 | |
44 | 50 | 50 | 50 | 50 | |
47,021 | 28,770 | 40,174 | 24,873 | 17,089 | |
97,689 | 126,168 | 83,019 | 96,092 | 41,903 | |
a | |||||
b | 5629.78 | 7492.15 | 7140.83 | 5478.38 | 3544.86 |
25 | 29 | 32 | 32 | 38 | |
139,081 | 147,445 | 108,910 | 137,400 | 97,985 | |
0.1619 | 0.2032 | 0.2623 | 0.1595 | 0.1447 | |
251.228 | 23.60 | 0.6276 | 104.897 | 52.833 | |
206,638 | 237,351 | 194,600 | 203.141 | 140,524 | |
0.1090 | 0.1263 | 0.1468 | 0.1079 | 0.1009 | |
1521.26 | 487.05 | 94.26 | 825.53 | 402.551 |
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Sanchez-Caballero, S.; Selles, M.A.; Peydro, M.A.; Perez-Bernabeu, E. An Efficient COVID-19 Prediction Model Validated with the Cases of China, Italy and Spain: Total or Partial Lockdowns? J. Clin. Med. 2020, 9, 1547. https://doi.org/10.3390/jcm9051547
Sanchez-Caballero S, Selles MA, Peydro MA, Perez-Bernabeu E. An Efficient COVID-19 Prediction Model Validated with the Cases of China, Italy and Spain: Total or Partial Lockdowns? Journal of Clinical Medicine. 2020; 9(5):1547. https://doi.org/10.3390/jcm9051547
Chicago/Turabian StyleSanchez-Caballero, Samuel, Miguel A. Selles, Miguel A. Peydro, and Elena Perez-Bernabeu. 2020. "An Efficient COVID-19 Prediction Model Validated with the Cases of China, Italy and Spain: Total or Partial Lockdowns?" Journal of Clinical Medicine 9, no. 5: 1547. https://doi.org/10.3390/jcm9051547
APA StyleSanchez-Caballero, S., Selles, M. A., Peydro, M. A., & Perez-Bernabeu, E. (2020). An Efficient COVID-19 Prediction Model Validated with the Cases of China, Italy and Spain: Total or Partial Lockdowns? Journal of Clinical Medicine, 9(5), 1547. https://doi.org/10.3390/jcm9051547