A popular opinion in the brainwave entrainment community is that listening to isochronic tones without music produces a much stronger effect.  However, in the study by Doherty, Cormac. “A comparison of alpha brainwave entrainment, with and without musical accompaniment” (2014),  it was concluded that brainwave entrainment was equally effective for isochronic tones, both with and without music.

The brain will entrain to the strongest stimulus. If you combine binaural beats with isochronic tones, your brainwaves will entrain to the isochronic tones. If anything, when you combine the two I believe it makes the track less effective because it makes it harder for the brain to decipher between the two and synchronise to a single beat. There are lots of websites with compelling marketing about the benefits of combining the two together in some funky way, but I haven’t seen any research or lots of anecdotal feedback even to suggest it’s effective to combine them.

The studies included in the recent reviews of Tai Chi and yoga indicate that sessions between 60 and 90 minutes performed 2 to 3 days per week were effective in reducing stress and improving feelings of well-being (7,14,17). A study conducted in a worksite environment showed that 15 minutes of chair-based yoga postures was effective in reducing acute stress when assessed by self-report and with physiological measures (e.g., respiration rate and heart rate variability parameters). This finding indicates that shorter duration sessions can be effective in reducing acute stress with this type of exercise (15).
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Kickboxing is a powerful means of reducing stress. It involves controlled punching and kicking movements carried out with discipline. You can get quite a rigorous workout in a kickboxing class, and that’s only one of its excellent benefits. Kickboxing regularly will help improve your balance, flexibility, and coordination. It’s also a great way to work out frustration — having an outlet to release energy and anger can relieve stress.
Different states of mind are associated with specific brainwave frequencies that would be inaudible if played directly. These frequencies can be induced in the brain indirectly by playing two different audible tones into each ear, which after being processed by the brain, are perceived as an inaudible beat matching the target brainwave frequency. As you listen, your own brainwaves fall into step with this inaudible beat, and after a few minutes synchronize with the target brainwave frequency. Brain Wave's 35 programs layer these binaural sequences into multi-stage sessions that have helped thousands of people focus and concentrate, feel positive and motivated, and sleep more soundly.

I believe that there is a frequency at which a brain functions, they can vary depending on circadian rhythm or other factors. You can check the various effects on the brain caused by varying frequencies. Check this link -> Binaural beats. When we expose our brain to isochronic/binaural beats, it has a resonating effect on the brain, i.e. the brain starts to alter its frequency in order to synchronise with the tone. Once the specific frequency is achieved, you will have the desired effect (depending on the specific frequency you are trying to induce).
Proceedings of the 9th Conference on Interdisciplinary Musicology – CIM14. Berlin, Germany 2014 BINAURAL AUDIO RELAXATION TECHNIQUES FOR PEOPLE WITH ANXIETY AND STRESS Geraldine Molina, Emilia Sainz, Levi Serrano, Santiago Rentería, Diana Urquiza Instituto Tecnológico y de Estudios Superiores de Monterrey, Campus Santa Fe Correspondence should be addressed to: rosas_ger@hotmail.com, dianauf@itesm.mx Abstract: Since the beginning of the 21st century, there has been a great development in different studies related to encephalography and the psychological consequences of binaural audio. The objective of this paper is to analyze the effects of binaural audio as a relaxation method for people that suffer anxiety and stress. The study took place at ITESM, Santa Fe Campus, where twenty participants around 21 years old took part of the study. They were divided into two groups, Experimental and Control. The first one listened to the Theta binaural stimuli and the second one listened to a stimulus with nature sounds (birds and wind). The results show that the experimental group got to conscious relaxation. The control group had an unconscious relaxation (sleep), but when the stimuli stopped they recovered their stress level, for some participants it increased. 1. BACKGROUND At the end of the 19th century, Pierre Janet, a French psychologist, discovered that his patients relaxed when they were exposed to rhythmic light patterns. Hans Berger showed in 1924 that brainwaves could be read and studied through an encephalogram [2]. The first studies were done using visual stimuli, while later studies were done using sounds [3]. Brainwaves are caused by changes in the electric tension between two points in the brain cortex. The electroencephalogram has been used to analyze neurophysiological relations that exist between mental states and brainwave frequencies. When somebody’s mental state changes from alert to somnolence, low amplitude and high frequency brain waves turn into high amplitude and low frequency [4]. 