Singing Daily Reduces Stress, Clears Sinuses, and Helps YOU Live Longer
https://www.youtube.com/watch?v=cODGupi1ir8&t=14s
Music makes everything better! It can relieve pain, reduces stress, makes you work harder, and helps you relax. Music is one of life’s most beautiful gifts.
Jimi Hendrix had this to say about music, “music doesn’t lie”. If there is something to be changed in this world, then it can happen through music.
One of the best ways to capture the benefits of music is through singing. It allows you to truly feel the song with your mind, body, and soul.
Research has shown singing can improve your health, increase happiness and even extend your life!
https://www.frontiersin.org/articles/10.3389/fpsyg.2013.00334/full
No matter who or where you are, you can reap the many benefits of music by singing along to some tunes! Sing wherever you are.
“Singing is good for your brain and can make you feel high. All I know is it makes me happy and gives me a greater sense of gratitude and love for God, family and friends”. Dr. Robert O. Young
https://m.starmakerstudios.com/share?recording_id=4785074259088880&share_type=fb&app=sm
It releases endorphins, hormones that produce pleasure, simultaneous to oxytocin, hormones that diminish stress and anxiety.
Oxytocin also decreases feelings of depression and loneliness, making us feel more connected with the world, which is precisely why singing with other people feels even better!
A study done by scientists at the University of Gothenburg in Sweden found people who sing together become so connected they exhibit synchronized heartbeats.
https://www.telegraph.co.uk/news/health/10168914/All-together-now-singing-is-good-for-your-body-and-soul.html
Anyone who has ever been in choir can attest to this. When the magical sound of several people singing together is created, there is an unexplained unity between those singing.
Singing also requires deep concentration on breathing, which works major muscle groups in the upper body and is great for both lung and cardiovascular health.
Björn Vickhoff, the leader of the study, stated:
“Song is a form of regular, controlled breathing, since breathing out occurs on the song phrases and inhaling takes place between these. It gives you pretty much the same effect as yoga breathing. It helps you relax, and there are indications that it does provide a heart benefit.”
Therefore, one could make the argument that singing is better for you than doing yoga!
Research has also proven that singing produces lower levels of cortisol, reducing stress while improving our immune systems.
Lastly, a joint study from Harvard and Yale Universities in 2008 found singing increases life expectancy. If you want to feel less stressed, become happier, and live longer: Start singing!
Do you want to stress less, sleep better, and feel abundantly happier… without drugs or anything crazy?
Start Singing!
http://www.phmiracleretreat.com
References
Bernardi, L., Gabutti, A., Porta, C., and Spicuzza, L. (2001a). Slow breathing reduces chemoreflex response to hypoxia and hypercapnia, and increases baroreflex sensitivity. J. Hypertens. 19, 2221–2229. doi: 10.1097/00004872-200112000-00016
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Bernardi, L., Porta, C., Gabutti, A., Spicuzza, L., and Sleight, P. (2001b). Modulatory effects of respiration. Auton. Neurosci. 90, 47–56.
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Bernardi, L., Sleight, P., Bandinelli, G., Cencetti, S., Fattorini, L., Wdowczyc-Szulc, J., et al. (2001c). Effect of rosary prayer and yoga mantras on autonomic cardiovascular rhythms: comparative study. BMJ 323, 1446–1449. doi: 10.1136/bmj.323.7327.1446
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Bernardi, L., Keller, F., Sanders, M., Reddy, P. S., Griffith, B., Meno, F., et al. (1989). Respiratory sinus arrhythmia in the denervated human heart. J. Appl. Physiol. 67, 1447–1455.
Pubmed Abstract | Pubmed Full Text
Bernardi, L., Spadacini, G., Bellwon, J., Hajric, R., Roskamm, H., and Frey, A. W. (1998). Effect of breathing rate on oxygen saturation and exercise performance in chronic heart failure. Lancet 351, 1308–1311. doi: 10.1016/S0140-6736(97)10341-5
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Brillinger, D. (2001). Time Series: Data analysis and Theory. San Francisco, CA: Society for Industrial and Applied Mathematics (SIAM). Unabridged republication of same title published by Holden Day, 1981.