2. BINAURAL AUDIO Giuseppe Tartini discovered combination tones. These occur when two tones are heard at the same time and the listener perceives a third tone. The frequency of the third tone is calculated by the difference between the first two tones, as shown in equation 1. (∆   ) [8] (1) The superior olivary complex integrates the phase differences, which makes possible the perception of the third tone. For example, if the left ear hears a 400Hz tone and the right ear a 410Hz tone, the listener will perceive a 10Hz tone [9]. This third tone is also known as binaural frequency. The binaural frequency is directed from the superior olivary complex to the reticular formation and the brain cortex, where the electroencephalogram can read its effect. The Frequency Following Response (FFR) phenomenon happens when the frequency read by the encephalogram is equal to the combination tone frequency. When this happens, the frequency resonates in the brain stimulating the reticular formation inducing different psychological states. Brainwave bands and psychological consequences are shown in Table 1 [16]. Table 1: Brainwave Frequencies and Psychological Consequences Brainwaves Frequency (Hz) Amplitude (μV) Mental StateDelta 0.1 - 3 20-200 Consciousness is lost, sleep without dreams Theta 4 - 7 20-100 REM Sleep, meditation, and Creativity Alpha 8 - 12 20-60 Conscious Relaxation Beta 13 - 40 2-20 Concentration, Alert, and cognition (High levels are associated with anxiety) It has been proved that delta sound waves in binaural audio therapy have anxiolytic effects on patients with pre-surgery anxiety [7]. Theta binaural sound waves are also helpful with relaxation and anxiety reduction [11]. According to the results presented by the company Regus, in Mexico, 75% of employed people suffer from stress and anxiety. These cause social, health, and economic problems at the same time that productivity decreases [5]. According to the Mexican National Labor Organization, stress means that the GDP decreases from 0.5 to 3.5%. Stress leads to anxiety, irritability, fear, depression, suicidal thoughts, and lack of concentration. Some other symptoms are headaches, nausea, dizziness, muscular tension, insomnia, and tachycardia [6]. There are different techniques to induce relaxation like meditation. New relaxation techniques with binaural audio have been developed through Neurosciences. 3. OBJECTIVES • Evaluate and analyze binaural audio therapy effects (Theta frequencies) on people that suffer anxiety and stress (Students at ITESM), in order to induce relaxation and reduce anxiety. • Determine if the binaural therapy induced relaxation in the experimental group and compare the results to those from the control group. • Through the STAI test and the electroencephalogram results, determine which stimulus is more efficient. 4. HYPOTHESIS Hi: Frequency Following Response phenomenon will take place, as Delta and Theta bands will share frequencies with the combination tones. Hi: Beta brainwaves will show up when the stimulus begins, as they are related to concentration and alertness. 5. EXPERIMENT Twenty participants were randomly divided into two groups, control and experimental. The first group listened to sounds of
Proceedings of the 9th Conference on Interdisciplinary Musicology – CIM14. Berlin, Germany 2014 nature (birds and wind) while the second group listened to theta binaural sound waves. Both groups listened to the stimulus through headphones. During the experiment, participants were monitored with the Neurosky Mindwave Interface, which was connected through Processing to a Max Patch that saved all the data in a ‘.csv’ file. Before the stimulus, a baseline EEG took place and the participants answered the “Trait” part of the STAI test and a pre-experiment “State” version of the test. After the experiment, participants answered a post-experiment “State” STAI and a post-experiment EEG also took place. Each experiment was developed with one participant at a time in a controlled environment. American Psychological Association Ethical Principles and Code of Conduct 2002 were followed. 6. MATERIALS • Herman Miller chair • Neurosky Mindwave Interface • Maximum Voltage – 1mV • Maximum radiofrequency Range (Bluetooth) 10m • Maximum transference rate through RF – 250kb/s • Sample rate – 512Hz • Battery cycle – 6-8h • MacBook Pro 7. SOFTWARE • Processing 1.5.1 • Microsoft Excel • Max 6 • Braintocsv V1.5: Application developed in Max 6 by Santiago Rentería, which collates data gathered from the Mindwave interface into a ‘.csv’ file. 8. DOCUMENTS • STAI questionnaire (Annex 2) • STAI “Trait”: Measures anxiety as a temporal state. • STAI “State”: Measures anxiety based on how people feel on a daily basis. • Consent Letter (Annex 3) 9. CONTROL ENVIRONMENT Recording Studio Control Room located at Instituto Tecnológico y de Estudios Superiores de Monterrey, Campus Santa Fe. Fixed temperature at 22ºC and acoustically isolated. 10. STIMULI • Experimental group – Binaural Theta frequencies • Control group – Nature environmental sounds 11. PROCEDURE • The participant is asked to read and sign a consent letter. • A pre-experimental three-minute encephalogram is taken and the participant is required to answer State and Trait STAI tests. • The corresponding stimulus is played during ten minutes and an EEG is taken. • The State STAI test is answered and a post-experiment EEG is taken. 