Csikszentmihalyi, M. (1997). Finding Flow: The Psychology of Engagement with Everyday Life, New York, NY, BasicBooks.
David-Barrett, T., and Dunbar, R. I. (2012). Cooperation, behavioural synchrony and status in social networks. J. Theor. Biol. 308, 88–95. doi: 10.1016/j.jtbi.2012.05.007
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
De Manzano, O., Theorell, T., Harmat, L., and Ullen, F. (2010). The psychophysiology of flow during piano playing. Emotion 10, 301–311. doi: 10.1037/a0018432
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Degiorgio, C. M., Miller, P., Meymandi, S., Chin, A., Epps, J., Gordon, S., et al. (2010). RMSSD, a measure of vagus-mediated heart rate variability, is associated with risk factors for SUDEP: the SUDEP-7 Inventory. Epilepsy Behav. 19, 78–81. doi: 10.1016/j.yebeh.2010.06.011
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Friedman, E. H., and Coats, A. J. (2000). Neurobiology of exaggerated heart oscillations during two meditative techniques. Int. J. Cardiol. 73, 199. doi: 10.1016/S0167-5273(00)00214-X
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Grape, C., Sandgren, M., Hansson, L. O., Ericson, M., and Theorell, T. (2003). Does singing promote well-being?: an empirical study of professional and amateur singers during a singing lesson. Integr. Physiol. Behav. Sci. 38, 65–74.
Pubmed Abstract | Pubmed Full Text
Hayano, J., Sakakibara, Y., Yamada, A., Yamada, M., Mukai, S., Fujinami, T., et al. (1991). Accuracy of assessment of cardiac vagal tone by heart rate variability in normal subjects. Am. J. Cardiol. 67, 199–204. doi: 10.1016/0002-9149(91)90445-Q
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Huron, D. (2006). Is music an evolutionary adaptation? Ann. N.Y. Acad. Sci. 930, 43–61. doi: 10.1111/j.1749-6632.2001.tb05724.x
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
La Rovere, M. T., Bigger, J. T., Jr., Marcus, F. I., Mortara, A., and Schwartz, P. J. (1998). Baroreflex sensitivity and heart-rate variability in prediction of total cardiac mortality after myocardial infarction. ATRAMI (Autonomic Tone and Reflexes After Myocardial Infarction) Investigators. Lancet 351, 478–484. doi: 10.1016/S0140-6736(97)11144-8
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Ludwig, C. (1847). Beiträge zur Kenntnis des Einflusses der Respirationsbewegungen auf den Blutumlauf im Aortensystem. Arch. Anat. Physiol. 13, 242–302.
Malik, M. Task Force of the European Society of Cardiology the North American Society. (1996). Heart rate variability: standards of measurement, physiological interpretation and clinical use. Circulation 93, 1043–1065. doi: 10.1161/01.CIR.93.5.1043
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Marti, T. (2012). Wirkungen des Chorsingens auf die cardiorespiratorische Koordination und das subjektive Befinden bei Erwachsenen. Res. Steiner Edu. 3, 146–168.
Muller, V., and Lindenberger, U. (2011). Cardiac and respiratory patterns synchronize between persons during choir singing. PLoS ONE6:e24893. doi: 10.1371/journal.pone.0024893
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Nesterov, S. V., Nesterov, V. P., and Burdygin, A. I. (2005). The effect of respiratory frequency on heart rate variability. Dokl. Biol. Sci. 400, 25–27. doi: 10.1007/s10630-005-0033-x
CrossRef Full Text
Ostborn, P., Aberg, S., and Ohlen, G. (2003). Phase transitions towards frequency entrainment in large oscillator lattices. Phys. Rev. E68:015104. doi: 10.1103/PhysRevE.68.015104
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Pacherie, E. (2011). Framing joint action. Rev. Philos. Psychol. 2, 173–192. doi: 10.1007/s13164-011-0052-5
CrossRef Full Text
Paton, J. F., Boscan, P., Pickering, A. E., and Nalivaiko, E. (2005). The yin and yang of cardiac autonomic control: vago-sympathetic interactions revisited. Brain Res. Brain Res. Rev. 49, 555–565. doi: 10.1016/j.brainresrev.2005.02.005
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Porges, S. W. (1995). Orienting in a defensive world: mammalian modifications of our evolutionary heritage. A Polyvagal Theory. Psychophysiology 32, 301–318. doi: 10.1111/j.1469-8986.1995.tb01213.x
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Porges, S. W. (2003). The Polyvagal Theory: phylogenetic contributions to social behavior. Physiology Behav. 79, 503–513. doi: 10.1016/S0031-9384(03)00156-2
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Porges, S. W. (2011). The Polyvagal Theory. New York, NY: W.W. Norton and Company.
Pramanik, T., Sharma, H. O., Mishra, S., Mishra, A., Prajapati, R., and Singh, S. (2009). Immediate effect of slow pace bhastrika pranayama on blood pressure and heart rate. J. Altern. Complement. Med. 15, 293–295. doi: 10.1089/acm.2008.0440
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Richter, D. W., and Spyer, K. M. (1990). “Cardiorespiratory control,” in Central Regulation of Autonomic Function. eds A. D. Loewly and K. M. Spyer (New York, NY: Oxford University Press), 189–207.
Schafer, C., Rosenblum, M. G., Kurths, J., and Abel, H. H. (1998). Heartbeat synchronized with ventilation. Nature 392, 239–240. doi: 10.1038/32567
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Sebanz, N., Bekkering, H., and Knoblich, G. (2006). Joint action: bodies and minds moving together. Trends Cogn. Sci. 10, 70–76. doi: 10.1016/j.tics.2005.12.009
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Sharma, M., Frishman, W. H., and Gandhi, K. (2011). RESPeRATE: nonpharmacological treatment of hypertension. Cardiol. Rev. 19, 47–51. doi: 10.1097/CRD.0b013e3181fc1ae6
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Sleight, P., La Rovere, M. T., Mortara, A., Pinna, G., Maestri, R., Leuzzi, S., et al. (1995). Physiology and pathophysiology of heart rate and blood pressure variability in humans: is power spectral analysis largely an index of baroreflex gain? Clin. Sci. 88, 103–109.
Pubmed Abstract | Pubmed Full Text
Snyder, C. R., and Lopez, S. J. (2009). Oxford Handbook of Positive Psychology. Oxford; New York: Oxford University Press.
Song, H. S., and Lehrer, P. M. (2003). The effects of specific respiratory rates on heart rate and heart rate variability. Appl. Psychophysiol. Biofeedback 28, 13–23. doi: 10.1023/A:1022312815649
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Sukhova, G. S., and Mazurov, M. E. (2007). Mechanical-electrical processes involved in the synchronization of the sinus node from atria. Dokl. Biochem. Biophys. 412, 22–24. doi: 10.1134/S1607672907010073
Pubmed Abstract | Pubmed Full Text | CrossRef Full Text
Taha, B. H., Simon, P. M., Dempsey, J. A., Skatrud, J. B., and Iber, C. (1995). Respiratory sinus arrhythmia in humans: an obligatory role for vagal feedback from the lungs. J. Appl. Physiol. 78, 638–645.
Pubmed Abstract | Pubmed Full Text
Vickhoff, B. (2008). A Perspective Theory of Music Perception and Emotion, Gothenburg: University of Gothenburg.
Wiltermuth, S. S., and Heath, C. (2009). Synchrony and cooperation. Psychol. Sci. 20, 1–5. doi: 10.1111/j.1467-9280.2008.02253.x