12. VISUAL DATA ANALYSIS The stimuli took place from second 180 to second 774. (Graphs in Annex 1) 12.1 Theta The significant time range was from second 3 to second 948. The most significant moments were the following: (see annex A1.5) s = 189; p = 0.014; t = 1.025 s = 495; p = 0.002; t = -1.923 s = 780; p = 0.001; t = -2.349 12.2 Meditation The significant time range was from second 240 to second 912. The most significant moments were the following: (see annex A1.3) s = 240; p = 0.042; t = .0.685 s = 522; p = 0.013; t = 0.546 s = 702; p = 0.016; t = 0.897 12.3 Delta The significant time range was from second 12 to second 954. The most significant moments were the following: (see annex A1.10) s = 177; p = 0.046; t = 1.696 s = 627; p = 0.016; t = -1.366 s = 912; p = 0.007; t = 1.758 12.4 Attention The significant time range was from second 243 to second 870. The most significant moments were the following: (see annex A1.11) s = 243; p = 0.021; t = 0.672 s = 513; p = 0.005; t = 0.722 s = 753; p = 0.017; t = 0.383 12.5 STAI Variations were found in STAI-State pre-experiment and post-experiment: • Control group results rose from 19 to 21 • Experimental group results decreased from 20 to 15. Variations between both groups were found in the STAI –Trait: • Experimental group with a score of 32 in STAI-T test outran control group by 4 points 13. RESULT ANALYSIS Samples were analyzed every three seconds. They were later statistically distributed according to the T-student test in order to find differences between both groups. For this experiment, the significant p value was p<0.05, this means that the probability is less than 5% T-student detailed analysis: • The meditation value is similar in both groups, (see graph A1.3). T-student function shows less significant points for this parameter. This means both stimuli induced relaxation to the participants. • Theta values are higher in the control group, especially after second 510 (see graph A1.5) almost at the middle of the stimulus. • STAI “State” post-experiment results from the experimental group are higher than the control. Therefore, theta binaural frequencies were more effective as an anxiolytic stimulus. (see graphs A1.1 and A1.2) • Delta values are higher after second 285 in the control group (see graph A1.10). This indicates deep sleep and losing of consciousness over the body (unconscious relaxation). It is highly possible that the participant fell asleep or got to the first stages of sleep. • There is a significant difference in delta between experimental and control groups after second 870 (post-stimulus). For the
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With these studies in mind, EquiSync's revolutionary, multi-layered, multi-tiered approach was born. Designed to synchronize and harmonize your brainwaves while allowing you access to the deepest, most pleasurable, most beneficial states of meditation — much faster than the traditional route, EquiSync® has made mastering meditation easier than ever!
This music encourages a state of alpha relaxation. The alpha state is a pleasant state of relaxed alertness. It’s a state that many people experience when they are waking up in the morning or when they are just beginning to drift off to sleep at night. While in a state of alpha relaxation, the mind is quite clear and receptive to information, learning is accelerated and one’s sense of creativity is enhanced. The mind is also very open to positive suggestions during this state.
When the player meets Anabel and Looker, the pair recruit the player to the UB Task Force. Although one of the task force's duties is to either safeguard or destroy the Ultra Beasts, neither Anabel nor Looker wishes to harm them, so they need the help of the new Champion of Alola. Anabel will also battle the player to ensure that they are up to the job.
So my question is: Why? When I read it, I had a bit of a fear of brain aneurysms. Therefore, 1. could someone contact me to tell me why use of your product shouldn’t continue past 2 hours? [I probably won’t heed the reason unless it’s a life or death warning: I love this product that much!] 2. Please feel free to post my letter in your testimonials, if you ever decide to post such customer comments.
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This is probably the most popular choice of frequency. The theta state is a state of tremendous stress relief. The benefits associated with theta level relaxation include improved concentration, reduced hyperactivity and improved memory. While in a state of theta relaxation, one’s blood pressure, breathing and heart rate all slow to a much more restful and healthy level that promotes natural healing. During theta relaxation one may also experience vivid flashes of mental imagery as the mind opens to memories or subconscious information that is not available to the conscious mind during the normal waking state. The theta state is a very deep state of relaxation that is excellent for deep hypnosis and mental programming.
This session shifts from the 14Hz sensormotor rhythm through beta to 40Hz gamma, and repeats the pattern over and over, constantly “revving up”the mind with each repetition. The process is stabilized with a 10Hz background alpha beat, allowing the brain a place to relax instantly, whenever a let up allows. Use this session any time, and for as long as required to get the job done. Take in a High Energy Espresso on long-hauls for a welcome lift. Works without headphones, but the best benefits can be found with them. The session finishes at a fast, revving 18Hz beta. For use mainly with eyes open, engaged in activity - with benefit to be gained from periodically closing your eyes briefly and relaxing.